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Origins of bacterial diversity through horizontal genetic transfer and adaptation to new ecological niches

机译:通过水平遗传转移和适应新生态位的细菌多样性起源

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Horizontal genetic transfer (HGT) has played an important role in bacterial evolution at least since the origins of the bacterial divisions, and HGT still facilitates the origins of bacterial diversity, including diversity based on antibiotic resistance. Adaptive HGT is aided by unique features of genetic exchange in bacteria such as the promiscuity of genetic exchange and the shortness of segments transferred. Genetic exchange rates are limited by the genetic and ecological similarity of organisms. Adaptive transfer of genes is limited to those that can be transferred as a functional unit, provide a niche-transcending adaptation, and are compatible with the architecture and physiology of other organisms. Horizontally transferred adaptations may bring about fitness costs, and natural selection may ameliorate these costs. The origins of ecological diversity can be analyzed by comparing the genomes of recently divergent, ecologically distinct populations, which can be discovered as sequence clusters. Such genome comparisons demonstrate the importance of HGT in ecological diversification. Newly divergent populations cannot be discovered as sequence clusters when their ecological differences are coded by plasmids, as is often the case for antibiotic resistance; the discovery of such populations requires a screen for plasmid-coded functions. This paper reviews the features of bacterial genetics that allow HGT, the similarities between organisms that foster HGT between them, the limits to the kinds of adaptations that can be transferred, and amelioration of fitness costs associated with HGT; the paper also reviews approaches to discover the origins of new, ecologically distinct bacterial populations and the role that HGT plays in their founding.
机译:至少自从细菌分裂的起源以来,水平遗传转移(HGT)就在细菌进化中发挥了重要作用,并且HGT仍然促进了细菌多样性的起源,包括基于抗生素抗性的多样性。适应性HGT可以通过细菌中遗传交换的独特功能来辅助,例如遗传交换的混杂性和转移片段的短性。遗传交换率受到生物体遗传和生态相似性的限制。基因的适应性转移仅限于那些可以作为功能单元转移,提供生态位超越适应并与其他生物的结构和生理相容的基因。水平转移的适应可能会带来健身成本,自然选择可能会改善这些成本。可以通过比较近来不同的,生态上不同的种群的基因组来分析生态多样性的起源,这些种群可以被发现为序列簇。这样的基因组比较证明了HGT在生态多样化中的重要性。当它们的生态差异由质粒编码时,就不能发现新近分化的种群作为序列簇,这通常是抗生素抗性的情况。这些种群的发现需要筛选质粒编码的功能。本文综述了允许HGT的细菌遗传学特征,在它们之间培育HGT的生物之间的相似性,可以转移的适应性种类的限制以及与HGT相关的适应成本的降低;本文还回顾了发现新的,生态上不同的细菌种群起源的方法,以及HGT在其建立过程中所起的作用。

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