95 resultados para Bradyrhizobium


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The use of nanoparticle technology in consumer products has been increasing due to their broad-spectrum antimicrobial properties. Specifically, silver nanoparticles (AgNPs) can demonstrate distinct physiochemical properties compared to bulk silver, including a large surface area to volume ratio that allows for higher reactivity with bacterial cell surfaces. AgNPs are being released into the environment, including soil ecosystems through various pathways such as points of production or during disposal of silver-containing products. This raises the concern about the potential impact on beneficial soil bacteria and their surrounding ecosystems. Members of the Rhizobiaceae family play important roles in nutrient cycling and contribute to overall soil fertility and the experiments in this thesis address the potential for AgNP-mediated toxicity on these plant-associating bacteria. Respiration analysis of Bradyrhizobium japonicum, Azospirillum brasilense, and Agrobacterium tumefaciens has revealed that AgNPs can negatively impact the growth and survival of these bacterial species, with B. japonicum being the most susceptible. Additionally, swimming motility assays using B. japonicum showed a significant decrease in colony diameter when treated with AgNPs (50 ppm). A significant decrease in root colonization of Triticum aestivum roots by A. brasilense was observed as AgNP treatment concentrations increased. Although some of the experiments could not be completed, taken together, these experiments and the research reported herein highlights the potential toxicological effects of AgNPs on bacterial species vital to the growth and health of agriculturally important crops.

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he present model of agriculture is based on intensive use of industrial inputs, due to its rapid response, but it brings harmful consequences to the environment, and it is necessary the use of modern inputs. And an alternative is the use of rock biofertilizers in agriculture, a product easy to use, with higher residual effect and does not harm the environment. The objective of study was to evaluate the inoculation and co-inoculation of different microorganisms in the solubilization of rock phosphate and potash ground microbial evaluating the best performance in the production of biofertilizers comparing with rocks pure in soil chemical properties and, verify effect of inoculation of the bacterium Paenibacillus polymyxa in the absorption of minerals dissolved in the development of cowpea (Vigna unguiculata [L.] Walp.). The first bioassay was conducted in Laboratory (UFRN) for 72 days in Petri dishes, where the rock powder was increased by 10% and sulfur co-inoculated and inoculated with bacterial suspension of Paenibacillus polymyxa grown in medium tryptone soy broth, Ralstonia solanacearum in medium Kelman, Cromobacterium violaceum in medium Luria-Bertani and Acidithiobacillus thiooxidans in medium Tuovinen and Kelly,and fungi Trichoderma humatum and Penicillium fellutanum in malt extract. Every 12 days, samples were removed in order to build up the release curve of minerals. The second bioassay was conducted in a greenhouse of the Agricultural Research Corporation of Rio Grande do Norte in experimental delineation in randomized block designs, was used 10 kg of an Yellow Argissolo Dystrophic per pot with the addition of treatments super phosphate simple (SS), potassium chloride (KCl), pure rock, biofertilizers in doses 40, 70, 100 and 200% of the recommendation for SS and KCl, and a control, or not inoculated with bacteria P. polymyxa. Were used seeds of cowpea BRS Potiguar and co-inoculated with the bacterial suspension of Bradyrhizobium japonicum and P. polymyxa. The first crop was harvested 45 days after planting, were evaluated in the dry matter (ADM), macronutrients (N, P, K, Ca, Mg) and micronutrients (Zn, Fe, Mn) in ADM. And the second at 75 days assessing levels of macro end micronutrients in plants and soil, and the maximum adsorption capacity of P in soil. The results showed synergism in co-inoculations with P. polymyxa+R. solanacearum and, P. polymyxa+C. violaceum solubilizations providing higher P and K, respectively, and better solubilization time at 36 days. The pH was lower in biofertilizers higher doses, but there was better with their addition to P at the highest dose. Significant reduction of maximum adsorption capacity of phosphorus with increasing dose of biofertilizer. For K and Ca was better with SS+KCl, and Mg to pure rock. There was an effect of fertilization on the absorption, with better results for P, K and ADM with SS+KCL, and N, Ca and Mg for biofertilizers. Generally, the P. polymyxa not influence the absorption of the elements in the plant. In treatments with the uninoculated P. polymyxa chemical fertilizer had an average significantly higher for weight and number of grains. And in the presence of the bacteria, biofertilizers and chemical fertilizers had positive values in relation to rock and control. The data show that the rocks and biofertilizers could meet the need of nutrients the plants revealed as potential for sustainable agriculture

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Os compostos fenólicos são formados no metabolismo secundário dos vegetais e estão envolvidos no mecanismo de defesa. O objetivo do trabalho foi avaliar o efeito dos isolados 0G e EN78 na produção de fenólicos totais na soja, frente à exposição à ferrugem da soja (Phakospora pachyrhizi), e no crescimento radicular. O isolado EN78 induziu um aumento no teor de fenólicos totais quando exposto à ferrugem, mesmo antes da manifestação do sintoma. Esse mesmo isolado apresentou eficiência simbiótica com o Biorhizo 10 (Bradyrhizobium elkanii e japonicum), promovendo o desenvolvimento radicular, enquanto que o isolado 0G não influiu no teor de fenólicos totais, mas induziu aumento da biomassa radicular.

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Com o objetivo de desenvolver estratégias baseadas em princípios de baixas aplicações de insumos e rápido crescimento vegetal que visem a revegetação de um solo de restinga degradado em Saquarema - RJ, desde a produção de mudas florestais e estabelecimento das mesmas em campo, foi realizado este experimento na Embrapa Agrobiologia. Para avaliar os efeitos da inoculação com bradyrhizobium e fungos micorrízicos arbusculares em dois substratos usados para a formação de mudas de Acacia mangium Willd, no crescimento, nodulação, colonização micorrízica e teores e acúmulos de macro e micronutrientes, foi realizado um experimento em casa de vegetação na Embrapa Agrobiologia, utilizando um delineamento experimental inteiramente casualizado, em esquema fatorial completo 4 X 2 com 5 repetições.

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Para avaliar os efeitos da inoculação com Bradyrhizobium, fungos micorrízicos arbusculares (FMA) e níveis de fósforo em mudas de sabiá Mimosa caesalpiniaefolia Benth, plantadas em um solo espodossolo humilúvico de restinga degradada, adubado com cinco níveis de fósforo e duas fontes fosfatadas, no crescimento, nodulação, colonização micorrízica e teores e acúmulos de macro e micronutrientes, foi realizado um experimento em vasos plásticos, utilizando um delineamento experimental inteiramente casualizado, em esquema fatorial completo 2 X 4 X 5 com 4 repetições.