862 resultados para Glycine Metabolism


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O objetivo deste trabalho foi avaliar a possibilidade de redução da dosagem e do volume de calda em função do horário de aplicação do herbicida fluazifop-p-butil em pós-emergência na cultura de soja, mantendo-se o controle das plantas daninhas e a seletividade para a cultura. O experimento foi conduzido na área experimental da Fazenda de Ensino e Pesquisa da FCAV/UNESP - Jaboticabal, no ano agrícola 1998/99, na cultura de soja, cultivar FT 2009. O delineamento experimental utilizado foi o de blocos ao acaso com 24 tratamentos, sendo 20 dispostos no esquema fatorial 2 x 2 x 5 e quatro testemunhas. Os fatores testados foram: volume de calda (100 e 200 L de calda/ha); dosagens reduzidas -75,2 e 112,8 g de fluazifop-p-butil/ha (respectivamente a 40 e 60% da dosagem recomendada); e horário de aplicação (5, 9, 13, 17 e 21 horas). As testemunhas foram aplicadas com a dosagem recomendada (188,0 g do fluazifop-p-butil/ha) e com os volumes de 100 e 200 L de calda/ha, no mato (sem controle das plantas daninhas) e "no limpo" (plantas daninhas controladas com enxada manual). As principais espécies de plantas daninhas que emergiram na área experimental foram capim-carrapicho (Cenchrus echinatus), que compunha 60% da comunidade infestante; capim-colchão (Digitaria horizontalis), 10%; e capim-pé-de-galinha (Eleusine indica), 30%. Todas as aplicações do herbicida fluazifop-p-butil, nos horários até as 9 horas e a partir das 17 horas, controlaram eficientemente as três espécies de plantas daninhas e foram seletivas para a cultura de soja. Portanto, o uso do herbicida fluazifop-p-butil pode ser otimizado por meio de reduções na dosagem e no volume de calda em aplicações durante os horários com condições ambientais favoráveis à pulverização.

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Com o objetivo de avaliar os efeitos de diferentes manejos de palhada de capim-braquiária sobre o desenvolvimento inicial da cultura de soja e da planta daninha amendoimbravo, foi conduzido um experimento em condições de casa de vegetação no NuPAMFCA/UNESP, BotucatuSP. Os tratamentos utilizados foram: manejo da palhada na superfície do solo + irrigação superficial (T1); manejo da palhada na superfície do solo + irrigação subsuperficial (T2); palhada incorporada ao solo (T3); e testemunha sem cobertura (T4). A palhada foi colhida no campo 30 dias após dessecação com o herbicida glyphosate (1,44 g i.a. ha-1). O delineamento experimental utilizado foi o inteiramente casualizado, com sete repetições, sendo as unidades experimentais vasos plásticos, com a soja e o amendoim-bravo semeados paralelamente, em linhas distintas. O T1 reduziu significativamente o índice de velocidade de germinação (IVG) e a altura das plântulas de soja aos 5 e 10 dias após a emergência (DAE), ao contrário do amendoim-bravo, o qual não sofreu interferência dos tratamentos estudados, constituindo-se em uma planta-problema para sistemas produtivos com palhada de capim-braquiária. Os resultados da análise de crescimento (TCA - taxa de crescimento absoluto, TCR - taxa de crescimento relativo e TAL - taxa de assimilação líquida) das plântulas de soja e amendoim-bravo apresentaram valores máximos aos 15 DAE, com exceção do T3 para soja, o qual reduziu expressivamente o desenvolvimento em relação aos demais tratamentos.

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Foram realizados dois experimentos, em condições de casa de vegetação, no Departamento de Biologia Aplicada à Agropecuária da FCAV-UNESP de Jaboticabal, objetivando-se determinar o acúmulo de massa seca, assim como a distribuição e o acúmulo de macronutrientes durante os ciclos de vida de plantas de soja cultivar BR16, no período de outubro de 2000 a fevereiro de 2001, e de Richardia brasiliensis (poaia-branca), uma planta daninha de elevada importância para esta cultura no Brasil, especialmente em áreas de plantio direto, no período de outubro de 1998 a fevereiro de 1999. Os estudos foram realizados em delineamento experimental inteiramente casualizado, com quatro repetições. Quatro plantas cresceram em vasos com capacidade de sete litros, preenchidos com areia de rio lavada, peneirada e irrigada diariamente com solução nutritiva. Os tratamentos foram representados pelas épocas de amostragem, realizadas a intervalos de 14 dias, a saber: 22, 36, 50, 64, 78, 92, 106, 120, 134, 148, 162 e 176 dias após a emergência (DAE) das plantas de R. brasiliensis; e 21, 35, 49, 63, 77, 91, 105 e 119 DAE das plantas de soja cv. BR-16 (precoce). Em ambas as plantas, as folhas tiveram a maior partição de biomassa durante sete semanas. Para este dado, a partição foi maior para as estruturas reprodutivas em soja e nos caules para a poaia-branca. O ponto de máximo acúmulo teórico de massa seca deu-se aos 104 DAE para a soja (36,6 g por planta) e aos 146 DAE para a poaia-branca (16,4 g por planta). Da emergência até aos 50 DAE as folhas apresentaram maior participação no acúmulo de massa seca, nas duas espécies. Após 50 DAE notou-se, em ambas as espécies, uma inversão na representatividade das folhas por caules, para a espécie daninha, e por caules e posteriormente por estruturas reprodutivas, para a cultura. A taxa de absorção diária dos macronutrientes atingiu maiores valores entre 69 e 87 DAE para a soja e entre 106 a 111 DAE para a planta daninha. Levando em conta a média dos valores de pontos de inflexão observados para a cultura da soja, aos 78 DAE uma planta de soja acumula teoricamente 25,9 g de massa seca; 615,5 mg de N; 77,2 mg de P; 538,6 mg de K; 535,0 mg de Ca; 171,5 mg de Mg; e 39,5 mg de S. Para o mesmo período, uma planta de R. brasiliensis acumula teoricamente 3,7 g de massa seca; 50,8 mg de N; 3,2 mg de P; 104,4 mg de K; 127,8 mg de Ca; 18,8 mg de Mg; e 3,7 mg de S.

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Com o objetivo de avaliar diferentes manejos de plantas daninhas no plantio direto da soja, cultivada sobre palha de milheto (manejada com rolo-faca ou glyphosate), foram realizados dois experimentos com dois cultivares de soja (Conquista e Celeste) e aplicação em pós-emergência da mistura formulada dos herbicidas fluazifop-p-butil + fomesafen (0, 100+125 e 200+250 g ha¹). Por meio da análise de variância conjunta dos experimentos, verificou-se predominância de diferentes espécies de plantas daninhas em função do manejo dado ao milheto, sendo a maior infestação destas verificada sob o manejo com rolo-faca associado à ausência de controle na cultura da soja. Há a possibilidade da redução da dose de fluazifop-p-butil + fomesafen para o controle de plantas daninhas na soja, desde que precedida da aplicação de glyphosate para formação da palha de milheto. Sob esta condição, verificou-se maior controle das espécies daninhas, em relação ao manejo mecânico (rolo-faca), resultando em maior produtividade da cultura, devido à maior quantidade de vagens por planta e de grãos por vagem.

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Biodegradation of glyphosate was evaluated in rhizospheric soil cultivated with Glycine max (soybean, var. BRS245-RR), Canavalia ensiformis and Stizolobium aterrimum. After these species were cultivated for 60 days, soil samples were collected, placed in flasks and treated with 14C-glyphosate. After 30 days of incubation, the total release rate of C-CO2 was determined along with microbial biomass (MBC), metabolic quotient (qCO2), and degradation percentage of the radio-labeled glyphosate released as 14C-CO2. A higher mass of rhizosphere-associated microorganisms was verified in the soil samples from pots cultivated with soybean, regardless of glyphosate addition. However, in the presence of the herbicide, this characteristic was the most negatively affected. Microorganisms from the C. ensiformis rhizosphere released a lower amount of 14C-CO2, while for those originated from S. aterrimum, the amount released reached 1.3% more than the total carbon derived from the respiratory activity. The rhizospheric soil from S. aterrimum also presented higher glyphosate degradation efficiency per microbial biomass unit. However, considering qCO2, the microbiota of the rhizospheric soil cultivated with soybean was more efficient in herbicide degradation.

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A soja é uma das principais culturas agrícolas do Brasil, sendo a sua produtividade muito influenciada pela competição exercida pelas plantas daninhas. Foram realizados dois experimentos em casa de vegetação, em Jaboticabal, SP, objetivando determinar o acúmulo de massa seca, assim como a distribuição e o acúmulo de macronutrientes em plantas de soja, no período de outubro de 2000 a fevereiro de 2001, e de Solanum americanum, no período de janeiro a maio de 1995. As plantas cresceram em vasos com capacidade de 7 litros, preenchidos com areia de rio lavada e peneirada; elas foram irrigadas diariamente com solução nutritiva. Os tratamentos foram representados pelas épocas de amostragem, realizada a intervalos de 14 dias, iniciando-se 21 dias após a emergência (DAE), até 161 DAE para S. americanum e 119 DAE para soja cv. BR-16 (precoce). O ponto de máximo acúmulo teórico de massa seca deu-se aos 104 DAE para a soja (35,0 g por planta) e 143 DAE para S. americanum (179,62 g por planta). Da emergência até 49 e 63 DAE, as folhas apresentaram maior participação no acúmulo de massa seca para soja e S. americanum, respectivamente. Após esses períodos, verificou-se, em ambas as espécies, inversão na representatividade das folhas por caules para a espécie daninha e por caules e, posteriormente, por estruturas reprodutivas, para a cultura. A taxa de absorção diária dos macronutrientes atingiu maiores valores entre 69 e 87 DAE para a soja e entre 105 e 119 DAE para a planta daninha. Considerando a média dos valores de pontos de inflexão observados para a cultura da soja, tem-se que aos 75 DAE uma planta de soja acumula teoricamente 23,9 g de massa seca, 564,4 mg de N, 7,1 mg de P, 490,8 mg de K, 487,0 mg de Ca, 156,6 mg de Mg e 36,0 mg de S. Para o mesmo período, uma planta de S. americanum acumula teoricamente 33,75 g de massa seca, 875,96 mg de N, 88,46 mg de P, 983,54 mg de K, 647,60 mg de Ca, 100,93 mg de Mg e 42,15 mg de S.

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(Comparative uptake and metabolism of 2-[14C]-2,4-dichlorophenoxyacetic acid in callus cultures of monocot (Dioscorea spp.) and dicot (Nicotiana tabacum L.) plants). The uptake and metabolism of 2-[14C]-2,4-dichlorophenoxyacetic acid (2,4-D) were investigated in leaf calluses of Nicotiana tabacum, tuber calluses of Dioscorea opposita and calluses derived from zygotic embryos, leaves and petioles of Dioscorea composita. Striking similarities were evident in the patterns of 2,4-D metabolites and their chemical characteristics in the three callus types of D. composita compared, but significant differences were detected among the patterns of rnetabolites in the three species studied. Preliminary investigations on the stability of various metabolites (separated using TLC) by hydrolysis showed that sugar esters appeared to be the major metabolites in tobacco whilst in yams (D. opposita) glycosides were shown to be the main ones, which indicated a similarity between plants of Gramineae and Dioscoreaceae in terms of 2,4-D metabolism. Release of 2,4-D from tobacco callus cells upon their transfer to 2,4-D-free medium was detected and the implications of this are discussed in relation to the cultural conditions necessary to induce morphogenesis in vitro.

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This paper presents a study on the respiratory metabolism of germinating seeds of Inga sessilis subjected to normoxia, hypoxia and anoxia. Although it is typical of environments where waterlogging seldom occurs, 40% of its seeds are able to germinate under hypoxia; yet, anoxia periods over 96 h are lethal to the seeds. Ethanol is the main product of the seeds anaerobic metabolism, but the steep increase in lactate after 24 h anoxia or 48 h hypoxia may explain the drop in seed viability.

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This review considers the importance of compartmentation in the regulation of carbohydrate metabolism in leaves. We draw particular attention to the role of the vacuole as a site for storage of soluble sugars based on sucrose, and discuss briefly their characteristic metabolism. We also point out inconsistencies between the observed properties of vacuoles and the behaviour in vitro of the enzymes of fructan biosynthesis that do not support the hypothesis that the vacuole is the site of synthesis as well as of storage. We also consider compartmentation of carbohydrate metabolism between different cell types, using mainly our studies on leaves of temperate C3 gramineae. Here we present evidence of significant differences in carbon metabolism between epidermis, mesophyll, bundle sheath and vasculature based upon both single-cell sampling and immunolocalisation. The implications of these differences for the control of metabolism in leaves are discussed.

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Increasing levels of atmospheric ammonia from anthropogenic sources have become a serious problem for natural vegetation. Short-term effects of different ammoniacal sources on the N metabolism of Tillandsia pohliana, an atmospheric bromeliad, were investigated. One-year-old, aseptically grown plants were transferred to a modified Knudson medium lacking N for three weeks. Plants were subsequently transferred to Knudson media supplemented with 0.5, 1.0, or 1.5 mM of N in the forms of NH3 or NH4+ as the sole N source. The activities of glutamine synthetase (GS) and glutamate dehydrogenase (GDH-NADH) were determined after 40 h. The GS activity was stimulated significantly by increasing the levels of the gaseous form. The GDH-NADH activity increased significantly under increasing N concentrations with NH3, while no significant differences were observed with NH4+ as a N source. These results may reflect a faster NH3 absorption by T. pohliana compared to NH4+ uptake. The increased activity of GDH-NADH in NH3 treatment may play a role in protecting the cells from the toxic effects of increased endogenous level of free ammonium. A raise in the concentration of N, especially in the form of NH3, greatly increased the content of free amino acids and soluble proteins. A possible utilisation of T. pohliana to evaluate the changes of atmospheric gaseous ammonia is proposed.

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Among the goals of the Brazilian soybean improvement programmes, the breeding strategies for cultivars adapted to low latitudes have been included to extend crop areas and to increase production. Seeds of nine Brazilian soybean cultivars adapted to low latitudes were investigated regarding to their composition, and amino acid and antinutritional/toxic protein contents. Protein (394.5 ± 13.1 to 445.3 ± 8.0 g kg-1 dry matter) and oil (200.6 ± 1.2 to 232.3 ± 4.7 g kg-1 dry matter) contents showed low correlation to each other (r = -0.06). The total carbohydrate (141.7 ± 6.1 to 211.1 ± 15.0 g kg-1 dry matter) and ash contents (48.2 ± 4.2 to 52.2 ± 0.5 g kg-1 dry matter) were similar to data available for other soybean cultivars. All soybean cultivars presented low levels of tryptophan and sulphur amino acids. The lectin (1,152 to 147,456 HU kg-1 flour), trypsin inhibitor (34.45 ± 2.28 to 77.62 ± 2.63 g trypsin inhibited kg-1 flour), toxin (6,210 ± 134 to 34,650 ± 110 LD50 kg-1 flour) and urease (0.74 ± 0.02 to 1.22 ± 0.10 g kg¹ flour) presented variations in their contents amongst the cultivars. Compared to other soybean cultivars, urease was higher, the acute toxicity lower and the lectin and trypsin inhibitor contents similar to data available. In general, soybean cultivars showed similar biochemical composition to those developed in different geographic regions. The relevance of these findings to the agronomic features and to choice of soybean cultivars to be used as food or feed is discussed.

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Lignin, after cellulose, is the second most abundant biopolymer on Earth, accounting for 30% of the organic carbon in the biosphere. It is considered an important evolutionary adaptation of plants during their transition from the aquatic environment to land, since it bestowed the early tracheophytes with physical support to stand upright and enabled long-distance transport of water and solutes by waterproofing the vascular tissue. Although essential for plant growth and development, lignin is the major plant cell wall component responsible for biomass recalcitrance to industrial processing. The fact that lignin is a non-linear aromatic polymer built with chemically diverse and poorly reactive linkages and a variety of monomer units precludes the ability of any single enzyme to properly recognize and degrade it. Consequently, the use of lignocellulosic feedstock as a renewable and sustainable resource for the production of biofuels and bio-based materials will depend on the identification and characterization of the factors that determine plant biomass recalcitrance, especially the highly complex phenolic polymer lignin. Here, we summarize the current knowledge regarding lignin metabolism in plants, its effect on biomass recalcitrance and the emergent strategies to modify biomass recalcitrance through metabolic engineering of the lignin pathway. In addition, the potential use of sugarcane as a second-generation biofuel crop and the advances in lignin-related studies in sugarcane are discussed.

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The cotyledons of Hymenaea courbaril store large amounts of xyloglucan, a cell wall polysaccharide that is believed to serve as storage for the period of seedling establishment. During storage mobilisation, xyloglucan seems to be degraded by a continuous process that starts right after radicle protrusion and follows up to the establishment of photosynthesis. Here we show evidence that events related to the hydrolases activities and production (α-xylosidase, β-galactosidase, β-glucosidase and xyloglucan endo-β-transglucosilase) as well as auxin, showed changes that follow the diurnal cycle. The period of higher hydrolases activities was between 6pm and 6am, which is out of phase with photosynthesis. Among the enzymes, α-xilosidase seems to be more important than β-glucosidase and β-galactosidase in the xyloglucan disassembling mechanism. Likewise, the sugars related with sucrose metabolism followed the rhythm of the hydrolases, but starch levels were shown to be practically constant. A high level of auxin was observed during the night, what is compatible with the hypothesis that this hormone would be one of the regulators of the whole process. The probable biological meaning of the existence of such a complex control mechanism during storage mobilisation is likely to be related to a remarkably high level of efficiency of carbon usage by the growing seedling of Hymenaea courbaril, allowing the establishment of very vigorous seedlings in the tropical forest.

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Neurons which release atrial natriuretic peptide (ANPergic neurons) have their cell bodies in the paraventricular nucleus and in a region extending rostrally and ventrally to the anteroventral third ventricular (AV3V) region with axons which project to the median eminence and neural lobe of the pituitary gland. These neurons act to inhibit water and salt intake by blocking the action of angiotensin II. They also act, after their release into hypophyseal portal vessels, to inhibit stress-induced ACTH release, to augment prolactin release, and to inhibit the release of LHRH and growth hormone-releasing hormone. Stimulation of neurons in the AV3V region causes natriuresis and an increase in circulating ANP, whereas lesions in the AV3V region and caudally in the median eminence or neural lobe decrease resting ANP release and the response to blood volume expansion. The ANP neurons play a crucial role in blood volume expansion-induced release of ANP and natriuresis since this response can be blocked by intraventricular (3V) injection of antisera directed against the peptide. Blood volume expansion activates baroreceptor input via the carotid, aortic and renal baroreceptors, which provides stimulation of noradrenergic neurons in the locus coeruleus and possibly also serotonergic neurons in the raphe nuclei. These project to the hypothalamus to activate cholinergic neurons which then stimulate the ANPergic neurons. The ANP neurons stimulate the oxytocinergic neurons in the paraventricular and supraoptic nuclei to release oxytocin from the neural lobe which circulates to the atria to stimulate the release of ANP. ANP causes a rapid reduction in effective circulating blood volume by releasing cyclic GMP which dilates peripheral vessels and also acts within the heart to slow its rate and atrial force of contraction. The released ANP circulates to the kidney where it acts through cyclic GMP to produce natriuresis and a return to normal blood volume

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Niemann-Pick type C (NPC) fibroblasts present a large concentration of cholesterol in their cytoplasm due to a still unidentified deficiency in cholesterol metabolism. The influence of dimethylsulfoxide (DMSO) on the amount of intracellular cholesterol was measured in 8 cultures of normal fibroblasts and in 7 fibroblast cultures from NPC patients. DMSO was added to the fibroblast cultures at three different concentrations (1, 2 and 4%, v/v) and the cultures were incubated for 24 h. Sphingomyelinase activity was significantly increased in both groups of cells only when incubated with 2% DMSO (59.4 ± 9.1 and 77.0 ± 9.1 nmol h-1 mg protein-1, controls without and with 2% DMSO, respectively; 47.7 ± 5.2 and 55.8 ± 4.1 nmol h-1 mg protein-1, NPC without and with 2% DMSO, respectively). However, none of the DMSO concentrations used altered the amount of cholesterol in the cytoplasm of NPC cells (0.704 ± 0.049, 0.659 ± 0.041, 0.688 ± 0.063 and 0.733 ± 0.088 mg/mg protein, without DMSO, 1% DMSO, 2% DMSO and 4% DMSO, respectively). This finding suggests that sphingomyelinase deficiency is a secondary defect in NPC and shows that DMSO failed to remove the stored cholesterol. These data do not support the use of DMSO in the treatment of NPC patients.