根瘤菌与植物共生。

P van Rhijn, J Vanderleyden
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引用次数: 26

摘要

根瘤菌、慢生根瘤菌和固氮根瘤菌能够在豆科寄主的根或茎上形成独特的结构,称为根瘤。在这些根瘤中,根瘤菌将大气中的N2转化为植物所需的氨。为了建立这种共生关系,信号在植物和根瘤菌相互作用的早期产生,它们引起两个共生伙伴的离散响应。首先,细菌结瘤(nod)基因的转录受NodD调节蛋白的控制,该蛋白被根分泌物中存在的特定植物信号类黄酮激活。反过来,节点编码的酶参与特定低脂糖的合成和排泄,这些低脂糖能够在宿主植物上触发导致根瘤形成的有机程序。综述了nod基因的组织、调控和功能,以及它们在决定宿主特异性中的作用。
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The Rhizobium-plant symbiosis.

Rhizobium, Bradyrhizobium, and Azorhizobium species are able to elicit the formation of unique structures, called nodules, on the roots or stems of the leguminous host. In these nodules, the rhizobia convert atmospheric N2 into ammonia for the plant. To establish this symbiosis, signals are produced early in the interaction between plant and rhizobia and they elicit discrete responses by the two symbiotic partners. First, transcription of the bacterial nodulation (nod) genes is under control of the NodD regulatory protein, which is activated by specific plant signals, flavonoids, present in the root exudates. In return, the nod-encoded enzymes are involved in the synthesis and excretion of specific lipooligosaccharides, which are able to trigger on the host plant the organogenic program leading to the formation of nodules. An overview of the organization, regulation, and function of the nod genes and their participation in the determination of the host specificity is presented.

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