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DNA secretion and gene-level selection in bacteria

机译:细菌中的DNA分泌和基因水平选择

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Natural genetic transformation can facilitate gene transfer in many genera of bacteria and requires the presence of extracellular DNA. Although cell lysis can contribute to this extracellular DNA pool, several studies have suggested that the secretion of DNA from living bacteria may also provide genetic material for transformation. This paper reviews the evidence for specific secretion of DNA from intact bacteria into the extracellular environment and examines this behaviour from a population-genetics perspective. A mathematical model demonstrates that the joint action of DNA secretion and transformation creates a novel type of gene-level natural selection. This model demonstrates that gene-level selection could explain the existence of DNA secretion mechanisms that provide no benefit to individual cells or populations of bacteria. Additionally, the model predicts that any trait affecting DNA secretion will experience selection at the gene level in a transforming population. This analysis confirms that the secretion of DNA from intact bacterial cells is fully explicable with evolutionary theory, and reveals a novel mechanism for bacterial evolution.
机译:自然遗传转化可以促进许多细菌中的基因转移,并且需要细胞外DNA。虽然细胞裂解可以有助于这种细胞外DNA池,但是一些研究表明,来自活细菌的DNA分泌也可能为转化提供遗传物质。本文审查了从完整细菌到细胞外环境中DNA的特异性分泌物的证据,并从人口遗传角度检查这种行为。数学模型表明DNA分泌和转化的关节作用产生了一种新型的基因水平自然选择。该模型表明基因级别选择可以解释DNA分泌机制的存在,为细胞或细菌的种群提供没有益处。另外,该模型预测影响DNA分泌的任何特征将在转化群体中的基因水平体验中的选​​择。该分析证实,来自完整细菌细胞的DNA分泌与进化理论完全解释,并揭示了细菌演化的新机制。

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