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首页> 外文期刊>Virology Journal >Genomes of the T4-related bacteriophages as windows on microbial genome evolution
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Genomes of the T4-related bacteriophages as windows on microbial genome evolution

机译:T4相关噬菌体的基因组作为微生物基因组进化的窗口

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The T4-related bacteriophages are a group of bacterial viruses that share morphological similarities and genetic homologies with the well-studied Escherichia coli phage T4, but that diverge from T4 and each other by a number of genetically determined characteristics including the bacterial hosts they infect, the sizes of their linear double-stranded (ds) DNA genomes and the predicted compositions of their proteomes. The genomes of about 40 of these phages have been sequenced and annotated over the last several years and are compared here in the context of the factors that have determined their diversity and the diversity of other microbial genomes in evolution. The genomes of the T4 relatives analyzed so far range in size between ~160,000 and ~250,000 base pairs (bp) and are mosaics of one another, consisting of clusters of homology between them that are interspersed with segments that vary considerably in genetic composition between the different phage lineages. Based on the known biological and biochemical properties of phage T4 and the proteins encoded by the T4 genome, the T4 relatives reviewed here are predicted to share a genetic core, or "Core Genome" that determines the structural design of their dsDNA chromosomes, their distinctive morphology and the process of their assembly into infectious agents (phage morphogenesis). The Core Genome appears to be the most ancient genetic component of this phage group and constitutes a mere 12-15% of the total protein encoding potential of the typical T4-related phage genome. The high degree of genetic heterogeneity that exists outside of this shared core suggests that horizontal DNA transfer involving many genetic sources has played a major role in diversification of the T4-related phages and their spread to a wide spectrum of bacterial species domains in evolution. We discuss some of the factors and pathways that might have shaped the evolution of these phages and point out several parallels between their diversity and the diversity generally observed within all groups of interrelated dsDNA microbial genomes in nature.
机译:与T4相关的噬菌体是一组细菌病毒,它们与经过充分研究的大肠杆菌噬菌体T4具有形态相似性和遗传同源性,但与T4彼此不同,它们具有许多遗传确定的特征,包括它们感染的细菌宿主,线性双链(ds)DNA基因组的大小以及蛋白质组的预测组成。在过去的几年中,已经对大约40种噬菌体的基因组进行了测序和注释,并在确定其多样性和进化中其他微生物基因组多样性的因素的背景下进行了比较。到目前为止,分析的T4亲属的基因组大小在〜160,000〜〜250,000个碱基对(bp)之间,是彼此镶嵌的,由它们之间的同源簇组成,散布着彼此之间遗传组成差异很大的片段。不同的噬菌体谱系。根据噬菌体T4和T4基因组编码的蛋白质的已知生物学和生化特性,预计这里审查的T4亲戚共享一个遗传核心,即“核心基因组”,该基因核心决定了其dsDNA染色体的结构设计,其独特之处。形态及其组装成传染原的过程(噬菌体形态发生)。核心基因组似乎是该噬菌体组中最古老的遗传成分,仅占典型T4相关噬菌体基因组总蛋白编码潜力的12-15%。存在于该共有核心之外的高度遗传异质性表明,涉及许多遗传资源的水平DNA转移在T4相关噬菌体的多样化及其在进化中扩散到广泛的细菌物种域中发挥了重要作用。我们讨论了可能影响这些噬菌体进化的一些因素和途径,并指出了它们的多样性与自然界中所有相互关联的dsDNA微生物基因组中通常观察到的多样性之间的相似之处。

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