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Early interactions between legumes and rhizobia: disclosing complexity in a molecular dialogue

机译:豆科植物和根瘤菌之间的早期相互作用:在分子对话中揭示复杂性

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The exchange of chemical signals between soil bacteria ( rhizobia) and legumes has been termed a molecular dialogue. As initially conceived in the early 1990s, it involved two main groups of molecules: nod gene-inducing flavonoids from plants and the mitogenic lipochito-oligosaccharide Nod factors of rhizobia. This review considers how subsequent research revealed the existence of a more complex set of interactions, featuring expanded roles for the original participants and contributions from additional plant and bacterial metabolites. Rhizobia respond to chemoattractants and growth- enhancing compounds in root exudates, and several plant nonflavonoids possess nod gene-inducing properties. Expression ofnon- nod genes is induced by flavonoids; these include encoders of a type I secreted protein and the entire type III, and possibly also type IV, secretion systems. Many other genes and proteins in rhizobia are flavonoidinducible but their functions are largely unknown. Rhizobia produce far more Nod factor variants than was previously envisaged and their structures can be influenced by the pH of the environment. Other symbiotically active compounds or systems of rhizobia, some of them universally present, are: the surface polysaccharides, quorum- sensing N- acyl homoserine lactones, plant growth- promoting lumichrome and two- component regulatory systems.
机译:土壤细菌(根瘤菌)和豆类之间的化学信号交换被称为分子对话。正如最初在1990年代初期所设想的那样,它涉及两大类分子:来自植物的nod基因诱导类黄酮和根瘤菌的促有丝分裂脂质壳寡糖Nod因子。这篇评论考虑了随后的研究如何揭示了一组更复杂的相互作用的存在,其特点是扩大了原始参与者的作用以及其他植物和细菌代谢产物的贡献。根瘤菌对根系分泌物中的趋化因子和生长促进化合物有反应,并且几种植物非类黄酮具有nod基因诱导特性。类黄酮诱导非点基因的表达。这些包括I型分泌蛋白的编码器和整个III型甚至IV型分泌系统的编码器。根瘤菌中的许多其他基因和蛋白质是类黄酮可诱导的,但其功能很大程度上未知。根瘤菌产生的Nod因子变体比以前设想的要多得多,其结构可能受环境pH值的影响。根瘤菌还具有其他共生活性化合物或系统,其中一些普遍存在:表面多糖,群体感应N-酰基高丝氨酸内酯,促进植物生长的发光色素和两组分调节系统。

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