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植物病原细菌质粒对其宿主进化史贡献的基因组学见解。

Genomic insights into the contribution of phytopathogenic bacterial plasmids to the evolutionary history of their hosts.

作者信息

Sundin George W

机构信息

Department of Plant Pathology and Center for Microbial Ecology, Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

Annu Rev Phytopathol. 2007;45:129-51. doi: 10.1146/annurev.phyto.45.062806.094317.

Abstract

Plasmids are common residents of phytopathogenic bacteria and contribute significantly to host evolution in a multi-faceted manner. Plasmids tend to encode determinants of virulence and ecological fitness that can enhance adaptation to a specific niche or can influence niche expansion. Many of these determinants appear to have been acquired from other bacteria via horizontal transfer, illustrating an important function of plasmids in the acquisition of sequences that enable rapid evolution. These genes can ultimately be delivered to the host chromosome through plasmid integration events, thus stabilizing important acquired determinants within the genome. Most plasmids characterized in phytopathogenic bacteria are self-transmissible and possess suites of genes encoding type IV secretion systems. In addition, the phytopathogenic bacterial plasmid "mobilome" includes insertion sequence and other transposable elements that contribute to the movement of sequences within and between genomes. Possession of mosaic and ever-changing plasmids allows phytopathogenic bacteria to maintain a dynamic, flexible genome and possible advantage in host-pathogen and other environmental interactions that belies the concept of plasmids as apparently selfish genetic elements.

摘要

质粒是植物致病细菌的常见组成部分,并以多方面的方式对宿主进化有显著贡献。质粒倾向于编码毒力和生态适应性决定因素,这些因素可增强对特定生态位的适应性或影响生态位扩展。其中许多决定因素似乎是通过水平转移从其他细菌获得的,这说明了质粒在获取能够实现快速进化的序列方面的重要作用。这些基因最终可通过质粒整合事件传递到宿主染色体上,从而在基因组内稳定重要的获得性决定因素。在植物致病细菌中鉴定出的大多数质粒是自我传递的,并拥有一套编码IV型分泌系统的基因。此外,植物致病细菌质粒“可移动基因组”包括插入序列和其他转座元件,这些元件有助于基因组内和基因组间序列的移动。拥有嵌合且不断变化的质粒使植物致病细菌能够维持动态、灵活的基因组,并在宿主-病原体及其他环境相互作用中可能具有优势,这与质粒显然是自私遗传元件的概念相悖。

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