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根瘤菌共生基因为什么是可移动的?

Why are rhizobial symbiosis genes mobile?

机构信息

Department of Animal Plant Sciences, University of Sheffield, Western Bank, Sheffield S10 1EA, UK.

Biological Sciences, University of Calgary, 2500 University Drive NW, Calgary, Alberta, Canada T2N 1N4.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2022 Jan 17;377(1842):20200471. doi: 10.1098/rstb.2020.0471. Epub 2021 Nov 29.

Abstract

Rhizobia are one of the most important and best studied groups of bacterial symbionts. They are defined by their ability to establish nitrogen-fixing intracellular infections within plant hosts. One surprising feature of this symbiosis is that the bacterial genes required for this complex trait are not fixed within the chromosome, but are encoded on mobile genetic elements (MGEs), namely plasmids or integrative and conjugative elements. Evidence suggests that many of these elements are actively mobilizing within rhizobial populations, suggesting that regular symbiosis gene transfer is part of the ecology of rhizobial symbionts. At first glance, this is counterintuitive. The symbiosis trait is highly complex, multipartite and tightly coevolved with the legume hosts, while transfer of genes can be costly and disrupt coadaptation between the chromosome and the symbiosis genes. However, horizontal gene transfer is a process driven not only by the interests of the host bacterium, but also, and perhaps predominantly, by the interests of the MGEs that facilitate it. Thus understanding the role of horizontal gene transfer in the rhizobium-legume symbiosis requires a 'mobile genetic element's-eye view' on the ecology and evolution of this important symbiosis. This article is part of the theme issue 'The secret lives of microbial mobile genetic elements'.

摘要

根瘤菌是最重要和研究得最好的细菌共生体之一。它们的定义是能够在植物宿主内建立固氮的细胞内感染。这种共生关系的一个惊人特征是,细菌中完成这一复杂特征所必需的基因并不固定在染色体上,而是编码在移动遗传元件(MGE)上,即质粒或整合和共轭元件。有证据表明,这些元件中的许多在根瘤菌种群中正在积极地移动,这表明经常进行共生基因转移是根瘤菌共生体生态学的一部分。乍一看,这是违反直觉的。共生特征高度复杂,多部分,与豆科宿主紧密协同进化,而基因转移可能代价高昂,并破坏染色体与共生基因之间的共适应。然而,水平基因转移是一个由宿主细菌的利益驱动的过程,而且,也许主要是,由促进它的移动遗传元件的利益驱动的过程。因此,要理解水平基因转移在根瘤菌-豆科植物共生中的作用,需要从“移动遗传元件的视角”来看待这种重要共生关系的生态和进化。本文是主题为“微生物移动遗传元件的秘密生活”的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afff/8628070/7d7368daad7f/rstb20200471f01.jpg

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