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豆科植物与根瘤菌共生的谱系。

Genealogy of legume-Rhizobium symbioses.

作者信息

Broughton W J, Perret X

机构信息

Laboratoire de Biologie Moléculaire des Plantes Supérieures (LBMPS), Université de Genève, 1 ch. de l'Impératrice, 1292, Chambésy/Genève, Switzerland.

出版信息

Curr Opin Plant Biol. 1999 Aug;2(4):305-11. doi: 10.1016/S1369-5266(99)80054-5.

Abstract

Accumulating evidence suggests that lateral transfer of nodulation capacity is an important driving force in symbiotic evolution. As a consequence, many distantly related soil bacteria have acquired the capacity to invade plants and fix nitrogen within them. In addition to these proteins required for bacteroid development and nitrogen fixation, core symbiotic competence seems to require flavonoids, NodD proteins, lipochitooligosaccharidic Nod-factors, extra-cellular polysaccharides, as well as various exported proteins. Plants respond to different levels and combinations of these substances in species specific ways. After contact has been initiated by flavonoids and NodD proteins, constant signal exchange fine-tunes these symbiotic demands, especially to overcome defence reactions.

摘要

越来越多的证据表明,结瘤能力的横向转移是共生进化的重要驱动力。因此,许多亲缘关系较远的土壤细菌已经获得了侵入植物并在植物体内固氮的能力。除了类菌体发育和固氮所需的这些蛋白质外,核心共生能力似乎还需要黄酮类化合物、NodD蛋白、脂壳寡糖Nod因子、细胞外多糖以及各种输出蛋白。植物以物种特异性的方式对这些物质的不同水平和组合做出反应。在黄酮类化合物和NodD蛋白引发接触后,持续的信号交换会微调这些共生需求,尤其是为了克服防御反应。

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