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Nitrogen-fixing Rhizobium-legume symbiosis: are polyploidy and host peptide-governed symbiont differentiation general principles of endosymbiosis?

机译:固氮根瘤菌-豆类共生:多倍体和寄主肽控制的共生分化是内共生的一般原理吗?

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摘要

The symbiosis between rhizobia soil bacteria and legumes is facultative and initiated by nitrogen starvation of the host plant. Exchange of signal molecules between the partners leads to the formation of root nodules where bacteria are converted to nitrogen-fixing bacteroids. In this mutualistic symbiosis, the bacteria provide nitrogen sources for plant growth in return for photosynthates from the host. Depending on the host plant the symbiotic fate of bacteria can either be reversible or irreversible. In Medicago plants the bacteria undergo a host-directed multistep differentiation process culminating in the formation of elongated and branched polyploid bacteria with definitive loss of cell division ability. The plant factors are nodule-specific symbiotic peptides. About 500 of them are cysteine-rich NCR peptides produced in the infected plant cells. NCRs are targeted to the endosymbionts and the concerted action of different sets of peptides governs different stages of endosymbiont maturation. This review focuses on symbiotic plant cell development and terminal bacteroid differentiation and demonstrates the crucial roles of symbiotic peptides by showing an example of multi-target mechanism exerted by one of these symbiotic peptides.
机译:根瘤菌土壤细菌和豆类之间的共生是兼性的,并且是由宿主植物的氮饥饿引起的。伴侣之间信号分子的交换导致根瘤的形成,在根瘤中细菌被转化为固氮类细菌。在这种共生的共生关系中,细菌为植物的生长提供了氮源,以换取宿主的光合产物。取决于寄主植物,细菌的共生命运既可以是可逆的也可以是不可逆的。在紫花苜蓿植物中,细菌经历了宿主定向的多步分化过程,最终形成了伸长和分支的多倍体细菌,并最终丧失了细胞分裂能力。植物因子是结节特异性共生肽。其中约500种是在受感染的植物细胞中产生的富含半胱氨酸的NCR肽。 NCR靶向内共生体,并且不同组肽的协同作用控制着内共生体成熟的不同阶段。这篇综述着重于共生植物细胞的发育和终生类细菌的分化,并通过展示这些共生肽之一所发挥的多靶点作用机制的实例,证明了共生肽的关键作用。

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