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Quorum-sensing regulation in rhizobia and its role in symbiotic interactions with legumes

机译:根瘤菌的群体感应调控及其在与豆类共生相互作用中的作用

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摘要

Legume-nodulating bacteria (rhizobia) usually produce N-acyl homoserine lactones, which regulate the induction of gene expression in a quorum-sensing (or population-density)-dependent manner. There is significant diversity in the types of quorum-sensing regulatory systems that are present in different rhizobia and no two independent isolates worked on in detail have the same complement of quorum-sensing genes. The genes regulated by quorum sensing appear to be rather diverse and many are associated with adaptive aspects of physiology that are probably important in the rhizosphere. It is evident that some aspects of rhizobial physiology related to the interaction between rhizobia and legumes are influenced by quorum sensing. However, it also appears that the legumes play an active role, both in terms of interfering with the rhizobial quorum-sensing systems and responding to the signalling molecules made by the bacteria. In this article, we review the diversity of quorum-sensing regulation in rhizobia and the potential role of legumes in influencing and responding to this signalling system.
机译:豆科植物结瘤细菌(根瘤菌)通常产生N-酰基高丝氨酸内酯,它们以群体感应(或种群密度)依赖性方式调节基因表达的诱导。存在于不同根瘤菌中的群体感应调节系统的类型存在很大差异,没有两个经过详细研究的独立分离株具有相同的群体感应基因互补。由群体感应调控的基因似乎相当多样,许多与生理学的适应性方面有关,这在根际中可能很重要。显然,与根瘤菌和豆类之间的相互作用有关的根瘤菌生理学的某些方面受到群体感应的影响。但是,从干扰根瘤菌群体感应系统和对细菌产生的信号分子的反应来看,豆类也起着积极的作用。在本文中,我们回顾了根瘤菌群体群体中群体感应调控的多样性以及豆类在影响和响应这种信号传递系统中的潜在作用。

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