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首页> 外文期刊>African Journal of Microbiology Research >Bioprospecting and plant growth-promoting bacteria tolerant to salinity associated with Atriplex nummularia L. in saline soils
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Bioprospecting and plant growth-promoting bacteria tolerant to salinity associated with Atriplex nummularia L. in saline soils

机译:耐盐碱土壤中的滨藜的生物勘探和植物生长促进细菌的耐受性

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This study aimed to bioprospect and select halotolerantes bacteria and promoting plant growth associated with the plant Atriplex nummularia L. in saline soils. For bioprospecting of bacteria, samples were collected in five niches and two field experiments located in Serra Talhada and Ibimirim, Pernambuco, Brazil. After collecting the material it was performed the isolation and selection of bacteria based on plant growth promotion mechanisms. 107 bacterial salt tolerant isolates were obtained in which the population density of bacteria was higher in the rhizosphere (107 CFU g-1 soil), the cultivated soil (106 CFU g-1 soil) and uncultivated soil (105 CFU g-1 soil). For the solubilization rate of inorganic phosphate was obtained 65 and 25% positives isolated in 0 to 5% NaCl concentration, respectively. For the characteristics of biological fixation nitrogen, indole acetic acid production, exopolysaccharides and quorum sensing molecule, reached up to 87 percent; 100; 83.33 and 96.66% of the bacteria, respectively. Therefore, the bacterial isolates UAGAt 89 and UAGAt 101 expressed greater tolerance to salinity when analyzed in relation to the characteristics that promote plant growth, making it promising for future studies in order to contribute to the development of Atriplex plants and rehabilitation of soil affected by salts.
机译:这项研究的目的是在盐渍土中生物勘探和选择卤虫类细菌并促进与植物滨藜属植物相关的植物生长。为了对细菌进行生物勘探,在位于巴西伯南布哥的塞拉塔拉哈达和伊比米里姆的五个生态位和两个野外实验中收集了样品。收集材料后,根据植物生长促进机制进行细菌的分离和选择。获得了107个耐盐细菌菌株,其中根际(107 CFU g-1土壤),耕作土壤(106 CFU g-1土壤)和未耕种土壤(105 CFU g-1土壤)细菌的种群密度更高。 。对于无机磷酸盐的增溶速率,在0至5%NaCl浓度下分别获得65和25%的阳性。由于氮的生物固定特性,吲哚乙酸的产生,胞外多糖和群体感应分子的含量高达87%。 100;分别为83.33和96.66%。因此,细菌分离物UAGAt 89和UAGAt 101在分析促进植物生长的特性时表现出对盐分的更大耐受性,这使其有希望为将来的研究做出贡献,以促进滨藜植物的发展和受盐影响的土壤的恢复。

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