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Biochemical and Molecular Phylogenetic Study of Agriculturally Useful Association of a Nitrogen-Fixing Cyanobacterium and Nodule Sinorhizobium with Medicago sativa L.

机译:农业实用的固氮蓝细菌和根瘤根瘤菌与紫花苜蓿的农业关联的生化和分子系统发育研究。

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摘要

Seed inoculation with bacterial consortium was found to increase legume yield, providing a higher growth than the standard nitrogen treatment methods. Alfalfa plants were inoculated by mono- and binary compositions of nitrogen-fixing microorganisms. Their physiological and biochemical properties were estimated. Inoculation by microbial consortium of Sinorhizobium meliloti T17 together with a new cyanobacterial isolate Nostoc PTV was more efficient than the single-rhizobium strain inoculation. This treatment provides an intensification of the processes of biological nitrogen fixation by rhizobia bacteria in the root nodules and an intensification of plant photosynthesis. Inoculation by bacterial consortium stimulates growth of plant mass and rhizogenesis and leads to increased productivity of alfalfa and to improving the amino acid composition of plant leaves. The full nucleotide sequence of the rRNA gene cluster and partial sequence of the dinitrogenase reductase (nifH) gene of Nostoc PTV were deposited to GenBank (, ). Comparison of these gene sequences of Nostoc PTV with all sequences present at the GenBank shows that this cyanobacterial strain does not have 100% identity with any organisms investigated previously. Phylogenetic analysis showed that this cyanobacterium clustered with high credibility values with Nostoc muscorum.
机译:发现用细菌聚生体接种种子可以提高豆类产量,比标准的氮处理方法具有更高的生长性。用固定氮的微生物的单组成和二组成接种苜蓿植物。他们的生理和生化特性进行了估计。微生物菌群的苜蓿中华根瘤菌T17连同新的蓝细菌分离株Nostoc PTV的接种比单根瘤菌菌株的接种更有效。该处理增强了根瘤中根瘤菌对生物固氮的作用,并增强了植物的光合作用。细菌聚生体的接种刺激了植物的生长和发根,并增加了苜蓿的生产力并改善了植物叶片的氨基酸组成。 Nostoc PTV的rRNA基因簇的完整核苷酸序列和双氮还原酶(nifH)基因的部分序列已保存到GenBank(,)。将Nostoc PTV的这些基因序列与GenBank中存在的所有序列进行比较表明,该蓝细菌菌株与先前研究的任何生物都不具有100%的同一性。系统发育分析表明,这种蓝细菌以较高的可信度与Nostoc muscorum聚集在一起。

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