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[细菌粘附素RAPA1在豌豆根瘤菌与豆类植物高效共生形成中的作用]

[Role of Bacterial Adhesin RAPA1 in Formation of Efficient Symbiosis of Rhizobium leguminosarum with Bean Plants].

作者信息

Nigmatullina L R, Lavina A M, Vershinina Z R, Baimiev Al Kh

出版信息

Mikrobiologiia. 2015 Nov-Dec;84(6):705-11.

Abstract

Bacterial adhesins, the proteins responsible for attachment of plant growth-promoting rhizobacteria to plant roots, are involved in formation of stable associative symbioses. In the present work enhanced expression of the rapA1 adhesin gene in Rhizobium leguminosarum PVu5 was shown to improve the efficiency of nodulation on bean roots inoculated with the modified strain. The rapA1 gene was cloned into the pJN105Turbo plasmid, this construct was used for transformation of R. leguminosarum PVu5, bean plants were inoculated by this transgenic strain, and efficiency of root nodule formation was determined. In the plants treated with rapA1-transgenic rhizobia, the number of root nodules was on average two times higher than in the plants inoculated with the original strain. Aggregation of R. leguminosarum was achieved when the rapA1 gene expression was enhanced either in rhizobia or in the co-cultured modified strain E. coli pJN105TurboRapA1.

摘要

细菌黏附素是负责促进植物生长的根际细菌附着到植物根部的蛋白质,参与稳定联合共生体的形成。在本研究中,豌豆根瘤菌PVu5中rapA1黏附素基因的表达增强,结果表明这提高了用改良菌株接种的菜豆根上的结瘤效率。将rapA1基因克隆到pJN105Turbo质粒中,该构建体用于豌豆根瘤菌PVu5的转化,用这种转基因菌株接种菜豆植株,并测定根瘤形成效率。在用rapA1转基因根瘤菌处理的植株中,根瘤数量平均比接种原始菌株的植株高出两倍。当根瘤菌或共培养的改良菌株大肠杆菌pJN105TurboRapA1中rapA1基因表达增强时,可实现豌豆根瘤菌的聚集。

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