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Disertaciones |
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1
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EULINA BRITO MARINHO
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Confirmation of hybridization between red and white rice genotypes using SSR morphological and molecular markers
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Líder : BRUNA RAFAELA DA SILVA MENEZES
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MIEMBROS DE LA BANCA :
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BRUNA RAFAELA DA SILVA MENEZES
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LUIZ BEJA MOREIRA
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ERINA VITÓRIO RODRIGUES
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Data: 25-feb-2026
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Resumen Espectáculo
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Rice (Oryza sativa L.) is of great importance to the global economy due to its socioeconomic attributes that enhance its value. Special types of rice, including red rice, have been gaining increasing market share due to their advantages, such as differentiated organoleptic properties, high nutritional value, resistance, and socio-environmental benefits. However, it is important to develop hybrids that demonstrate superiority to meet market criteria and boost the economy. This study aims to conduct hybridization between red and white rice genotypes and confirm these crosses using morphological and molecular markers. The experiment was conducted in a greenhouse and laboratory at the Federal Rural University of Rio de Janeiro (UFRRJ) and was divided into three stages. The first stage consisted of crosses between the white rice genotype 'BRS Esmeralda', used as the female parent, and two red rice genotypes, 'ENA AR1601' and 'Virginia', used as the male parents. Five 5-L pots with five seeds each were used for sowing. Thinning was performed 15 days after sowing (DAS), leaving two plants per pot. Planting was staggered, beginning in August 2024 and ending in October 2024. Two pots of each genotype were planted per week. To emasculate the female parents, the flower was cut before opening, and the anthers were manually removed with histological forceps. This process was performed on the central third of the panicle, which was protected with paper bags. Panicle preparation was performed one day before pollination. Panicles emasculated the day before were pollinated using two tillers containing two panicles (at anthesis) from the male parent, kept in a plastic tube with water next to the tillers of the female parent plant. After maturation, the hybrid seeds were harvested, dried, and stored at a refrigerated temperature (6°C). In January 2025, the two hybrid combinations—parents and controls—were sown in 11-L pots. The genotypes 'BRS 502', 'Escrevi', 'Cateto', and 'Agulhinha' were used as controls. The second step consisted of DNA extraction to select polymorphic primers (obtained from rice SSR marker sites) between the parents to confirm the crosses. The DNA from each sample was obtained in stock solution and stored at 20°C. A PCR solution was prepared in 0.2 mL microtubes, with a final volume of 15 µL per sample: 2 µL of DNA; 1.5 µL of 10X reaction; 0.9 mM MgCl₂; 2.4 µL of dNTPs (0.25 mM each); 0.1 µL of Taq polymerase (1 U); 0.6 µM of primer. The thermocycler profile was: initial cycle of 94°C for 5 min; 24 cycles of 94°C for 1 minute; 52°C for 1 minute; 72°C for 1 minute; and final extension 72°C for 7 minutes. To confirm hybridization, DNA was extracted from all plants that could be potential hybrids. Eight randomly selected DNA samples were analyzed on an agarose gel to verify primer complementarity and reproducibility. The gels were visualized and photographed using a photodocumenter. Hybrids were selected by excluding those lacking alleles of the genotypes. The third stage consisted of evaluating morphological characteristics in the hybrids, parents, and controls. A completely randomized design was used, with three replicates. The characteristics evaluated in the second stage were: leaf blade length (LLL, in cm); leaf blade thickness (LLL, in cm); flag leaf length (FLL, in cm); flag leaf thickness (FLL, in cm); flag leaf angle (FLA, in cm); stem length (SLL, in cm); basal internode diameter (BID, in mm); panicle length (PL, in cm); plant height (HH, in cm). number of viable stalks (NCV, units); number of branches (NR, units); number of fertile spikelets (NEP, units); grain length (CG, in mm); grain width (LG, in mm); and length/width ratio (L/W). The means were compared using the Scott-Knott test at 5% probability. Canonical variables were obtained from multivariate analysis of variance, with phenotypic covariance matrices and residual covariance matrices between treatments. Genetic divergence was evidenced by the dispersion of scores, in a graph (k-means) with axes represented by the first two canonical variables. The data obtained were subjected to analysis of general and specific combining ability, following the Griffing model. Overall, the hypothesis that potential hybrids can be obtained from combinations between white and red rice parents is expected to be confirmed.
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2
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LAÉRCIO WASHINGTON BITTENCOURT FILHO
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Fertilization of broccoli with poultry litter-based amendments and biochar: Yield, market quality, and nutritional composition
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Líder : MARGARIDA GORETE FERREIRA DO CARMO
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MIEMBROS DE LA BANCA :
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EDNALDO DA SILVA ARAÚJO
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HUGO JOSÉ DE OLIVEIRA ZOFFOLI
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MARGARIDA GORETE FERREIRA DO CARMO
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Data: 02-mar-2026
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Resumen Espectáculo
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Broccoli (Brassica oleracea var. italica) is one of the main vegetables cultivated in the state of Rio de Janeiro. Its production can be constrained by climatic conditions and nutritional requirements, which may be mitigated through the appropriate choice of cultivar, planting season and location, as well as fertilizer application. In this context, the present study was conducted with the following objectives: (a) to evaluate the agronomic efficiency of poultry litter compost enriched with biochar during the composting process, and to compare it with other fertilization options; (b) to assess the effects of the tested composts on the concentrations and accumulation of macro- and micronutrients in the vegetative and reproductive parts of broccoli plants. Three experiments were carried out: the first under field conditions and the subsequent two in a greenhouse, at the Horticulture Sector of UFRRJ, Seropédica, RJ. In the first two trials, organic composts were matured for 60 days, while in the third trial composts had 30 days of maturation. The first experiment, conducted from July to October 2024, tested two cultivars (Coliseu and Legacy) and four fertilization treatments: mineral NPK, poultry litter composted alone, poultry litter composted with biochar, and an unfertilized control. The second experiment, conducted from May to July 2025, used only the cultivar Coliseu and eight fertilization treatments: mineral NPK, fresh poultry litter, poultry litter composted alone, poultry litter composted with biochar, poultry litter composted with biochar plus the soil conditioner Vittia at planting, and pure biochar and Vittia applied at planting. The third experiment, conducted from August to October 2025, used the cultivars Coliseu and Festival and the same treatments as the second trial, but with shorter composting time (30 days) and substitution of fresh litter with poultry litter composted for 90 days. At the end of each cycle, harvests were performed and plant development, yield, and inflorescence quality were evaluated. In the second trial, nutrient concentrations and accumulation in vegetative parts and inflorescences were also assessed. In the first experiment, fresh inflorescence mass (FIM) ranged from 375 g in the NPK treatment to 205 g in the control. Total yield showed significant differences (p < 0.05), although no significant variation was observed in marketable yield, which ranged from 3.53 to 6.03 ton/ha. In the second experiment, FIM did not differ significantly; however, statistical differences (p < 0.05) were observed in K, Ca, and Zn concentrations in inflorescences, and in N, P, Mg, Fe, and Cu concentrations in vegetative parts, with higher K levels in inflorescences under treatments CACBc260, CAF T, and biochar. In the third trial, the highest FIM (170 g) was obtained with poultry litter composted for 90 days. It can be concluded that the addition of biochar does not alter compost quality or the production of marketable broccoli inflorescences. Furthermore, the cultivation of broccoli with appropriate planting dates and cultivar selection is feasible in the Baixada Fluminense region.
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3
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EDUARDO SOUZA DE AMORIM
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Proteomic and ultrastructural characterization compatible with programmed cell death in Conyza sumatrensis resistant to the herbicide 2,4-D.
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Líder : CAMILA FERREIRA DE PINHO
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MIEMBROS DE LA BANCA :
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CAMILA FERREIRA DE PINHO
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JUNIOR BORELLA
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MARCIA SOARES VIDAL
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Data: 17-mar-2026
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Resumen Espectáculo
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The herbicide 2,4-D is among the most widely used in Brazil for controlling broadleaf weeds in various cropping systems. Among the main broadleaf weeds in the country, Conyza sumatrensis (buva) stands out for its resistance to 2,4-D. This resistance is atypical and characterized by symptoms of rapid physiological response, with leaves necrotizing within 4 hours after application (HAA), preventing herbicide translocation. The objective of this study is to confirm whether the rapid physiological response to the herbicide 2,4-D is a process of programmed cell death of the hypersensitivity type (PCD-HR), induced by specific proteins in the cell degradation process. The first experiment was conducted at DIC, with treatments for biotypes susceptible and resistant to the herbicide 2,4-D, with and without herbicide application, containing four replicates each. The herbicide was applied to plants at the 8-10 leaf stage, using a CO₂-pressurized backpack sprayer at 150 L ha⁻¹ at a dose of 1005 g a.i. ha⁻¹. Phytotoxicity and chlorophyll α fluorescence were obtained at 20, 30, 40, 60, and 120 min after application (MAA). Plant gas exchange was evaluated using an infrared gas analyzer at 30 and 120 MAA. Twenty-eight days after application, the aerial part was collected and kept in a drying oven until it reached a constant mass. The values were submitted to ANOVA (p≤0.05) and, when significant, to Tukey's test (p≤0.05). For proteomics, the material was collected at 0, 20, and 30 MAA and frozen at -80°C. It was then subjected to label-free analysis, and the identified proteins were analyzed by the Student's t-test (two-tailed), with proteins with a p-value < 0.05 considered “up-accumulated” if the Log2 of the fold change (FC) > 0.6 and “down-accumulated” if the Log2 of the FC was less than < -0.6. The transmission electron microscopy (TEM) experiment was performed in DIC, with three treatments: functional leaves from resistant plants without herbicide application and leaves collected 1h and 2h HAA from 2,4D, with three replicates. The plant material was processed and the images analyzed descriptively. Proteomic analysis confirmed a differentiation of proteins in the 2,4-D-resistant biotype compared to the susceptible one. Proteomics identified 387 differentially accumulated proteins, grouped into six dynamic clusters. In the resistant biotype, early induction of proteins related to oxidative stress, cell signaling, and structural reorganization was observed, unlike in the susceptible biotype. Proteins involved in defense signaling pathways, such as serine/threonine phosphatases, were found to be accumulated, suggesting activation of MCP-HR defense routes. MET analyses show that in the resistant biotype, mesophyll cells present structural damage between 1 and 2 HAA with membrane disorganization, tonoplast rupture, and mitochondrial swelling, characteristics of MCP-HR. In vascular bundle cells, the structure remained preserved in resistant biotypes, suggesting no herbicide translocation. It is concluded that proteomic and ultrastructural analyses confirm that resistance to 2,4-D in Conyza sumatrensis is associated with the activation of MCP-HR, with localized damage in the mesophyll and limited herbicide translocation.
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4
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JULIANE FERREIRA PINTO
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Biofumigation with fresh poultry litter for the control of clubroot:
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Líder : MARGARIDA GORETE FERREIRA DO CARMO
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MIEMBROS DE LA BANCA :
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EDNALDO DA SILVA ARAÚJO
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HUGO JOSÉ DE OLIVEIRA ZOFFOLI
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MARGARIDA GORETE FERREIRA DO CARMO
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Data: 24-mar-2026
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Resumen Espectáculo
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Biofumigation is a strategy used as an alternative to chemical fumigants in the control of diseases caused by soilborne pathogens. It is based on the incorporation of organic residues and the release of compounds with suppressive activity. This study aimed to evaluate the effect of five doses of fresh poultry litter (FPL) and two post-incorporation management practices, maintaining the pots open or sealed, on the intensity of clubroot and on the development of cauliflower (cv. Vigo F1) and arugula (cv. Rococó). The experiment was conducted in a greenhouse using 25-L pots, in a randomized block design, arranged in a 2 × 5 × 2 factorial scheme: soil inoculated or non-inoculated with resting spores of Plasmodiophora brassicae (density); application and incorporation of five doses of FPL (doses in g L⁻¹); and maintenance of the pots open or sealed for 28 days, with four replications. The application of FPL promoted changes in soil chemical attributes, with an increase in pH and nutrient availability, especially under sealed conditions. In sealed pots, a suppressive effect on spontaneous plants was observed, with a significant linear reduction in plant density, fresh mass, and dry mass as FPL doses increased. In cauliflower, treatments did not significantly affect growth and yield variables, indicating the absence of phytotoxic effects from FPL application or pot sealing. However, in inoculated pots, a progressive reduction in disease incidence and severity was observed with increasing doses. In open pots, the highest incidence (75%) and severity occurred in the absence of FPL, with disease suppression observed only at the highest dose (2.14 g L⁻¹). In sealed pots, incidence was 25% at doses of 0.0, 0.27, 0.54, 1.07, and 2.14 g L⁻¹, and reached 0% from the dose of 1.07 g L⁻¹ onward. In arugula, increasing FPL doses significantly increased fresh mass and the volume of healthy roots, regardless of inoculation or management, and contributed to the reduction of disease intensity, especially under sealed pot conditions. It is concluded that fresh poultry litter has biofumigant potential for reducing losses caused by clubroot, in addition to providing nutritional effects and promoting improved plant development.
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5
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JOSÉ MAURICIO FAJARDO DA CUNHA
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Bioprospecting of Bacillaceae bacteria for the control of the etiological agent of clubroot.
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Líder : MARCIA SOARES VIDAL
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MIEMBROS DE LA BANCA :
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EDERSON DA CONCEIÇÃO JESUS
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JOSÉ IVO BALDANI
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MARCIA SOARES VIDAL
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MARGARIDA GORETE FERREIRA DO CARMO
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Data: 26-mar-2026
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Resumen Espectáculo
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Clubroot, caused by Plasmodiophora brassicae, compromises the productivity of Brassica species and presents limited control options, mainly due to the persistence and dissemination of resting spores in the soil. In this context, members of the family Bacillaceae represent promising biotechnological tools for disease management. Therefore, the objective of this study was to bioprospect bacteria from the family Bacillaceae for the control of the causal agent of clubroot. For this purpose, 54 root samples from cruciferous plants and 37 soil samples were collected from nine producing farms located in the Mountain Region of the state of Rio de Janeiro, Brazil. The samples were processed for the isolation of endospore-forming bacteria, resulting in a proprietary collection of 187 plant-associated isolates and 217 soil isolates. As P. brassicae cannot be cultivated in vitro, the initial screening of strains was conducted through indirect selection based on visual diagnosis, using Fusarium oxysporum f. sp. lycopersici and Magnaporthe oryzae, which share similarities in cell wall composition. The first screening stage prioritized 139 isolates. In vitro validation was performed using antagonism assays with parallel streaks in a completely randomized design. The assays were analyzed using the Kruskal–Wallis test for overall comparison among treatments, followed by Dunn’s test with Benjamini–Hochberg correction at a 5% probability level. Nineteen strains showing mycelial area inhibition indices greater than 70% were selected.
Subsequently, two greenhouse experiments evaluated the effects of the preselected strains on biological responses related to disease severity caused by P. brassicae and on growth promotion in cauliflower plants. Experiment I was conducted in a two-level factorial design (with and without pathogen), including 19 strains, one negative control (water), and five replicates arranged in randomized blocks, and selected five potential biological control agents based on disease severity reduction criteria. Experiment II consisted of six treatments in a two-level factorial design (with and without pathogen), with ten replicates, also arranged in randomized blocks. Greenhouse experiments were analyzed using a generalized linear model (GLM; ANODEV), with mean comparisons performed using Sidak/Fisher tests at a 5% probability level. Sequencing of the 16S rDNA gene of the strains was carried out, followed by sequence processing using BioEdit. Taxonomic identification was performed based on similarity analysis using BlastN and EzBioCloud Pro. Phylogenetic analysis was conducted using the Neighbor-Joining method for comparative clustering with reference strains. All evaluated bacterial isolates belonged to the class Bacilli, with a predominance of the family Bacillaceae. The strains showing the best biocontrol performance belonged to the Bacillus subtilis complex. Biochemical assays for qualitative evaluation of lytic enzymes associated with biological control and plant growth promotion were performed according to institutional standard operating procedures and assessed by visual diagnosis. All evaluated strains showed high production of lytic enzymes, with a minimum of five positive enzymatic activities per isolate. These results demonstrate the potential of the prospected bacteria, highlighting the importance of further analyses to better understand the selected organisms and their mechanisms of action
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6
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PEDRO PAULO FARIA CONDE
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Genetic diversity in Brazilian peppertree (Schinus terebinthifolius Raddi.) based on leaf characteristics and ISSR markers
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Líder : PEDRO CORREA DAMASCENO JUNIOR
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MIEMBROS DE LA BANCA :
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GUSTAVO TORRES DOS SANTOS AMORIM
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MARCO ANDRE ALVES DE SOUZA
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PEDRO CORREA DAMASCENO JUNIOR
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Data: 27-mar-2026
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Resumen Espectáculo
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In Brazil, the Brazilian peppertree (Schinus terebinthifolius) stands out mainly for its medicinal properties and the production of pink peppercorns. Despite its agronomic potential, only one cultivar of the species has been registered with the Ministry of Agriculture. Genetic improvement work is of paramount importance for developing cultivars adapted to production areas. Therefore, the first step is to understand the available genetic diversity. The general objective of this work was to understand and estimate the genetic diversity among Brazilian peppertree genotypes of agronomic interest, considering morphological aspects of the leaf and DNA, using ISSR markers. For this purpose, 20 genotypes were considered. For each genotype, 25 fully developed leaves were collected and digitized using a desktop scanner. In the ImageJ software, the leaves were analyzed for 20 variables related to their length, width, area, apex shape, and number of leaflets. With these variables, all genotypes were subjected to botanical classification at the variety level. Also, descriptive statistical parameters were obtained from the leaf variables. Concomitantly, genomic DNA from all plants was extracted from leaves. After quantification, different ISSR primers were tested. The 15 most polymorphic primers were used. After performing the PCRs, the amplified products were subjected to electrophoresis on a 5% agarose gel. All gels were photodocumented and analyzed. The presence of bands was recorded with a value of 1 (one), and the absence, zero. From the molecular variables, the polymorphic information content (PIC) was estimated. Both leaf morphological variables and molecular variables were subjected to UPGMA hierarchical cluster analysis, respectively, based on Euclidean distance and Jaccard dissimilarity. Subsequently, the respective cophenetic correlations were estimated. Finally, dendrograms were obtained. In the case of morphological variables, the dendrogram was accompanied by a heatmap. For both types of variables, the number of optimal genotype groups in the dendrogram was estimated using the kgs algorithm. Considering the leaf morphological variables, radar charts were constructed for each of the genotype groups formed. In addition, the relative contribution of leaf variables to the genetic diversity found was estimated. Shannon and Pielou diversity indices were also estimated from the morphological and molecular variables. All statistical analyses were performed using the R program. With the exception of the UFRRJ ARO071-F and UFRRJ ARO078-F genotypes, which had five leaflets per leaf, all others had seven leaflets. In any case, the genotypes were classified as *Schinus terebinthifolia* var. *raddiana*, given that, among other parameters, the central leaflet was larger than the others. On average, leaf length ranged from 8.51 to 14.18 cm. Cophenetic correlation was estimated at 0.91 and 0.72, respectively, for leaf and molecular variables. Genotypes were grouped into six distinct groups, both in relation to leaf and DNA variables. Despite this, there were no genotype matches within the groups. These results were expected, since the ISSR primers used hybridize broadly and randomly across the genome, and are therefore not specific to the DNA sequences that code for morphological aspects in leaves. Regarding the leaves, the clustering patterns obtained indicated broad genetic diversity. This is corroborated by the estimates of the Shannon (H’) and Pielou (J) indices, respectively, of 2.85 and 0.90. The leaf variables that contributed most to diversity were those related to leaflet area. Together, they contributed 68.87% of the diversity found. The UFRRJ ARO078-F and UFRRJ ARO071-F genotypes were the most dissimilar in relation to leaf characteristics. Molecular diversity was also considered high, given that, despite the irregular distribution of plants in the groups, the minimum and maximum distances obtained were high, with an average estimated at 0.76. The diversity indices indicated that molecular diversity was very high (H´= 6.0; J = 0.97). The estimated average PIC (0.33) pointed to the use of highly informative loci. Based on the results found for leaf morphology and genomic DNA analysis among the analyzed genotypes, it is concluded that the genetic diversity among the genotypes was high. These results may indicate that the plants in the studied population tend to diverge for several agronomic traits, such as fruit production and the synthesis of active principles of medicinal interest.
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7
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MARCIA DA SILVA PEREIRA
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PHYSIOLOGICAL RESPONSES AND PROTEIN CONTENT IN THE GRAIN OF FOUR COWPEA GENOTYPES SUBMITTED TO WATER DEFICIENCY.
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Líder : CARLOS PIMENTEL
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MIEMBROS DE LA BANCA :
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CARLOS PIMENTEL
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LEONARDO OLIVEIRA MEDICI
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NORMA GOUVÊA RUMJANEK
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Data: 30-jul-2026
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Resumen Espectáculo
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Cowpea is a legume grown in different regions of the world. In Brazil, the crop is of socio-economic importance to low-income families, being an essential part of the diet of the poorest populations, as it is a low-cost food alternative, often referred to as "poor people's meat" due to the high protein content of the beans. It is a drought-tolerant legume that adapts well to semi-arid conditions. However, when cultivated plants are subjected to water stress during the growing cycle, they change their physiological, morphological, and biochemical functions, affecting their productivity. Therefore, this work aims to characterize the physiological responses and grain protein content of four cowpea genotypes: EPACE 10, BRS Sempre Verde, BRS Pingo de ouro 1-2, and Paulistinha, in response to water deficit, in a greenhouse of the Crop Science Department of the Federal Rural University of Rio de Janeiro (UFRRJ). Cowpea is a legume grown in different regions of the world. In Brazil, the crop is of socio-economic importance for low-income families, being an essential part of the diet of the poorest population, as it is a low-cost nutritional alternative, often referred to as "poor people's meat" due to the high protein content of the beans. It is a drought-tolerant legume that adapts well to semi-arid conditions. However, when cultivated plants are exposed to water stress during the growing cycle, they change their physiological, morphological, and biochemical functions, affecting their productivity. In this context, and intending to select genotypes more adapted to drought and with a better protein profile, this work aims to characterize the physiological responses and grain protein content of four cowpea genotypes: EPACE 10, BRS Sempre Verde, BRS Pingo de ouro 1-2 and Paulistinha, in response to water deficit, in a greenhouse at The experiment will be conducted in a completely randomized design (DIC) with two plants per pot: 4 genotypes x 9 collections x 3 replicates, for 108 experimental units. Water deficit will be imposed on the plants when at least 50% show the first flower bud. To characterize drought tolerance in cowpea, the following physiological measures will be evaluated: leaf water potential, relative leaf water content, leaf area, aerial part dry mass, protoplasm tolerance, leaf soluble protein content, before stress, during stress, and after rehydration. At physiological maturity, the cowpea genotypes will be collected to evaluate the production components and protein content of the grain, in plants exposed to drought or not. The data will be subjected to analysis of variance and the results will be compared and separated using the Student-Newman-Keus test (p < 0.05) when a significant difference is detected. It is hoped that the genotypes will show desirable characteristics for drought tolerance and that the hypothesis that different cowpea genotypes may show different adaptive responses when subjected to water deficit, with varying grain protein content, will be confirmed.
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8
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LUCIANO SANTOS DE SOUZA NEVES
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GREENPONICS OF Gliricidia sepium AND Paspalum notatum FOR SEEDLING PRODUCTION AND ARUGULA CULTIVATION IN A TILE-BASED SYSTEM.
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Líder : LEONARDO OLIVEIRA MEDICI
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MIEMBROS DE LA BANCA :
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DAVID DA CUNHA VALENÇA
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GABRIEL ALVES BOTELHO DE MELLO
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LEONARDO OLIVEIRA MEDICI
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Data: 31-jul-2026
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Resumen Espectáculo
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Greenponics is a cultivation technique based on the use of non-composted plant biomass as both substrate and gradual nutrient source, with potential to reduce dependence on external inputs and support more sustainable production systems. This study aimed to evaluate the viability of Greenponics using gliricidia (Gliricidia sepium) and Bahia grass (Paspalum notatum) for lettuce (Lactuca sativa L.) and arugula (Eruca sativa Mill.) seedling production and for arugula cultivation in a tile-based system. The dissertation was organized into two chapters. The first chapter evaluated seedling production in trays using treatments with gliricidia combined with soil, Bahia grass combined with soil, a mixture of both biomasses, and soil alone. The second chapter evaluated arugula cultivation in tiles using six proportions between gliricidia and Bahia grass, ranging from 100% gliricidia to 100% Bahia grass, with automated irrigation management and assessment of substrate water retention. In seedling production, there was a significant interaction between biomass source and biomass-to-soil proportion. Among the proportions effectively tested, the composition containing 80% gliricidia and 20% soil showed the highest observed means for several variables. However, the regressions estimated different maximum responses among biomass sources and crops: approximately 66–67% gliricidia and 62–65% Bahia grass for lettuce, and 56–59% gliricidia and 41–46% Bahia grass for arugula, Greenponics proved to be viable for seedling production and arugula cultivation in tiles, provided that biomass proportions, substrate physical structure, and water management are properly adjusted to the cultivation system.
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9
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SINDY STEFANY DOS SANTOS
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Development and reproduction of two Ceraeochrysa Species (Neuroptera: Chrysopidae) fed on Aleurocanthus woglumi Ashby (Hemiptera: Aleyrodidae)
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Líder : ELEN DE LIMA AGUIAR MENEZES
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MIEMBROS DE LA BANCA :
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ELEN DE LIMA AGUIAR MENEZES
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HALINA SCHULTZ
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PATRÍCIA SOBRAL SILVA
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Data: 06-ago-2026
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Resumen Espectáculo
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The citrus blackfly (CBF), Aleurocanthus woglumi (Hemiptera: Aleyrodidae), is a major pest of citrus crops worldwide. Ceraeochrysa cincta (Schneider) and Ceraeochrysa claveri (Navás) are two Neotropical lacewing species commonly found in citrus orchards; however, their potential as biological control agents of A. woglumi has not yet been investigated. Therefore, this study aimed to compare the biological performance of the immature and adult stages of C. cincta and C. claveri when fed fourth-instar female nymphs of A. woglumi under laboratory conditions. The experiment was conducted at the Laboratory of Biological Control of Phytophagous Insects (LACOBIF), located at the Integrated Pest Management Center (CIMP) of the Federal Rural University of Rio de Janeiro (UFRRJ), using a completely randomized design. Four treatments were evaluated, consisting of two lacewing species (C. cincta and C. claveri) and two prey types (fourth-instar female nymphs of CBF and Ephestia kuehniella eggs). Larvae of both lacewing species were obtained from eggs originating from stock colonies maintained at LACOBIF. Each treatment was initiated with 30 first-instar larvae, totaling 120 individuals. Prey were supplied at rates of 15, 25, and 45 nymphs per larva during the first, second, and third instars, respectively, with prey replacement every 24 h. As a positive control, 1 mg of E. kuehniella eggs was provided every 48 h. CBF nymphs were obtained through daily collections of infested leaves from Citrus spp. plants in Seropédica, Rio de Janeiro, Brazil. Biological parameters of the larval, pupal, and adult stages were evaluated. Data were subjected to analysis of variance (ANOVA), and variables meeting the assumptions of the analysis were compared using Tukey’s test at 5% significance. Variables that did not meet these assumptions were analyzed using the nonparametric Kruskal–Wallis test, followed by Dunn’s multiple-comparisons test at 5% significance. Egg viability and sex ratio were analyzed using the chi-square test (χ²), followed by pairwise comparisons of proportions when applicable. Statistical analyses were performed using GraphPad Prism® and R software. Larvae of C. cincta and C. claveri fed CBF nymphs exhibited slower development and lower viability than those fed E. kuehniella eggs. C. cincta was more negatively affected by the target prey, with larvae exhibiting longer instar durations and lower survival. The reduced number of surviving C. cincta individuals prevented the formation of couples for the evaluation of reproductive performance. In contrast, C. claveri larvae and pupae fed CBF nymphs completed development, resulting in fertile adults that produced viable eggs. Sex ratio did not differ among treatments. The results demonstrate that C. claveri exhibited superior biological performance during the immature and adult stages when its larvae were fed CBF nymphs compared with C. cincta, indicating its potential for the biological control of CBF.
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10
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EDUARDO PEREIRA DA ROCHA
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Agronomic Potential of a Bioinput Produced by Composting Brewery Agro-Industrial Residues for Vegetable Cultivation
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Líder : ERICA SOUTO ABREU LIMA
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MIEMBROS DE LA BANCA :
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ERICA SOUTO ABREU LIMA
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EDNALDO DA SILVA ARAÚJO
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CARLOS ANTÔNIO DOS SANTOS
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Data: 12-ago-2026
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Resumen Espectáculo
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The reuse of agro-industrial residues represents a promising strategy to promote the sustainability of agricultural systems by reducing environmental impacts and adding value to by-products with agronomic potential. Among these residues, brewer's spent grain and hop crop residues generated by the brewing industry stand out, as their use as raw materials for composting may result in bioinputs capable of partially or completely replacing mineral fertilizers. In this context, the present study aimed to evaluate the agronomic potential and environmental safety of a bioinput produced by composting brewery agro-industrial residues (brewer's spent grain and hop crop residues mixed with eucalyptus sawdust) for the successive cultivation of vegetables. The composting process was carried out for 90 days under protected conditions, with monitoring of temperature, moisture, pH, electrical conductivity, total carbon and nitrogen, mineral nitrogen, bulk density, gaseous emissions, and the multielemental composition of the compost. Subsequently, greenhouse experiments were conducted using arugula (Eruca sativa Mill. cv. Donatella) and radish (Raphanus sativus L. cv. Saxa 220) over two successive cropping cycles. The experimental design consisted of a randomized complete block design in a 2 × 4 + 2 factorial arrangement, comprising two fertilization sources (brewer's spent grain and stabilized organic compost), four nitrogen application rates (50, 100, 150, and 200% of the crop nitrogen recommendation), in addition to an unfertilized control and a mineral fertilization treatment. Agronomic traits, photosynthetic performance assessed by chlorophyll a transient fluorescence (JIP-test), soil chemical properties, and plant nutritional status were evaluated. The composting process resulted in a stabilized organic compost with suitable characteristics for agricultural use. Both bioinputs promoted improvements in plant growth, biomass production, and the nutritional status of arugula and radish, while also contributing to the maintenance of soil fertility and photosynthetic efficiency. During the second cropping cycle, residual and cumulative effects of the organic fertilizers were observed, particularly for brewer's spent grain, which showed greater persistence in nutrient release and superior agronomic performance for several radish traits. Chemical analyses of both soil and plant tissues demonstrated no relevant accumulation of potentially toxic elements, indicating that the use of these bioinputs did not compromise the environmental safety of the production system under the evaluated conditions. It is concluded that brewery agro-industrial residues have considerable potential for the production of bioinputs intended for vegetable cultivation, representing a sustainable alternative for the valorization of these materials by improving soil fertility, enhancing crop development, and reducing dependence on mineral fertilizers, without evidence of contamination by potentially toxic elements in successive cropping systems.
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11
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RICKSON GABRIEL DOS SANTOS FARIAS
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Sustainable production of Ornamental Sunflowers: performance of alternative Substrates and Alcohols in the Production and Quality of Potted Plants
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Líder : ROGERIO GOMES PEGO
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MIEMBROS DE LA BANCA :
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CIBELLE VILELA ANDRADE FIORINI
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MICHELE CAGNIN VICENTE
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ROGERIO GOMES PEGO
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Data: 28-ago-2026
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Resumen Espectáculo
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The growing demand for sustainable production systems has driven the search for alternatives that reduce the consumption of natural resources and the use of chemical inputs in floriculture. In this context, ornamental sunflower (Helianthus annuus L.) stands out due to its high commercial value and its wide use in landscaping and potted plant production, requiring technologies that promote quality, sustainability, and production efficiency. Therefore, the aim of this study was to evaluate sustainable strategies for ornamental sunflower production through the use of dairy cattle wastewater (DCW) associated with different commercial substrates for seedling production and the application of ethanol and methanol as alternative plant growth regulators in the production of potted plants. The study comprised two independent experiments. In the first experiment, a completely randomized design was used in a 3 × 6 factorial scheme, comprising three commercial substrates (Biomix, Organossolo, and Natus) and six concentrations of dairy cattle wastewater (0, 20, 40, 60, 80, and 100%), with ten replicates per treatment. Seedlings were evaluated for initial growth, quality, and vigor. In the second experiment, also conducted in a completely randomized design, a 2 × 6 factorial scheme was adopted using ethanol and methanol at concentrations of 0, 2, 4, 6, 8, and 10% (v/v) to evaluate their effects on the vegetative growth and quality of potted ornamental sunflower plants. In both experiments, the data were subjected to analysis of variance and, when applicable, to Tukey's test and regression analysis, adopting a significance level of 5%. In the first experiment, the initial growth of the seedlings was influenced by both the substrate and the wastewater concentrations, with the response depending on the interaction between these factors. The Biomix substrate stood out by providing greater root ball stability and greater seedling vigor, especially when associated with moderate to high wastewater concentrations. These results demonstrate the potential of dairy cattle wastewater fertigation as an alternative source of water and nutrients, reducing dependence on mineral fertilizers. In the second experiment, ethanol promoted a greater number of leaves and higher fresh mass than methanol. Increasing alcohol concentrations resulted in reduced plant height, root length, and fresh mass, resulting in more compact plants. In contrast, chlorophyll content, dry mass, and production cycle were not significantly affected by the treatments, indicating that growth reduction occurred without detectable changes in these parameters. The results demonstrate that the combined use of appropriate substrates, dairy cattle wastewater fertigation, and alcohol application represents a technically feasible and environmentally sustainable strategy for ornamental sunflower production, contributing to reduced dependence on mineral fertilizers and synthetic plant growth regulators.
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12
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IGOR NUNES BARCELLOS DA COSTA
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Characterization of NTSR resistance in Conyza sumatrensis under different temperatures
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Líder : CAMILA FERREIRA DE PINHO
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MIEMBROS DE LA BANCA :
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ALFREDO JUNIOR PAIOLA ALBRECHT
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CAMILA FERREIRA DE PINHO
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LEONARDO OLIVEIRA MEDICI
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Data: 31-ago-2026
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Resumen Espectáculo
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Non-target-site resistance (NTSR) represents a major challenge for weed management because it may involve alterations in herbicide absorption, translocation, compartmentalization, metabolism, and cellular protection against herbicide-induced damage, thereby complicating the control of these species. Furthermore, the expression of these mechanisms may vary according to environmental conditions, particularly temperature. This study aimed to evaluate the influence of temperatures of 18 and 30 °C on the efficacy of diquat and glyphosate and to characterize the photochemical, physiological, oxidative, antioxidant, and detoxification-related responses in resistant and susceptible biotypes of Conyza sumatrensis. Two independent experiments were conducted under controlled conditions, each arranged in a 2 × 2 factorial design consisting of resistant and susceptible biotypes and temperatures of 18 and 30 °C, in a completely randomized design with four replications. Herbicides were applied to plants with 15 to 20 leaves. Visual control was assessed up to 28 days after application (DAA), together with gas exchange, chlorophyll a transient fluorescence, OJIP curves, reactive oxygen species, lipid peroxidation, and the activities of antioxidant enzymes and enzymes associated with glutathione metabolism. In the diquat experiment, high temperature rapidly intensified the herbicide’s redox cycling, resulting in increased production of O₂•⁻ and H₂O₂, elevated MDA levels, reduced net photosynthesis, and early impairment of electron transport and the indices PIABS, PItotal, φRo, and RE₀/RC. At 28 DAA, the susceptible biotype died at 30 °C, whereas at 18 °C it exhibited regrowth. The resistant biotype survived at both temperatures, with lower control under cooler conditions. Greater GR activity at 18 °C, associated with reduced membrane lipid peroxidation, indicated more efficient preservation of redox homeostasis, limiting the progression of initial stress into irreversible damage. In contrast, glyphosate produced the opposite response. At 28 DAA, the resistant biotype exhibited 96.25% control at 18 °C and 13.75% at 30 °C, whereas the susceptible biotype showed 86.67% and 35.00% control, respectively. Under low temperature, the effects were initially less abrupt but progressed to persistent reductions in carbon assimilation and impairment of electron transport extending to the final electron acceptors of Photosystem I. APX and GST activities were higher at 18 °C, and γ-glutamyl transferase showed distinct temporal responses between biotypes, indicating mobilization of vacuolar glutathione metabolism without confirming protective herbicide sequestration. It is concluded that temperature modulated herbicide efficacy and the phenotypic expression of resistance in contrasting ways. High temperature enhanced the oxidative action and weed control provided by diquat, whereas low temperature preserved antioxidant mechanisms. For glyphosate, low temperature suppressed resistance and promoted a more persistent systemic herbicidal effect, whereas high temperature allowed the survival of both biotypes, probably due to changes in herbicide availability, translocation, or cellular compartmentalization.
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1
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MAYARA DE MELLO MARQUES
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MOLECULAR AND CHEMICAL DIVERSITY AND PERFORMANCE OF PERIWINKLE (Catharanthus roseus [L.] G. Don) GENOTYPES REGARDING THEIR POTENTIAL FOR THE PRODUCTION OF ANTINEOPLASTIC ALKALOIDS: VINBLASTINE, CATHARANTHINE, AND VINDOLINE
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Líder : PEDRO CORREA DAMASCENO JUNIOR
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MIEMBROS DE LA BANCA :
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PEDRO CORREA DAMASCENO JUNIOR
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ANDRE MARQUES DOS SANTOS
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MARILENE HILMA DOS SANTOS
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EDILSON ROMAIS SCHMILDT
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TATIANA DE OLIVEIRA PINTO
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Data: 26-feb-2026
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Resumen Espectáculo
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Periwinkle (Catharanthus roseus), from the family Apocynaceae and probably native to Madagascar, is important for producing alkaloids such as vinblastine (VBL) and vincristine (VCR), which are used in the treatment of lymphomas and leukemias. Since these compounds are not fully synthesized in the laboratory, field cultivation of the plant is essential for extracting the precursors of VBL, catharanthine and vindoline. However, the low yield of alkaloids increases production costs, making breeding programs essential for selecting more productive genotypes. Therefore, this study aimed to evaluate the population and individual performance of periwinkle genotypes based on 18 morphoagronomic variables, including leaf biomass production, over a period of one and a half years. In addition, the potential of the genotypes for the alkaloid contents of vinblastine (VBL) and its precursors, catharanthine (CAT) and vindoline (VDL), from leaves was determined. To this end, the thesis was divided into three chapters. In Chapter 1, 18 morphoagronomic variables, including dry leaf biomass (DLB), were evaluated in 20 genotypes over 18 months at 90-day intervals. The plants were grown in a greenhouse, and each evaluation was considered a replication (repeated over time). Genetic parameters and genotypic values were estimated using REML/BLUP. The individual performance of the genotypes (genotypic values) was also analyzed using BLUP-PCA. The results indicated that leaf-related variables were more sensitive to environmental effects compared to variables related to branches and flowers. Individual repeatability for DLB was moderate, showing that leaf biomass production may vary within and among genotypes. BLUP-PCA analysis demonstrated that high leaf biomass production can be associated with larger leaves and a greater number of branches per plant. In Chapter 2, the same experimental procedures described in Chapter 1 were carried out. However, the mean of each variable was used, estimated from repeated measurements over time. Eleven morphoagronomic variables were analyzed. Path analysis was performed, considering DLB as the main variable. Direct and indirect effects of the remaining variables on DLB were estimated. Leaf area and the mean diameter of primary branches were the variables most strongly associated with DLB, both showing high positive direct effects. The diameter of secondary branches (DSB) was not a good parameter to indicate increases in DLB and did not influence dry leaf biomass on its own. In decreasing order of influence on DLB were petiole length and mean flower length, both with negative coefficients, followed by leaf width, plant height, stem diameter, internode length of primary branches, and total number of branches (TNB), all with positive path coefficients. In Chapter 3, 23 periwinkle genotypes grown in a greenhouse were analyzed using 15 ISSR primers for genomic DNA characterization. Polymorphic information content (PIC) was estimated per locus and per primer. UPGMA clustering based on Jaccard dissimilarity was performed, the optimal number of groups was defined using the kgs algorithm, and population genetic structure was inferred. The contents of vinblastine (VBL), vincristine (VCR), catharanthine (CAT), and vindoline (VDL) were also quantified through ethanolic extraction of dried leaves followed by LC-MS analysis. High polymorphism (95.70%) and primers with medium to high informativeness were observed, although genetic diversity was classified as moderate to low, possibly due to relatedness among the genotypes. The genotypes were grouped into five clusters, with one group comprising 43.48% of them. VCR was not detected, whereas VBL, CAT, and VDL showed wide variation. VBL ranged from 0.0418 to 0.1738 mg/g of dry leaves, and eight promising genotypes were identified for its production, all descendants of the female parents UFRRJ VIN004, UFRRJ VIN044, and UFRRJ VIN005. Given the moderate to low genetic diversity observed, hybridizations among the eight selected genotypes may not be the most efficient strategy to achieve significant gains in VBL content. In this context, the development of inbred families, either from the selected genotypes or from the aforementioned parental lines, appears to be a more promising strategy for increasing VBL production.
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2
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RITA DE CÁSSIA SILVA
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Physiological modulation of glufosinate-ammonium herbicide efficacy by light
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Líder : CAMILA FERREIRA DE PINHO
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MIEMBROS DE LA BANCA :
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AROLDO FERREIRA LOPES MACHADO
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CAMILA FERREIRA DE PINHO
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GABRIELA DE SOUZA DA SILVA
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GILIARDI DALAZEN
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RUBEM SILVÉRIO DE OLIVEIRA JUNIOR
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Data: 05-mar-2026
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Resumen Espectáculo
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Light is an environmental factor that strongly influences the efficacy of the herbicide glufosinate-ammonium, affecting weed control under field conditions. The objective of this research was to understand how light intensity modulates the photochemical, biochemical, and antioxidant mechanisms involved in the action of glufosinate-ammonium, and how this modulation impacts weed control efficacy. Three experiments were conducted with the following specific objectives: to evaluate the photosynthetic and antioxidant metabolism of Amaranthus hybridus in response to glufosinate-ammonium under full sunlight and dark conditions (Chapter I); to investigate the role of herbicide-metabolizing enzymes in the physiological response of Amaranthus hybridus treated with glufosinate-ammonium under the absence of light (Chapter II); and to assess the influence of different light intensities on the physiological response of Amaranthus hybridus and Eleusine indica treated with glufosinate-based products (Chapter III). Light is an environmental factor that strongly influences the efficacy of the herbicide glufosinate-ammonium, affecting weed control under field conditions. The objective of this research was to understand how light intensity modulates the photochemical, biochemical, and antioxidant mechanisms involved in the action of glufosinate-ammonium, and how this modulation impacts weed control efficacy. Three experiments were conducted with the following specific objectives: to evaluate the photosynthetic and antioxidant metabolism of Amaranthus hybridus in response to glufosinate-ammonium under full sunlight and dark conditions (Chapter I); to investigate the role of herbicide-metabolizing enzymes in the physiological response of Amaranthus hybridus treated with glufosinate-ammonium under the absence of light (Chapter II); and to assess the influence of different light intensities on the physiological response of Amaranthus hybridus and Eleusine indica treated with glufosinate-based products (Chapter III). In Chapter II, glufosinate application in the dark resulted in low control of A. hybridus, regardless of the use of metabolic inhibitors. Glutamine synthetase was rapidly inhibited in all treatments; however, changes in photosynthetic parameters appeared later and were reversible at 12 hours after application, followed by recovery of the photosynthetic apparatus and plant regrowth at 14 days. Inhibition of GST and cytochrome P450 did not increase glufosinate efficacy nor alter plant physiological responses. These results suggest that the reduced efficacy of glufosinate under dark conditions is not associated with GST- or cytochrome P450-mediated metabolism, but rather with the dependence on photosynthetic activity for amplification of oxidative stress. In Chapter III, in Eleusine indica, glufosinate caused initial injury under all shading conditions, regardless of formulation, with more intense photochemical stress under 0% cloud cover. GS was rapidly inhibited and GST activity increased; however, plant growth recovery was observed over time. In contrast, Amaranthus hybridus showed 100% control under all light conditions, with rapid photosynthetic damage, GS inhibition, and increased GST activity. Light intensity influenced herbicide response, but the effect was species dependent.
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3
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MARIANA FERREIRA SANTA CRUZ COIMBRA
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Hop Cultivation in a Tropical Agroecosystem: Effects of Management with Poultry Litter Compost and Biochar on Metal Dynamics and on the Nutritional and Physiological Performance of Plants
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Líder : ERICA SOUTO ABREU LIMA
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MIEMBROS DE LA BANCA :
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ERICA SOUTO ABREU LIMA
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MARGARIDA GORETE FERREIRA DO CARMO
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BETANIA VAHL DE PAULA
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DAVID VILAS BOAS DE CAMPOS
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FABIANA SOARES DOS SANTOS
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Data: 27-mar-2026
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Resumen Espectáculo
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Hops have high economic potential in Brazil due to their importance in the brewing industry, but they present high production costs. In this context, poultry litter emerges as an accessible alternative source of nutrients. However, the presence of heavy metals in this input represents a challenge to its safe and sustainable agricultural use. The objective of this study was to evaluate the factors that most contribute to the productivity of hops cultivated in mountain agriculture in a tropical region, and the efficiency of using an organic compound on the productivity and quality of plants and soil. The study was conducted at the experimental farm of the Grupo Petrópolis company, located in the mountainous region of Rio de Janeiro (Teresópolis). Chapter 1 presents a preliminary study that consisted of characterizing four areas of the property, aiming to evaluate the influence of relief and the chemical and textural characteristics of the soil on productivity and heavy metal contamination in soils and plants. The topography, parent material, and management practices adopted on the property contributed to the enrichment of metals in the soil and their transfer and accumulation in the plants, and the factor that most favored the transfer of metals to the plants was soil acidity. For the development of chapters 2 and 3, an experiment was carried out on the property with the objective of evaluating the potential use of a compost (poultry litter + biochar) in the production of Humulus lupulus L. cv. Triple Pearl, and evaluating the transfer of metals in the soil-plant system. The experiment consisted of a randomized block design, with a 2 x 4 + 1 factorial arrangement, 4 replications, and 3 plants per plot, totaling 36 experimental units. The plants were subjected to doses (D) of the compound (D1: 1.5 kg and D2: 3.0 kg) on a dry matter basis, determined from the crop's nutritional demand (D2), together with proportions of biochar (0, 5, 10 and 15%), plus the control treatment (mineral fertilization). Chapter 2 presents the effects of the different management practices on soil chemistry, plant element extraction, productivity, and essential oil content. The different management systems influenced plant productivity, showing that there was no statistical difference in the production of dry mass of leaves, stems, and cones and the number of cones in the treatments that received D2 associated with 5% biochar, when compared to the treatment that received mineral fertilization. The D2+15%BC treatment favored the accumulation of secondary metabolites, enabling essential oil production from the cones without difference from the mineral treatment. Chapter 3 presents the influence of the different management practices on the enrichment and availability of heavy metals in the soil and plants, and their impact on productive efficiency. Biochar reduced the bioavailability of metals in the soil-plant system and, despite the increase of some elements in the soil, plant accumulation remained below risk levels. The D2 of the compost favored plant nutrition and element extraction. Specific photochemical alterations did not compromise productivity and, in some treatments, were associated with increased essential oil production. It is concluded that the use of composted poultry litter associated with biochar is a promising strategy for the sustainable cultivation of hops in tropical conditions, as it improves soil fertility, favors plant nutrition and productivity, increases essential oil production under specific conditions, and modulates the bioavailability of metals, without compromising the physiological performance of the crop.
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4
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LUCAS CARVALHO SOARES
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Biological control of fusarium wilt in tomato using non-pathogenic isolates of Fusarium sp.
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Líder : MARGARIDA GORETE FERREIRA DO CARMO
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MIEMBROS DE LA BANCA :
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ALICE MARIA GONÇALVES SANTOS
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CARLOS ANTÔNIO DOS SANTOS
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MARCIA SOARES VIDAL
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MARGARIDA GORETE FERREIRA DO CARMO
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MARUZANETE PEREIRA DE MELO
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Data: 15-jun-2026
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Resumen Espectáculo
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The present study aimed to evaluate the potential of non-pathogenic isolates of Fusarium oxysporum for the biological control of Fusarium wilt in tomato plants caused by Fusarium oxysporum f. sp. lycopersici (Fol). Isolates belonging to the collection of the Seed Epidemiology and Pathology Laboratory of the Federal Rural University of Rio de Janeiro (LabEPS/UFRRJ), obtained from tomato plants cultivated in the state of Rio de Janeiro, Brazil, were used. Initially, in Chapter I, twenty-eight isolates were subjected to morphological characterization, pathogenicity tests on tomato seedlings, and statistical analysis using a generalized linear model (GLM) to estimate the probability of vascular necrosis and identify non-pathogenic isolates with biocontrol potential. The isolates FENA LX104, FENA LX105, FENA LX201, FENA LX102, and FENA LX301 were identified as non-pathogenic and endophytic, standing out due to the absence of symptoms and their ability to asymptomatically colonize vascular tissues. In Chapter II, the effect of inoculating tomato seeds with isolates FENA LX102, FENA LX104, FENA LX201, and FENA LX301 was evaluated through blotter tests, seedling emergence in sand, and greenhouse assays, using water, a dicarboximide fungicide, and a biological product based on Trichoderma harzianum as controls. Seeds and seedlings were challenged with the pathogenic isolates Fol 113, Fol 3201, and Fol 3302. The results demonstrated that the non-pathogenic isolates did not impair seed germination and promoted a higher percentage of normal seedlings, lower incidence of non-germinated seeds, and greater initial plant vigor, even in the presence of the pathogen. Isolate FENA LX104, especially at the concentration of 10⁴ microconidia mL⁻¹ (c2), showed superior and more consistent performance under different experimental conditions, being considered the most promising isolate for the subsequent stages of the study. In Chapter III, seedlings of different tomato varieties, including Perinha Água Branca (PAB), Santa Cruz Kada, Serato, and the commercial rootstocks Shincheonggang, Green Power, Contrattack, and Gumgang, were previously inoculated with the non-pathogenic isolates and subsequently challenged with pathogenic Fol isolates. Disease incidence, severity, vascular necrosis, and fungal reisolation capacity were evaluated. The isolates FENA LX104, FENA LX201, and FENA LX301 showed high efficiency in controlling Fusarium wilt, drastically reducing disease symptoms and maintaining plants asymptomatic even in the presence of the pathogenic isolates Fol 113 and Fol 3201, in addition to presenting stable endophytic behavior. In some assays, control efficiency reached up to 100%, confirmed by the absence of symptoms throughout the experimental period. In Chapter IV, the reaction of agronomically important species, such as lettuce, arugula, common bean, soybean, cucumber, and eggplant, to inoculation with the non-pathogenic isolates FENA LX104, FENA LX201, and FENA LX301 was evaluated. The experiments were conducted through seed and seedling inoculation using spore suspensions standardized at 1 × 10⁶ microconidia mL⁻¹. The results demonstrated that the isolates showed broad compatibility with most evaluated species, without inducing pathogenic symptoms, in addition to evidencing endophytic colonization and plant growth-promotion potential. However, isolate FENA LX201 showed differential behavior in some crops, such as arugula, soybean, and common bean, indicating the need for monitoring the phenotypic stability of these isolates for safe use in biological control programs. In Chapter V, the biocontrol potential of isolates FENA LX104, FENA LX201, and FENA LX301 was investigated in a hydroponic system using tomato cv. Santa Cruz Kada. Seedlings were inoculated by root immersion in suspensions containing 1 × 10⁶ microconidia mL⁻¹ and later transplanted into nutrient solutions inoculated or not with Fol 3302. The results demonstrated a significant reduction in Fusarium wilt symptoms and maintenance of plant growth even in the presence of the pathogen in seedlings inoculated with the non-pathogenic isolates. Based on the results, it was possible to verify that non-pathogenic isolates of Fusarium oxysporum, especially FENA LX104, FENA LX201, and FENA LX301, have a high protective capacity against tomato Fusarium wilt, acting as beneficial endophytes and promising biological control agents.
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5
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MICHEL DOUGLAS SANTOS RIBEIRO
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Automated irrigation management for tomato crops in verdeponics: development of a control system and effects on production, physiology, and post-harvest quality
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Líder : DANIEL FONSECA DE CARVALHO
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MIEMBROS DE LA BANCA :
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MARCELO DE ALMEIDA GUIMARÃES
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DANIEL FONSECA DE CARVALHO
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DINARA GRASIELA ALVES
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JHONATAN MARINS GOULART
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NIVALDO SCHULTZ
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Data: 29-jul-2026
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Resumen Espectáculo
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The search for agricultural production systems that reconcile high productivity with environmental sustainability is one of the major challenges of modern agriculture. In this context, this thesis aimed to evaluate the technical and agronomic viability of the "Greenponics" system, which employs uncomposted plant biomass as a nutrient source in conjunction with a low-cost automated irrigation system, for the organic cultivation of the 'Dominador F1' hybrid tomato. To achieve this objective, two field experiments were conducted in Seropédica, Rio de Janeiro, in 2023 and 2024. The first experiment tested different proportions of grass clippings (Paspalum notatum) and Gliricidia leaves (Gliricidia sepium) as nutrient sources, compared to a control treatment using Bokashi compost. The second experiment, utilizing the biomass composition that showed the best productive performance in the first year, evaluated the effect of different irrigation flow rates on the crop, with water management controlled by an automatic irrigation trigger based on tensiometry. The automated irrigation system demonstrated operational robustness, functioning without failure for periods of up to 145 days and accurately recording irrigation events, which allowed for the precise quantification of applied water volumes. Results from the first experiment indicated that the combination of 50% grass clippings and 50% gliricidia leaves, supplemented with thermophosphate, yielded the highest productivity—reaching 121.08 Mg ha⁻¹—surpassing the 83.56 Mg ha⁻¹ observed in the Bokashi treatment. In the second experiment, the maximum productivity observed was 107.49 Mg ha⁻¹ (at a flow rate of 4.0 L h⁻¹), and a quadratic relationship was found between the volume of water applied and productivity, indicating that excessive increases in applied volume did not result in additional yield gains. Water use efficiency varied considerably among treatments, with the highest values recorded in treatments subjected to moderate water deficit, suggesting a differential crop response to water conditions. Regarding post-harvest fruit quality, results showed that physicochemical attributes, such as pH, total soluble solids, titratable acidity, and the soluble solids-to-acidity ratio, were influenced by both the nutritional composition of the biomass used and the volume of water applied. Fruits from treatments with a higher proportion of gliricidia exhibited a higher soluble solids-to-acidity ratio, indicating a sweeter flavor profile, whereas treatments using Bokashi and a balanced mixture of grass and gliricidia showed higher titratable acidity. In the second experiment, fruit pH and titratable acidity varied according to irrigation flow rates; higher pH values were observed in the full irrigation treatment, while higher acidity was noted under moderate water deficit conditions. Total soluble solids showed a quadratic response to irrigation depth, with peak values recorded under both severe water deficit and excess water conditions, suggesting distinct effects related to concentration and fruit metabolism. Thus, it is concluded that the Greenponics system, particularly when utilizing a balanced mixture of grass and gliricida combined with automated irrigation management, represents a viable alternative for organic tomato production. It offers the potential for high yields, efficient water use, and fruit quality attributes that meet commercial standards, although the physiological mechanisms underlying these responses require further detailed investigation.
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