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首页> 外文期刊>FEMS Microbiology Reviews >Plasmids foster diversification and adaptation of bacterial populations in soil
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Plasmids foster diversification and adaptation of bacterial populations in soil

机译:质粒促进土壤中细菌种群的多样化和适应

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It is increasingly being recognized that the transfer of conjugative plasmids across species boundaries plays a vital role in the adaptability of bacterial populations in soil. There are specific driving forces and constraints of plasmid transfer within bacterial communities in soils. Plasmid-mediated genetic variation allows bacteria to respond rapidly with adaptive responses to challenges such as irregular antibiotic or metal concentrations, or opportunities such as the utilization of xenobiotic compounds. Cultivation-independent detection and capture of plasmids from soil bacteria, and complete sequencing have provided new insights into the role and ecology of plasmids. Broad host range plasmids such as those belonging to IncP-1 transfer a wealth of accessory functions which are carried by similar plasmid backbones. Plasmids with a narrower host range can be more specifically adapted to particular species and often transfer genes which complement chromosomally encoded functions. Plasmids seem to be an ancient and successful strategy to ensure survival of a soil population in spatial and temporal heterogeneous conditions with various environmental stresses or opportunities that occur irregularly or as a novel challenge in soil.
机译:人们越来越认识到,结合质粒跨物种边界的转移在土壤中细菌种群的适应性中起着至关重要的作用。土壤中细菌群落内质粒转移有特定的驱动力和约束。质粒介导的遗传变异使细菌能够快速适应各种挑战,例如对不规则抗生素或金属浓度的挑战,或对诸如利用异源生物化合物的挑战的适应性响应。从土壤细菌中筛选出与培养无关的质粒并进行捕获,并进行完整的测序为质粒的作用和生态学提供了新的见解。广泛的宿主范围质粒,例如属于IncP-1的质粒,将转移大量辅助功能,这些功能由相似的质粒主链携带。具有更窄宿主范围的质粒可以更具体地适应于特定物种,并且通常转移与染色体编码的功能互补的基因。质粒似乎是一种古老而成功的策略,可以确保土壤种群在空间和时间异质条件下的生存,并具有各种环境压力或不规则发生的机会或作为土壤中的新挑战。

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