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Evolving Concepts of Bacterial Species

机译:细菌物种的进化概念

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The same evolutionary forces that cause diversification in sexual eukaryotes are expected to cause diversification in bacteria. However, in bacteria, the wider variety of mechanisms for gene exchange (or lack thereof) increases the range of expected diversity patterns compared to those of sexual organisms. Two parallel concepts for bacterial speciation have developed, based on ecological divergence or barriers to recombination in turn. Recent evidence from DNA sequence data shows that both processes can generate independently evolving groups that are equivalent to sexual species and that represent separate arenas within which recombination (when it occurs), selection and drift occur. It remains unclear, however, how often different processes act in concert to generate simple units of diversity, or whether a more complex model of diversity is required, specifying hierarchical levels at which different cohesive processes operate. We advocate an integrative approach that evaluates the effects of multiple evolutionary forces on diversity patterns. There is also great potential for laboratory studies of bacterial evolution that test evolutionary mechanisms inferred from population genetic analyses of multi-locus and genome sequence data.
机译:导致性真核生物多样化的相同进化力有望导致细菌多样化。然而,在细菌中,与性生物相比,基因交换机制的多样性(或缺乏机制)更加广泛,从而增加了预期多样性模式的范围。基于生态差异或重组障碍,已经提出了两种平行的细菌形态学概念。来自DNA序列数据的最新证据表明,这两个过程都可以产生独立进化的基团,这些基团与有性物种等效,并代表分离区域(重组发生时,发生选择和漂移时)。但是,不清楚不同的过程有多频繁地协同作用以产生简单的多样性单元,或者是否需要更复杂的多样性模型(指定不同的凝聚过程在其中运行的层次级别),尚不清楚。我们提倡采用一种综合方法来评估多种进化力对多样性模式的影响。在细菌进化的实验室研究中,测试由多基因座和基因组序列数据进行群体遗传分析得出的进化机制,也具有很大的潜力。

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