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A novel lineage of myoviruses infecting cyanobacteria is widespread in the oceans

机译:感染蓝细菌的一种新的肌病毒谱系在海洋中广泛传播

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摘要

Viruses infecting bacteria (phages) are thought to greatly impact microbial population dynamics as well as the genome diversity and evolution of their hosts. Here we report on the discovery of a novel lineage of tailed dsDNA phages belonging to the family Myoviridae and describe its first representative, S-TIM5, that infects the ubiquitous marine cyanobacterium, Synechococcus. The genome of this phage encodes an entirely unique set of structural proteins not found in any currently known phage, indicating that it uses lineage-specific genes for virion morphogenesis and represents a previously unknown lineage of myoviruses. Furthermore, among its distinctive collection of replication and DNA metabolism genes, it carries a mitochondrial-like DNA polymerase gene, providing strong evidence for the bacteriophage origin of the mitochondrial DNA polymerase. S-TIM5 also encodes an array of bacterial-like metabolism genes commonly found in phages infecting cyanobacteria including photosynthesis, carbon metabolism and phosphorus acquisition genes. This suggests a common gene pool and gene swapping of cyanophage-specific genes among different phage lineages despite distinct sets of structural and replication genes. All cytosines following purine nucleotides are methylated in the S-TIM5 genome, constituting a unique methyla-tion pattern that likely protects the genome from nuclease degradation. This phage is abundant in the Red Sea and S-TIM5 gene homologs are widespread in the oceans. This unusual phage type is thus likely to be an important player in the oceans, impacting the population dynamics and evolution of their primary producing cyanobacterial hosts.
机译:人们认为感染细菌(噬菌体)的病毒会极大地影响微生物种群动态以及宿主基因组多样性和进化。在这里,我们报告了属于肌病毒科的新型双链dsDNA噬菌体谱系的发现,并描述了其第一个代表S-TIM5,它感染了无处不在的海洋蓝藻细菌Synechococcus。该噬菌体的基因组编码在任何当前已知的噬菌体中均未发现的一组完全独特的结构蛋白,这表明它使用谱系特异性基因进行病毒体形态发生,并代表了以前未知的肌病毒谱系。此外,在其独特的复制和DNA代谢基因集合中,它带有线粒体样DNA聚合酶基因,为线粒体DNA聚合酶的噬菌体起源提供了有力的证据。 S-TIM5还编码常见于感染蓝细菌的噬菌体中的一系列细菌样代谢基因,包括光合作用,碳代谢和磷获取基因。这表明尽管有不同的结构和复制基因集,但在不同噬菌体谱系之间有共同的基因库和蓝噬细胞特异性基因的基因交换。嘌呤核苷酸后的所有胞嘧啶在S-TIM5基因组中被甲基化,构成独特的甲基化模式,可能保护基因组免受核酸酶降解。该噬菌体在红海中丰富,并且S-TIM5基因同源物在海洋中广泛分布。因此,这种不寻常的噬菌体类型可能是海洋中的重要角色,影响了其主要产生蓝藻宿主的种群动态和进化。

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    Faculty of Biology, Technion-lsrael Institute of Technology, Technion City, Haifa 32000, Israel;

    Faculty of Biology, Technion-lsrael Institute of Technology, Technion City, Haifa 32000, Israel;

    Faculty of Biology, Technion-lsrael Institute of Technology, Technion City, Haifa 32000, Israel;

    Faculty of Biology, Technion-lsrael Institute of Technology, Technion City, Haifa 32000, Israel;

    Faculty of Biology, Technion-lsrael Institute of Technology, Technion City, Haifa 32000, Israel;

    Faculty of Biology, Technion-lsrael Institute of Technology, Technion City, Haifa 32000, Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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