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Production of Exo-polysaccharide by Rhizobium sp.

机译:根瘤菌(Rhizobium sp。)生产Exo-多糖。

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摘要

Two fold increase in the yield of glucose and maltose containing exo-polysaccharide (EPS) by Rhizobium sp. was observed during its growth in modified YEMB. EPS production, plant growth promotion activity and root colonization of Rhizobium sp. studies showed enhanced EPS synthesis, more seed germination and over all improvement in plant growth over control and R. meliloti treatment. Groundnut seeds bacterized with Rhizobium sp. resulted in 69.75% more root length, 49.51% more shoot height, 13.75% more number of branches and 13.60% more number of pods over the control and R. meliloti treatment. Bacterization of wheat seeds increased the dry matter yield of roots (1.7-fold), and roots adhering soil (RAS) (1.5) and shoot mass (1.9-fold). Rhizobium sp. inoculation also increased the population density of EPS-producing bacteria on the rhizoplane. Roots of plants inoculated with Rhizobium sp. maintained a higher K+/Na+ ratio and K+–Na+ selectivity.
机译:根瘤菌(Rhizobium sp。)将葡萄糖和含有麦芽糖的胞外多糖(EPS)的产量提高了两倍。在改性YEMB中生长期间观察到。根瘤菌的EPS产量,植物生长促进活性和根定殖。研究表明,与对照和苜蓿根瘤菌相比,EPS合成增强,种子萌发更多,植物生长总体上得到改善。用根瘤菌菌种对花生种子进行了杀菌。与对照和苜蓿根瘤菌处理相比,可增加根长69.75%,增加枝高49.51%,增加枝条数量13.75%和增加豆荚数量13.60%。小麦种子的杀菌增加了根的干物质产量(1.7倍),根系附着土壤(RAS)(1.5)和枝条质量(1.9倍)。根瘤菌接种还增加了根际平面上产生EPS的细菌的种群密度。根瘤菌接种的植物根。保持较高的K + / Na + 比和K + –Na + 选择性。

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