715 resultados para Oryza rufipogon
Resumo:
A sustentabilidade do arroz (Oryza sativa L.) irrigado em solos de várzea está alicerçada na utilização da rotação e sucessão de culturas, fundamentais para o controle do arroz-vermelho e preto. Os reflexos sobre os atributos dos solos de várzea merecem estudos em especial sobre a compactação do solo. O objetivo deste trabalho foi identificar camadas compactadas em Planossolo submetido a diferentes sistemas de cultivo e preparo, avaliando-se a densidade do solo (Ds) pela Tomografia Computadorizada de Raios Gama (TC). A análise foi realizada em um experimento de longa duração, conduzido de 1985 a 2004, na Estação Experimental da Embrapa Clima Temperado, Capão do Leão, RS, num delineamento experimental em blocos ao acaso, com sete tratamentos, cada um com quatro repetições (T1 - um ano de arroz com preparo convencional do solo seguido de dois anos de pousio; T2 - cultivo contínuo de arroz com preparo convencional do solo; T4 - rotação de arroz e soja (Glycine max L.) com preparo convencional do solo; T5 - rotação de arroz, soja e milho (Zea maiz L.) em preparo convencional do solo; T6 - plantio direto de arroz no verão em sucessão do azevém (Lolium multiflorum L.) no inverno; T7 - rotação de arroz sob plantio direto e soja sob preparo convencional do solo; T8 - testemunha: solo sem cultivo). A Tomografia Computadorizada de Raios Gama permitiu detectar que o plantio direto de arroz no verão em sucessão do azevém no inverno não resultou na formação de camadas compactadas; a utilização de dois anos de pousio, no sistema de produção de arroz irrigado, não foi suficiente para evitar a formação de uma camada superficial compactada; e a rotação de arroz, soja e milho com preparo convencional do solo apresentou duas camadas compactadas (0,0 a 1,5 cm e 11 a 14 cm), indicando que essas podem limitar a produção agrícola nesse sistema de produção em Planossolos.
Resumo:
No arroz cultivado sob alagamento, ocorre a elevação dos teores de NH4+ no solo, sendo assim considerada a principal fonte de N para a cultura. Entretanto, o O2 transportado pelo aerênquima e liberado pelas raízes cria um ambiente favorável à nitrificação na rizosfera, determinando a formação de proporções entre amônio e NO3- disponíveis. Nesse caso, acredita-se que o NO3- pode favorecer o desenvolvimento da cultura e ao mesmo tempo evitar a toxidez por NH4+ no solo alagado. Este trabalho foi realizado com o objetivo de avaliar o efeito de diferentes proporções dos íons NH4+ e NO3- no crescimento do arroz em solução nutritiva. O experimento foi realizado em casa de vegetação, no período de setembro a novembro de 2007, em solução nutritiva e substrato inerte, visando criar um meio poroso, para o crescimento radicular com as seguintes proporções de NH4+ e NO3-:100:0, 75:25 e 25:75 % na concentração de 10,0 mmol L-1 de N. Os baldes foram preenchidos com um substrato inerte, visando criar um meio poroso para o desenvolvimento das raízes. Foram comparados os genótipos IRGA 417 (indica) e Sasanishiki (japônica), e avaliadas a produção de biomassa, a distribuição e o comprimento de raízes e a absorção de N, Ca, Mg e K. O NH4+ das proporções 100:0, 75:25 % causou toxidez às plantas, porém, na maior proporção de NO3- , houve redução da toxidez. O suprimento combinado de NH4+ e NO3- aumentou a produção de biomassa em relação ao NH4+ suprido isoladamente. O sistema radicular do arroz cresceu basicamente na camada de 0-10 cm dos cultivares testados, e o maior comprimento ocorreu no tratamento NH4+ 75:25 NO3- para a IRGA 417. O NH4+ afetou negativamente a absorção do Ca, porém não teve efeito sobre a absorção de N, Mg e K. O N, K e Ca total absorvidos indicam maior eficiência de absorção com o suprimento combinado das duas fontes de N no cultivar IRGA 417, porém sem diferença para Sasanishiki. Assim, conclui-se que o NH4+ é tóxico para o arroz em concentrações elevadas. A presença de NO3- é imprescindível para aumentar a absorção de N, melhorando o crescimento e desenvolvimento da planta e a absorção de cátions.
Resumo:
Losses of productivity of flooded rice in the State of Rio Grande do Sul, Brazil, may occur in the Coastal Plains and in the Southern region due to the use of saline water from coastal rivers, ponds and the Laguna dos Patos lagoon, and the sensibility of the plants are variable according to its stage of development. The purpose of this research was to evaluate the production of rice grains and its components, spikelet sterility and the phenological development of rice at different levels of salinity in different periods of its cycle. The experiment was conducted in a greenhouse, in pots filled with 11 dm³ of an Albaqualf. The levels of salinity were 0.3 (control), 0.75, 1.5, 3.0 and 4.5 dS m-1 kept in the water layer by adding a salt solution of sodium chloride, except for the control, in different periods of rice development: tillering initiation to panicle initiation; tillering initiation to full flowering; tillering initiation to physiological maturity; panicle initiation to full flowering; panicle initiation to physiological maturity and full flowering to physiological maturity. The number of panicles per pot, the number of spikelets per panicle, the 1,000-kernel weight, the spikelet sterility, the grain yield and phenology were evaluated. All characteristics were negatively affected, in a quadratic manner, with increased salinity in all periods of rice development. Among the yield components evaluated, the one most closely related to grain yields of rice was the spikelet sterility.
Resumo:
Zeolites are hydrated crystalline aluminosilicate minerals of natural occurrence, structured in rigid third dimension net that can be used as slow release plant-nutrient source. The main objective of this study was to evaluate the effects of plant growth substrate under zeolite application, enriched with N, P and K, on dry matter yield and on nutrient contents in consecutive crops of lettuce, tomato, rice, and andropogon grass. The experiment was carried out in a greenhouse, with 3 kg pots with an inert substrate, evaluated in a randomized block design with three replications. Treatments consisted of four types of enrichment of concentrated natural zeolite: concentrated zeolite (Z) only, zeolite + KNO3 (ZNK), zeolite + K2HPO4 (ZPK) and zeolite + H3PO4 + apatite (ZP), and a control grown in substrate fertilized with a zeolite-free nutrient solution. Four levels of enriched zeolite were tested: 20, 40, 80, and 160 g/pot. Four successive crops were grown on the same substrate in each pot: lettuce, tomato, rice, and andropogon grass. Results indicated that N, P and K enriched zeolite was an adequate slow-release nutrient source for plants. The total dry matter production of above-ground biomass of four successive crops followed a descending order: ZP > ZPK > ZNK > Z.
Resumo:
Arbuscular mycorrhizal fungi (AMF) are obligate symbionts with most terrestrial plants. They improve plant nutrition, particularly phosphate acquisition, and thus are able to improve plant growth. In exchange, the fungi obtain photosynthetically fixed carbon. AMF are coenocytic, meaning that many nuclei coexist in a common cytoplasm. Genetic exchange recently has been demonstrated in the AMF Glomus intraradices, allowing nuclei of different Glomus intraradices strains to mix. Such genetic exchange was shown previously to have negative effects on plant growth and to alter fungal colonization. However, no attempt was made to detect whether genetic exchange in AMF can alter plant gene expression and if this effect was time dependent. Here, we show that genetic exchange in AMF also can be beneficial for rice growth, and that symbiosis-specific gene transcription is altered by genetic exchange. Moreover, our results show that genetic exchange can change the dynamics of the colonization of the fungus in the plant. Our results demonstrate that the simple manipulation of the genetics of AMF can have important consequences for their symbiotic effects on plants such as rice, which is considered the most important crop in the world. Exploiting natural AMF genetic variation by generating novel AMF genotypes through genetic exchange is a potentially useful tool in the development of AMF inocula that are more beneficial for crop growth.
Resumo:
In the State of Rio Grande do Sul, Brazil, flooded rice fields using Patos Lagoon as the source of water for irrigation are subject to be damaged by salinity, since this source is bound to the sea on its southern end. The sensitivity of rice is variable during plant development, being higher in the seedling and reproductive periods. However, there is not enough information about the behavior of plants under salt stress during the course of its development, especially in the vegetative stage. This study evaluated the effect of different levels of salinity of irrigation water on the salinity of soil solution over time and on some plant attributes, during the vegetative stage of rice. The study was conducted in a greenhouse, where seeds of the variety IRGA 424 were sown in pots and irrigated with water with electrical conductivity (ECi) levels of: 0.3, 0.75, 1.5, 3.0 and 4.5 dS m-1; from the tillering initiation (V4) until the panicle initiation (PI). The evaluations made were the electrical conductiviy of soil solution (ECe), the dry biomass of plants and stems, tillering, height and the transpiration of plants. The ECe increased with the ECi over time, and was determined by water transpiration flux in pots. The ECe values at the end of the experiment were high and, in most cases, higher than the critical values for flooded rice. The growth attributes of rice were negatively affected from ECi of 2.0 dS m-1 and ECe of 4.0 dS m-1.
Resumo:
Although silicon is not recognized as a nutrient, it may benefit rice plants and may alleviate the Mn toxicity in some plant species. The dry matter yield (root, leaf, sheaths and leaf blade) and plant architecture (angle of leaf insertion and leaf arc) were evaluated in rice plants grown in nutrient solutions with three Mn doses, with and without Si addition. The treatments were arranged in a 2 x 3 factorial [with and without (2 mmol L-1) Si; three Mn doses (0.5; 2.5 and 10 µmol L-1)], in a randomized block design with 4 replications. The experimental unit was a 4 L plastic vase with 4 rice (Metica-1 cultivar) plants. Thirty nine days after keeping the seedlings in the nutrient solution the plant dry matter yield was determined; the angle of leaf insertion in the sheath and the leaf arc were measured; and the Si and Mn concentrations in roots, sheaths and leaves were determined. The analysis of variance (F test at 5 and 1 % levels) and the regression analysis (for testing plant response to Mn with the Si treatments) were performed. The Si added to the nutrient solution increased the dry matter yield of roots, sheaths and leaf blades and also decreased the angle of leaf blade insertion into the sheath and the foliar arc in the rice plant. Additionally, it ameliorated the rice plant architecture which allowed an increase in the dry matter yield. Similarly, the addition of Mn to the solution improved the architecture of the rice plants with gain in dry matter yield. As Si was added to the nutrient solution, the concentration of Mn in leaves decreased and in roots increased thus alleviating the toxic effects of Mn on the plants.
Resumo:
A alta difusividade do oxigênio em diversos materiais dificulta a criação e, ou, manutenção de um ambiente livre de O2. As técnicas utilizadas são pouco eficientes na exclusão do O2 e, portanto, não expressam a condição do solo alagado. Os objetivos deste trabalho foram desenvolver um método para obtenção de raízes em condição de hipoxia e avaliar a placa férrica e a formação de aerênquima no arroz. Foi criada uma condição de hipoxia semelhante à do solo alagado em tanques de 50 L, explorando a capacidade de difusão do O2 por meio do vinil em contato com solo reduzido. Cada tanque preenchido com solo (Gleissolo háplico) recebeu cinco sacos de vinil e foi mantido alagado. Plantas dos genótipos IRGA 423 e IRGA 424 previamente cultivadas em campo foram coletadas, tendo as raízes cortadas junto ao colo, lavadas e um terço da lâmina foliar removido. Cada saco de vinil recebeu 12 plantas de cada genótipo e solução nutritiva. Após sete dias, as novas raízes adventícias formadas foram utilizadas na determinação da porosidade e a da placa férrica em segmentos de 0-2, 2-4 e 4-6 cm a partir da ponta da raiz. As raízes foram colocadas em contato com a solução de um solo em processo de redução por 4 h e a placa férrica determinada após a extração do Fe com HCl 0,5 mol L-1. A porosidade foi determinada pela aplicação de ciclos de vácuo, com auxílio de seringas. A diferença de peso antes e depois do tratamento com vácuo e entrada de água foi assumida como sendo a estimativa da magnitude do aerênquima ao longo da raiz. A eficácia do método foi testada com a produção de raízes adventícias em saco de vinil com aeração e hipoxia. A porosidade nas raízes foi maior em ambiente hipóxico, comparado à aeração. A porosidade foi maior na proximidade da base da planta e, à medida que a porosidade aumentou, houve aumento do conteúdo de Fe na superfície das raízes, indicando que a placa férrica pode servir como estimativa da formação de aerênquima no arroz. O método de obtenção de raízes foi eficiente em promover a eliminação de O2 do saco de vinil para estudar a formação do aerênquima.
Resumo:
Winter cover crops are sources of C and N in flooded rice production systems, but very little is known about the effect of crop residue management and quality on soil methane (CH4) and nitrous oxide (N2O) emissions. This study was conducted in pots in a greenhouse to evaluate the influence of crop residue management (incorporated into the soil or left on the soil surface) and the type of cover-crop residues (ryegrass and serradella) on CH4 and N2O emissions from a flooded Albaqualf soil cultivated with rice (Oryza sativa L.). The closed chamber technique was used for air sampling and the CH4 and N2O concentrations were analyzed by gas chromatography. Soil solution was sampled at two soil depths (2 and 20 cm), simultaneously to air sampling, and the contents of dissolved organic C (DOC), NO3-, NH4+, Mn2+, and Fe2+ were analyzed. Methane and N2O emissions from the soil where crop residues had been left on the surface were lower than from soil with incorporated residues. The type of crop residue had no effect on the CH4 emissions, while higher N2O emissions were observed from serradella (leguminous) than from ryegrass, but only when the residues were left on the soil surface. The more intense soil reduction verified in the deeper soil layer (20 cm), as evidenced by higher contents of reduced metal species (Mn2+ and Fe2+), and the close relationship between CH4 emission and the DOC contents in the deeper layer indicated that the sub-surface layer was the main CH4 source of the flooded soil with incorporated crop residues. The adoption of management strategies in which crop residues are left on the soil surface is crucial to minimize soil CH4 and N2O emissions from irrigated rice fields. In these production systems, CH4 accounts for more than 90 % of the partial global warming potential (CH4+N2O) and, thus, should be the main focus of research.
Resumo:
Among the toxic elements, Cd has received considerable attention in view of its association with a number of human health problems. The objectives of this study were to evaluate the Cd availability and accumulation in soil, transfer rate and toxicity in lettuce and rice plants grown in a Cd-contaminated Typic Hapludox. Two simultaneous greenhouse experiments with lettuce and rice test plants were conducted in a randomized complete block design with four replications. The treatments consisted of four Cd rates (CdCl2), 0.0; 1.3; 3.0 and 6.0 mg kg-1, based on the guidelines recommended by the Environmental Agency of the State of São Paulo, Brazil (Cetesb). Higher Cd rates increased extractable Cd (using Mehlich-3, Mehlich-1 and DTPA chemical extractants) and decreased lettuce and rice dry matter yields. However, no visual toxicity symptoms were observed in plants. Mehlich-1, Mehlich-3 and DTPA extractants were effective in predicting soil Cd availability as well as the Cd concentration and accumulation in plant parts. Cadmium concentration in rice remained below the threshold for human consumption established by Brazilian legislation. On the other hand, lettuce Cd concentration in edible parts exceeded the acceptable limit.
Resumo:
Soils of the coastal plains of Rio Grande do Sul, Brazil, are affected by salinization, which can hamper the establishment and development of crops in general, including rice. The application of high doses of KCl may aggravate the crop damage, due to the high saline content of this fertilizer. This study aimed to evaluate the effect of K fertilizer management on some properties of rice plant, grown in soils with different sodicity levels, and determine which attribute is best related to yield. The field study was conducted in four Albaqualfs with exchangeable Na percentages of 5.6, 9.0, 21 and 32 %. The management of KCl fertilizer consisted of the application of 90 kg ha-1 K2O broadcast, 90 kg ha-1 K2O in the row and 45 kg ha-1 K2O in the row + 45 kg ha-1 K2O at panicle initiation (PI). Plant density, dry matter evolution, height, SPAD (Soil Plant Analysis Development value indicating relative chlorophyll contents) index, tiller mass, 1,000-grain weight, panicle length and grain yield were evaluated. The plant density was damaged by application of K fertilizer in the row, especially at full dose (90 kg ha-1), at three sodicity levels, resulting in loss in biomass accumulation in later stages, affecting the crop yield, even at the lowest level of soil sodicity (5.6 %). All properties were correlated with yield; the highest positive correlation was found with plant density and shoot dry matter at full flowering, and a negative correlation with panicle length.
Resumo:
O arroz é classificado como uma planta tolerante ao amônio (NH4+) devido à predominância desse íon nos solos alagados. Entretanto, nas regiões oxidadas do solo e da rizosfera do arroz pode haver a formação de nitrato (NO3-) e esta se tornar importante fonte de N para cultura. Este trabalho foi conduzido com o objetivo de avaliar o efeito de diferentes proporções entre os íons NH4+ e NO3- no desenvolvimento do arroz em solução nutritiva. O experimento foi realizado em casa de vegetação no período de janeiro a fevereiro de 2008, em solução nutritiva com as seguintes proporções entre NH4+ e NO3-: 100:0, 75:25, 50:50, 25:75 e 0:100 na concentração de 5,0 mmol L-1 de N. Foi cultivado o genótipo IRGA 417 e avaliado o rendimento de biomassa, os teores de N, K, Ca e Mg na biomassa e na seiva do xilema. Houve toxidez por NH4+ nas proporções de 100:0 e 75:25 e por NO3- nas proporções de 25:75 e 0:100. Na proporção de 50:50 as plantas se desenvolveram normalmente. O suprimento combinado de NH4+ e NO3- aumentou a produção de biomassa em relação ao NH4+ e ao NO3- supridos isoladamente. O NH 4+ na solução reduziu os teores de Ca e Mg na biomassa, porém não influenciou o teor de N e o de K. Já na seiva do xilema houve redução nos teores de K, Ca e Mg, indicando que o NH4+ influenciou na absorção desses cátions. A quantidade total absorvida de N, K, Mg e Ca foi maior com o suprimento combinado de NH4+ e NO3-, indicando que, além de promover melhor desenvolvimento das plantas de arroz, aumenta a eficiência de absorção de nutrientes em relação ao suprimento isolado das duas formas de N.
Resumo:
Especially under no-tillage, subsuface soil acidity has been a problem, because it depends on base leaching, which has been associated with the presence of low molecular weigth organic acids and companion anions. The objective of this study was to evaluate exchangeable base cation leaching as affected by surface liming along with annual urea side-dressing of maize and upland rice. Treatments consisted of four lime rates (0, 1500, 3000, and 6000 kg ha-1) combined with four nitrogen rates (0, 50, 100, and 150 kg ha-1) applied to maize (Zea mays) and upland rice (Oryza sativa), in two consecutive years. Maize was planted in December, three months after liming. In September of the following year, pearl millet (Pennisetum glaucum) was planted without fertilization and desiccated 86 days after plant emergence. Afterwards, upland rice was grown. Immediately after upland rice harvest, 18 months after surface liming, pH and N-NO3-, N-NH4+, K, Ca, and Mg levels were evaluated in soil samples taken from the layers 0-5, 5-10, 10-20 and 20-40 cm. Higher maize yields were obtained at higher N rates and 3000 kg ha-1 lime. Better results for upland rice and pearl millet yields were also obtained with this lime rate, irrespective of N levels. The vertical mobility of K, Ca and Mg was higher in the soil profiles with N fertilization. Surface liming increased pH in the upper soil layers causing intense nitrate production, which was leached along with the base cations.
Resumo:
Silicon is considered an important chemical element for rice, because it can improve tolerance to biotic and abiotic stress. However, in many situations no positive effect of silicon was observed, probably due to genetic factors. The objective of this research was to monitor Si uptake kinetics and identify responses of rice cultivars in terms of Si uptake capacity and use. The experiment was carried out in a greenhouse of the São Paulo State University (UNESP), Brazil. The experiment was arranged in a completely randomized, factorial design with three replications. that consisted of two rice cultivars and two Si levels. Kinetic parameters (Vmax, Km, and Cmin), root morphology variables, dry matter yield, Si accumulation and levels in shoots and roots, uptake efficiency, utilization efficiency, and root/shoot ratio were evaluated. Higher Si concentrations in the nutrient solution did not increase rice dry matter. The development of the low-affinity silicon uptake system of the rice cultivar 'Caiapó' was better than of 'Maravilha'.
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.