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Adaptive radiation by waves of gene transfer leads to fine-scale resource partitioning in marine microbes

机译:基因转移波的适应性辐射导致海洋微生物的精细资源分配

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摘要

Adaptive radiations are important drivers of niche filling, since they rapidly adapt a single clade of organisms to ecological opportunities. Although thought to be common for animals and plants, adaptive radiations have remained difficult to document for microbes in the wild. Here we describe a recent adaptive radiation leading to fine-scale ecophysiological differentiation in the degradation of an algal glycan in a clade of closely related marine bacteria. Horizontal gene transfer is the primary driver in the diversification of the pathway leading to several ecophysiologically differentiated Vibrionaceae populations adapted to different physical forms of alginate. Pathway architecture is predictive of function and ecology, underscoring that horizontal gene transfer without extensive regulatory changes can rapidly assemble fully functional pathways in microbes.
机译:适应性辐射是生态位填充的重要驱动力,因为它们可使单个生物进化迅速地适应生态机会。尽管被认为对动植物很普遍,但对于野外微生物来说,适应性辐射仍然难以记录。在这里,我们描述了最近的适应性辐射,该辐射导致在密切相关的海洋细菌进化枝中的藻类聚糖降解中发生细微的生态生理分化。水平基因转移是途径多样化的主要驱动力,该途径导致适应不同物理形式藻酸盐的几种生态生理分化的弧菌科种群。途径的结构是功能和生态学的预言,着重指出水平基因转移而无需广泛的调控变化可以迅速地在微生物中组装完整的功能途径。

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