The ecology of bacterial genes and the survival of the new.

M Pilar Francino
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引用次数: 38

Abstract

Much of the observed variation among closely related bacterial genomes is attributable to gains and losses of genes that are acquired horizontally as well as to gene duplications and larger amplifications. The genomic flexibility that results from these mechanisms certainly contributes to the ability of bacteria to survive and adapt in varying environmental challenges. However, the duplicability and transferability of individual genes imply that natural selection should operate, not only at the organismal level, but also at the level of the gene. Genes can be considered semiautonomous entities that possess specific functional niches and evolutionary dynamics. The evolution of bacterial genes should respond both to selective pressures that favor competition, mostly among orthologs or paralogs that may occupy the same functional niches, and cooperation, with the majority of other genes coexisting in a given genome. The relative importance of either type of selection is likely to vary among different types of genes, based on the functional niches they cover and on the tightness of their association with specific organismal lineages. The frequent availability of new functional niches caused by environmental changes and biotic evolution should enable the constant diversification of gene families and the survival of new lineages of genes.

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生态细菌的基因与生存的新。
在密切相关的细菌基因组中观察到的许多变异可归因于水平获得的基因的获得和损失,以及基因复制和更大的扩增。由这些机制产生的基因组灵活性肯定有助于细菌在各种环境挑战中生存和适应的能力。然而,个体基因的可复制性和可转移性意味着自然选择应该不仅在有机体水平上起作用,而且在基因水平上起作用。基因可以被认为是具有特定功能生态位和进化动态的半自主实体。细菌基因的进化应该对选择压力做出反应,选择压力有利于竞争,主要是在可能占据相同功能生态位的同系物或相似物之间,以及与大多数其他基因共存于给定基因组中的合作。这两种选择的相对重要性可能在不同类型的基因之间有所不同,这取决于它们所覆盖的功能生态位以及它们与特定生物体谱系的联系紧密程度。由环境变化和生物进化引起的新功能生态位的频繁可用性应该使基因家族的不断多样化和新基因谱系的生存成为可能。
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