715 resultados para Oryza nivara
Resumo:
Nitrogen is the most important nutrient for rice (Oryza sativa L) yields. This study aimed to evaluate the response of upland rice cultivars to N rate and application times in a randomized block design, in subdivided plots with four replications. The studied factors were five rice cultivars (BRS MG Curinga, BRS Monarca, BRS Pepita, BRS Primavera, and BRS Sertaneja), three application times (100 % at planting, 50 % at planting - 50 % at tillering and 100 % at tillering) and four N rates (0, 50, 100, and 150 kg ha-1). All cultivars responded to increased rates and different times of N application, especially BRS Primavera and BRS Sertaneja, which were the most productive when 50 % N rates were applied at sowing and 50 % at tillering. The response of cultivar BRS Monarca to N fertilization was best when 100 % of the fertilizer was applied at tillering.
Resumo:
O Estado do Rio Grande do Sul é o maior produtor de arroz irrigado do País, com destaque para a região da Fronteira Oeste. O objetivo deste trabalho foi avaliar propriedades físicas do solo e a produtividade de arroz irrigado por inundação em plantio direto e convencional, em níveis de palha residual de arroz em plantio direto. O delineamento experimental foi inteiramente casualizado, com quatro experimentos e 10 repetições nos experimentos 1, 2 e 3 e seis no experimento 4. Os sistemas de manejo foram: experimento 1 (E1), sistema PD (E1PD) e sistema convencional com duas gradagens na camada de 0-7 cm + remaplan (E1C), em área de um ano de cultivo de arroz, após sete anos de pousio do cultivo de arroz e semeadura de azevém no inverno, com pastejo animal o ano todo; experimento 2 (E2), sistema PD (E2PD) e sistema convencional (E2C), após campo nativo; experimento 3 (E3), sistema PD (E3PD) e sistema convencional (E3C), após plantio direto de arroz irrigado durante dois anos em área de campo nativo; e no experimento 4 utilizaram-se quatro níveis de palha residual antes da semeadura do arroz. A produtividade de arroz irrigado por inundação não diferiu entre os sistemas plantio direto e convencional. A massa seca residual do arroz antes da semeadura não influenciou a produtividade de arroz irrigado por inundação.
Resumo:
It is well-known nowadays that soil variability can influence crop yields. Therefore, to determine specific areas of soil management, we studied the Pearson and spatial correlations of rice grain yield with organic matter content and pH of an Oxisol (Typic Acrustox) under no- tillage, in the 2009/10 growing season, in Selvíria, State of Mato Grosso do Sul, in the Brazilian Cerrado (longitude 51º24' 21'' W, latitude 20º20' 56'' S). The upland rice cultivar IAC 202 was used as test plant. A geostatistical grid was installed for soil and plant data collection, with 120 sampling points in an area of 3.0 ha with a homogeneous slope of 0.055 m m-1. The properties rice grain yield and organic matter content, pH and potential acidity and aluminum content were analyzed in the 0-0.10 and 0.10-0.20 m soil layers. Spatially, two specific areas of agricultural land management were discriminated, differing in the value of organic matter and rice grain yield, respectively with fertilization at variable rates in the second zone, a substantial increase in agricultural productivity can be obtained. The organic matter content was confirmed as a good indicator of soil quality, when spatially correlated with rice grain yield.
Resumo:
A adoção de sistemas de rotação e sucessão de culturas é um dos pré-requisitos fundamentais para sustentabilidade dos sistemas de produção agrícola. Diante disso, o objetivo deste trabalho foi avaliar os efeitos de época de dessecação do azevém e de dose de adubação nitrogenada, aplicada na semeadura do arroz irrigado em sucessão, como estratégias para viabilizar o uso dessa sucessão em áreas de cultivo de arroz irrigado. O experimento foi conduzido no campo em dois anos agrícolas (2008/09 e 2009/10), em Cachoeirinha, RS, em um Gleissolo Háplico Ta distrófico típico. Utilizou-se o delineamento de blocos casualizados, em parcelas subdivididas, com três repetições. Os tratamentos foram constituídos de quatro épocas de dessecação do azevém (90, 70, 50 e 30 dias antes da semeadura do arroz, no primeiro ano; e 49, 34, 19 e 6, no segundo ano), de cinco sistemas de manejo da adubação nitrogenada no arroz irrigado, obtidos pela combinação de quatro doses de N na semeadura (0, 10, 20 e 40 kg ha-1) e de quatro doses de N em cobertura (150, 140, 130 e 110 kg ha-1), totalizando 150 kg ha-1, e de uma testemunha sem aplicação de N, durante todo o ciclo da cultura. A presença de palha de azevém com as plantas mantidas de pé não prejudica o estabelecimento inicial de plantas de arroz cultivado em sucessão. O rendimento de grãos de arroz irrigado cultivado em sucessão ao azevém não é influenciado pela época de dessecação de azevém e pela dose de N aplicada em semeadura.
Resumo:
A eficiência de absorção de um nutriente pela planta é função de seus atributos morfológicos e fisiológicos, que podem variar entre cultivares da mesma espécie. Realizou-se um estudo para determinar os parâmetros morfológicos de raiz e os cinéticos de absorção de potássio (K), em genótipos de arroz irrigado. O experimento foi conduzido em vasos, em laboratório com luz artificial. Os tratamentos compreenderam 11 genótipos de arroz: cultivares Avaxi, BRS Atalanta, BRS Bojuru, BRS Fronteira e BRS Querência e as linhagens CNA 10754, CNA 10756, CNA 10757, BRA 1455, BRA 1024 e BRA 1073. As plantas foram cultivadas em solução nutritiva completa, renovada semanalmente, até o estádio vegetativo de sete folhas (V7), quando foram avaliados os parâmetros morfológicos de raiz (comprimento, raio médio, área radicular, massa úmida e massa seca). Os parâmetros cinéticos de absorção de K (influxo máximo -Imáx, constante de Michaelis-Mentem - Km, e concentração mínima na solução para absorção -Cmín) também foram estimados. A quantidade de K acumulada pelos genótipos de arroz irrigado esteve diretamente relacionada ao comprimento e à área radicular e ao crescimento da parte aérea, que foram distintos entre os genótipos. Os parâmetros cinéticos de absorção (Imáx, Km e Cmín) variaram entre os genótipos de arroz, distinguindo-os quanto à velocidade de absorção do nutriente por unidade de raiz. Considerando-se o influxo de K e a massa de matéria seca de raiz, os genótipos classificam-se em três grupos quanto ao potencial para aquisição do nutriente: maior potencial (BRS Atalanta, Avaxi, BRS Querência, BRA 1455 e BRA 1073); potencial intermediário (BRS Fronteira, BRA 1024 e CNA 10754); e menor potencial (CNA 10756, BRS Bojuru e CNA 10757).
Resumo:
A toxidez por ferro é o distúrbio nutricional de maior ocorrência em arroz (Oryza sativa L.) cultivado em sistemas alagados, derivada da quantidade excessiva de íons ferrosos (Fe2+) gerados pela redução de óxidos de ferro em solos alagados. Em experimento conduzido em casa de vegetação, foram avaliados os efeitos de manejos da água de irrigação na dinâmica de redução de um Planossolo e na manifestação da toxidez por ferro em arroz. Os tratamentos dispostos em blocos completos ao acaso com quatro repetições constaram de cinco manejos da água: T1- início do alagamento no estádio V2-V3 do arroz; T2- início do alagamento no estádio V6-V7; T3- T1 e drenagem no estádio V10-V11; T4- T2 e drenagem no estádio V10-V11; e T5- T1 e drenagens nos estádios V7-V8 e V10-V11. O atraso do início do alagamento para o estádio V6-V7 do arroz manteve os valores do Eh da solução do solo mais elevados, promovendo menor disponibilidade de Fe2+ na solução do solo e deslocando a máxima liberação de Fe2+ na solução do solo para estádios fenológicos mais avançados do arroz. A realização de drenagens ao longo do ciclo vegetativo do arroz promoveu a reoxidação do solo, que ocasionou o aumento dos valores de Eh e redução da concentração de Fe2+ na solução do solo. O uso de drenagens durante o período vegetativo do arroz foi eficiente no controle da toxidez por excesso de ferro, em arroz cultivado em solo alagado.
Resumo:
The grain yield of upland rice under no-tillage has been unsatisfactory and one reason could be the nitrate/ammonium balance in the soil. Cover crops and nitrogen fertilization can be used to change the nitrate/ammonium relation in the soil and improve conditions for the development of upland rice in the no-tillage (NT) system. The aim was to study the effect of cover crops and nitrogen sources on grain yield of upland rice under no tillage. The study was carried out on the Fazenda Experimental Lageado, in Botucatu, State of São Paulo, Brazil, in an Oxisol area under no-tillage for six years. The experiment was arranged in a randomized block split-plot design with four replications. The plots consisted of six cover crop species (Brachiaria brizantha, B. decumbens, B. humidicola, B. ruziziensis, Pennisetum americanum, and Crotalaria spectabilis) and the split-plots of seven forms of N fertilizer management. Millet is the best cover crop to precede upland rice under NT. The best form of N application, as nitrate, is in split rates or total rate at topdressing or an ammonium source with or without a nitrification inhibitor, in split doses. When the cover crops C. spectabilis, B. brizantha, B. decumbens, B. humidicola, and B. ruziziensis preceded rice, they induced the highest grain yield when rice was fertilized with N as ammonium sulfate source + nitrification inhibitor in split rates or total dose at topdressing.
Resumo:
Incorporation of rice straw into the soil just before flooding for water-seeded rice can immobilize mineral nitrogen (N) and lead to the production of acetic acid harmful to the rice seedlings, which negatively affects grain yield. This study aimed to evaluate the formation of organic acids and variation in pH and to quantify the mineral N concentration in the soil as a function of different times of incorporation of rice straw or of ashes from burning the straw before flooding. The experiment was carried out in a greenhouse using an Inceptisol (Typic Haplaquept) soil. The treatments were as follows: control (no straw or ash); incorporation of ashes from previous straw burning; rice straw incorporated to drained soil 60 days before flooding; straw incorporated 30 days before flooding; straw incorporated 15 days before flooding and straw incorporated on the day of flooding. Experimental units were plastic buckets with 6.0 kg of soil. The buckets remained flooded throughout the trial period without rice plants. Soil samples were collected every seven days, beginning one day before flooding until the 13th week of flooding for determination of mineral N- ammonium (NH4+) and nitrate (NO3-). Soil solution pH and concentration of organic acids (acetic, propionic and butyric) were determined. All NO3- there was before flooding was lost in approximately two weeks of flooding, in all treatments. There was sigmoidal behavior for NH4+ formation in all treatments, i.e., ammonium ion concentration began to rise shortly after soil flooding, slightly decreased and then went up again. On the 91st day of flooding, the NH4+ concentrations in soil was 56 mg kg-1 in the control treatment, 72 mg kg-1 for the 60-day treatment, 73 mg kg-1 for the 30-day treatment and 53 mg kg-1 for the ash incorporation treatment. These ammonium concentrations correspond to 84, 108, 110 and 80 kg ha-1 of N-NH4+, respectively. When the straw was incorporated on the day of flooding or 15 days before, the concentration of N-NH4+ in the soil was 28 and 54 mg kg-1, equivalent to an accumulation of 42 and 81 kg ha-1 of N-NH4+, respectively. There was formation of acetic acid in which toxic concentrations were reached (7.2 mmol L-1) on the 15th day of flooding only for the treatment with straw incorporated on the day of flooding. The pH of the soil solution of all the treatments increased after flooding and this increase was faster in the treatments with incorporation of straw, followed by the ash treatment and then the control. After 60 days of flooding, however, the pH values were around 6.5 for all treatments, except for the control, which reached a pH of 6.3. Rice straw should be incorporated into the soil at least 30 days before flooding; otherwise, it may immobilize part of the mineral N and produce acetic acid in concentrations toxic to rice seedlings.
Resumo:
Establishment of the water layer in an irrigated rice crop leads to consumption of free oxygen in the soil which enters in a chemical reduction process mediated by anaerobic microorganisms, changing the crop environment. To maintain optimal growth in an environment without O2, rice plants develop pore spaces (aerenchyma) that allow O2 transport from air to the roots. Carrying capacity is determined by the rice genome and it may vary among cultivars. Plants that have higher capacity for formation of aerenchyma should theoretically carry more O2 to the roots. However, part of the O2 that reaches the roots is lost due to permeability of the roots and the O2 gradient created between the soil and roots. The O2 that is lost to the outside medium can react with chemically reduced elements present in the soil; one of them is iron, which reacts with oxygen and forms an iron plaque on the outer root surface. Therefore, evaluation of the iron plaque and of the formation of pore spaces on the root can serve as a parameter to differentiate rice cultivars in regard to the volume of O2 transported via aerenchyma. An experiment was thus carried out in a greenhouse with the aim of comparing aerenchyma and iron plaque formation in 13 rice cultivars grown in flooded soils to their formation under growing conditions similar to a normal field, without free oxygen. The results indicated significant differences in the volume of pore spaces in the roots among cultivars and along the root segment in each cultivar, indicating that under flooded conditions the genetic potential of the plant is crucial in induction of cell death and formation of aerenchyma in response to lack of O2. In addition, the amount of Fe accumulated on the root surface was different among genotypes and along the roots. Thus, we concluded that the rice genotypes exhibit different responses for aerenchyma formation, oxygen release by the roots and iron plaque formation, and that there is a direct relationship between porosity and the amount of iron oxidized on the root surface.
Resumo:
Magnaporthe oryzae causes rice blast, the most serious foliar fungal disease of cultivated rice (Oryza sativa). During hemibiotrophic leaf infection, the pathogen simultaneously combines biotrophic and necrotrophic growth. Here, we provide cytological and molecular evidence that, in contrast to leaf tissue infection, the fungus adopts a uniquely biotrophic infection strategy in roots for a prolonged period and spreads without causing a loss of host cell viability. Consistent with a biotrophic lifestyle, intracellularly growing hyphae of M. oryzae are surrounded by a plant-derived membrane. Global, temporal gene expression analysis used to monitor rice responses to progressive root infection revealed a rapid but transient induction of basal defense-related gene transcripts, indicating perception of the pathogen by the rice root. Early defense gene induction was followed by suppression at the onset of intracellular fungal growth, consistent with the biotrophic nature of root invasion. By contrast, during foliar infection, the vast majority of these transcripts continued to accumulate or increased in abundance. Furthermore, induction of necrotrophy-associated genes during early tissue penetration, previously observed in infected leaves, was not seen in roots. Collectively, our results not only report a global characterization of transcriptional root responses to a biotrophic fungal pathogen but also provide initial evidence for tissue-adapted fungal infection strategies.
Resumo:
Plant species that naturally occur in the Brazilian Caatinga(xeric shrubland) adapt in several ways to these harsh conditions, and that can be exploited to increase crop production. Among the strategic adaptations to confront low water availability, desiccation tolerance stands out. Up to now, the association of those species with beneficial soil microorganisms is not well understood. The aim of this study was to characterize Tripogon spicatusdiazotrophic bacterial isolates from the Caatingabiome and evaluate their ability to promote plant growth in rice. Sixteen bacterial isolates were studied in regard to their taxonomic position by partial sequencing of the 16S rRNA gene, putative diazotrophic capacity, in vitro indole-acetic acid (IAA) production and calcium phosphate solubilization, metabolism of nine different C sources in semi-solid media, tolerance to different concentrations of NaCl to pHs and intrinsic resistance to nine antibiotics. Finally, the ability of the bacterial isolates to promote plant growth was evaluated using rice (Oryza sativa) as a model plant. Among the 16 isolates evaluated, eight of them were classified as Enterobacteriaceae members, related to Enterobacter andPantoeagenera. Six other bacteria were related toBacillus, and the remaining two were related toRhizobiumand Stenotrophomonas.The evaluation of total N incorporation into the semi-solid medium indicated that all the bacteria studied have putative diazotrophic capacity. Two bacteria were able to produce more IAA than that observed for the strain BR 11175Tof Herbaspirillum seropedicae.Bacterial isolates were also able to form a microaerophilic pellicle in a semi-solid medium supplemented with different NaCl concentrations up to 1.27 mol L-1. Intrinsic resistance to antibiotics and the metabolism of different C sources indicated a great variation in physiological profile. Seven isolates were able to promote rice growth, and two bacteria were more efficient than the reference strainAzospirillum brasilense, Ab-V5. The results indicate the potential of T. spicatus as native plant source of plant growth promoting bacteria.
Resumo:
Os solos cultivados com arroz irrigado no Estado de Santa Catarina apresentam características mineralógicas e químicas distintas dos solos utilizados nos estudos de calibração do extrator Mehlich-1, para estimar a disponibilidade de fósforo do solo para as plantas. Desse modo, o objetivo deste trabalho foi avaliar a eficiência dos extratores Mehlich-1, Mehlich-3, Resina em lâminas, Olsen e EDTA na predição da disponibilidade P para plantas de arroz cultivadas em sistema de alagamento em solos representativos de lavouras orizícolas do Estado de Santa Catarina. O experimento foi conduzido em casa de vegetação, com cinco solos oriundos de várias lavouras orizícolas, em 2014. Foram adicionados aos solos quatro concentrações de P, correspondendo a 0, ¼, ½ e 1,0 vez a quantidade de P para atingir 0,2 mg L-1 de P na solução do solo (com base na capacidade de adsorção de cada solo). Foram usadas três repetições por tratamento, dispostas no delineamento completamente casualizado. Após cinco dias da adição dos níveis de P, as unidades experimentais constituídas por vasos de 8 L contendo 3,5 kg de solo seco foram amostradas para determinar o P disponível do solo por cinco métodos químicos. Na sequência, essas foram alagadas e cultivadas com seis plantas de arroz por 46 dias, quando se quantificaram a massa de matéria seca e o P absorvido pela parte aérea das plantas. A eficácia dos métodos Mehlich-1, Mehlich-3, Resina em lâminas, Olsen e EDTA foi avaliada por correlação linear entre a quantidade de P extraída dos solos e a quantidade absorvida pelas plantas. A quantidade de P absorvida pelas plantas de arroz aumentou com o acréscimo das doses de P aplicadas, variando com o tipo de solo. A maior recuperação do P adicionado aos solos foi obtida pelo extrator EDTA, seguido pelo Olsen. O P extraído pelo EDTA e Mehlich-3 evidenciou melhor correlação com quantidade de P absorvida pelo arroz. O agrupamento dos solos segundo características relacionadas à adsorção de P no solo melhora a eficiência de todos os métodos em predizer a disponibilidade de P em solos cultivados com arroz no sistema de inundação.
Resumo:
RESUMO O processo de estabilização necessário para o curtimento das peles, na indústria coureira, gera grande quantidade de resíduo sólido colagênico com elevado potencial poluidor. Esse resíduo contém elevado teor de nitrogênio, o que confere ao resíduo potencial para uso agrícola. Para avaliar a viabilidade da aplicação de rejeito da indústria do couro, como fonte nitrogenada para as culturas do trigo e arroz de sequeiro, foi implantado um experimento em casa de vegetação com cinco doses de N provenientes do colágeno (0, 225, 450, 675 e 900 mg kg-1) e três tratamentos adicionais (controle, ureia e ureia reposta no segundo cultivo). A aplicação de até 675 mg kg-1 de N via colágeno propiciou produção de matéria seca de plantas de trigo similar à aplicação de N mineral e maior massa de grãos de trigo em todas as doses estudadas (14 a 41 % superiores à aplicação de N mineral). Como fonte residual, a aplicação do colágeno proporcionou níveis de N no solo suficientes para obter massa de grãos de arroz nas doses mais elevadas (acima de 675 mg kg-1de N via colágeno), sem que os teores de Cr foliares sejam considerados tóxicos. O colágeno pode ser boa alternativa para a implantação da cultura do arroz após a colheita de trigo, sem prejuízos de produtividade e necessidade de reposição de fertilizantes nitrogenados, se aplicado na dose 675 mg kg-1 de N fornecido via colágeno.
Resumo:
High-fidelity 'proofreading' polymerases are often used in library construction for next-generation sequencing projects, in an effort to minimize errors in the resulting sequence data. The increased template fidelity of these polymerases can come at the cost of reduced template specificity, and library preparation methods based on the AFLP technique may be particularly susceptible. Here, we compare AFLP profiles generated with standard Taq and two versions of a high-fidelity polymerase. We find that Taq produces fewer and brighter peaks than high-fidelity polymerase, suggesting that Taq performs better at selectively amplifying templates that exactly match the primer sequences. Because the higher accuracy of proofreading polymerases remains important for sequencing applications, we suggest that it may be more effective to use alternative library preparation methods.
Resumo:
A multiwell plate bioassay was developed using genetically modified bacteria (bioreporter cells) to detect inorganic arsenic extracted from rice. The bacterial cells expressed luciferase upon exposure to arsenite, the activity of which was detected by measurement of cellular bioluminescence. The bioreporter cells detected arsenic in all rice varieties tested, with averages of 0.02-0.15 microg of arsenite equivalent per gram of dry weight and a method detection limit of 6 ng of arsenite per gram of dry rice. This amounted to between approximately 20 and 90% of the total As content reported by chemical methods for the same sample and suggested that a major proportion of arsenic in rice is in the inorganic form. Calibrations of the bioassay with pure inorganic and organic arsenic forms showed that the bacterial cells react to arsenite with highest affinity, followed by arsenate (with 25% response relative to an equivalent arsenite concentration) and trimethylarsine oxide (at 10% relative response). A method for biocompatible arsenic extraction was elaborated, which most optimally consisted of (i) grinding rice to powder, (ii) mixing with an aqueous solution containing pancreatic enzymes, (iii) mechanical shearing, (iv) extraction in mild acid conditions and moderate heat, and (v) centrifugation and pH neutralization. Detection of mainly inorganic arsenic by the bacterial cells may have important advantages for toxicity assessment of rice consumption and would form a good complement to total chemical arsenic determination.