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Spontaneous modulation of a dynamic balance between bacterial genomic stability and mutability: roles and molecular mechanisms of the genetic switch

机译:自发调节细菌基因组稳定性和变异性之间的动态平衡:基因开关的作用和分子机制

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Bacteria need a high degree of genetic stability to maintain their species identities over long evolutionary times while retaining some mutability to adapt to the changing environment. It is a long unanswered question that how bacteria reconcile these seemingly contradictory biological properties. We hypothesized that certain mechanisms must maintain a dynamic balance between genetic stability and mutability for the survival and evolution of bacterial species. To identify such mechanisms, we analyzed bacterial genomes, focusing on the Salmonella mismatch repair (MMR) system. We found that the MMR gene mutL functions as a genetic switch through a slipped-strand mispairing mechanism, modulating and maintaining a dynamic balance between genetic stability and mutability during bacterial evolution. This mechanism allows bacteria to maintain their phylogenetic status, while also adapting to changing environments by acquiring novel traits. In this review, we outline the history of research into this genetic switch, from its discovery to the latest findings, and discuss its potential roles in the genomic evolution of bacteria.
机译:细菌需要高度的遗传稳定性,才能在长时间的进化过程中保持其物种同一性,同时保留一些可变性以适应不断变化的环境。细菌如何调和这些看似矛盾的生物学特性是一个长期未解决的问题。我们假设某些机制必须在细菌的生存和进化的遗传稳定性和变异性之间保持动态平衡。为了确定这种机制,我们分析了细菌基因组,重点是沙门氏菌错配修复(MMR)系统。我们发现,MMR基因mutL通过滑链错配机制作为遗传开关,在细菌进化过程中调节和维持遗传稳定性和变异性之间的动态平衡。这种机制可以使细菌保持其系统发育状态,同时还可以通过获取新特性来适应不断变化的环境。在这篇综述中,我们概述了这种遗传转换的研究历史,从发现到最新发现,并讨论了其在细菌基因组进化中的潜在作用。

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