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Alnus peptides modify membrane porosity and induce the release of nitrogen-rich metabolites from nitrogen-fixing Frankia

机译:nu肽修饰膜的孔隙率并诱导固氮Frankia释放富氮代谢产物

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摘要

Actinorhizal plant growth in pioneer ecosystems depends on the symbiosis with the nitrogen-fixing actinobacterium Frankia cells that are housed in special root organs called nodules. Nitrogen fixation occurs in differentiated Frankia cells known as vesicles. Vesicles lack a pathway for assimilating ammonia beyond the glutamine stage and are supposed to transfer reduced nitrogen to the plant host cells. However, a mechanism for the transfer of nitrogen-fixation products to the plant cells remains elusive. Here, new elements for this metabolic exchange are described. We show that Alnus glutinosa nodules express defensin-like peptides, and one of these, Ag5, was found to target Frankia vesicles. In vitro and in vivo analyses showed that Ag5 induces drastic physiological changes in Frankia, including an increased permeability of vesicle membranes. A significant release of nitrogen-containing metabolites, mainly glutamine and glutamate, was found in N2-fixing cultures treated with Ag5. This work demonstrates that the Ag5 peptide is central for Frankia physiology in nodules and uncovers a novel cellular function for this large and widespread defensin peptide family.
机译:先锋生态系统中的放线植物生长取决于与固定在称为根瘤的特殊根器官中的固氮放线菌Frankia细胞的共生。氮固定发生在被称为囊泡的分化Frankia细胞中。囊泡缺乏在谷氨酰胺阶段之外吸收氨的途径,并且应该将还原的氮转移至植物宿主细胞。然而,将固氮产物转移至植物细胞的机制仍然难以捉摸。在此,描述了用于这种代谢交换的新元素。我们表明,nu木结节表达防御素样肽,其中之一,Ag5,被发现针对弗兰肯囊泡。体外和体内分析表明,Ag5诱导Frankia发生剧烈的生理变化,包括增加囊泡膜的通透性。在用Ag5处理的N2固定培养物中发现了主要是谷氨酰胺和谷氨酸的含氮代谢产物的大量释放。这项工作表明,Ag5肽对于结节中的Frankia生理至关重要,并为这个庞大而广泛的防御素肽家族揭示了一种新型的细胞功能。

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