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The episodic evolution of fibritin: traces of ancient global environmental alterations may remain in the genomes of T4-like phages

机译:纤维蛋白的情节演变:古代全球环境变化的痕迹可能仍保留在T4样噬菌体的基因组中

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摘要

The evolutionary adaptation of bacteriophages to their environment is achieved by alterations of their genomes involving a combination of both point mutations and lateral gene transfer. A phylogenetic analysis of a large set of collar fiber protein (fibritin) loci from diverse T4-like phages indicates that nearly all the modular swapping involving the C-terminal domain of this gene occurred in the distant past and has since ceased. In phage T4, this fibritin domain encodes the sequence that mediates both the attachment of the long tail fibers to the virion and also controls, in an environmentally sensitive way, the phage's ability to infect its host bacteria. Subsequent to its distant period of modular exchange, the evolution of fibritin has proceeded primarily by the slow vertical divergence mechanism. We suggest that ancient and sudden changes in the environment forced the T4-like phages to alter fibritin's mode of action or function. The genome's response to such episodes of rapid environmental change could presumably only be achieved quickly enough by employing the modular evolution mechanism. A phylogenetic analysis of the fibritin locus reveals the possible traces of such events within the T4 superfamily's genomes.
机译:噬菌体对其环境的进化适应性是通过改变其基因组(包括点突变和侧向基因转移的组合)来实现的。对来自不同T4样噬菌体的大量领纤维蛋白(fibritin)基因座的系统发育分析表明,几乎所有涉及该基因C端结构域的模块交换都发生在很久以前,并且此后就停止了。在噬菌体T4中,该纤维蛋白结构域编码的序列介导了长尾巴纤维与病毒体的连接,并以对环境敏感的方式控制了噬菌体感染其宿主细菌的能力。在其遥远的模块化交换时期之后,纤维蛋白原的进化主要通过缓慢的垂直发散机制进行。我们建议环境的古老和突然变化迫使T4样噬菌体改变纤维蛋白的作用方式或功能。通过采用模块化进化机制,大概只能足够快地实现基因组对这种快速环境变化的反应。纤维蛋白原基因座的系统发育分析揭示了这种事件在T4超家族基因组中的可能痕迹。

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