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Marine viruses discovered via metagenomics shed light on viral strategies throughout the oceans

机译:通过宏基因组学发现的海洋病毒阐明了整个海洋的病毒策略

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摘要

Marine viruses are key drivers of host diversity, population dynamics and biogeochemical cycling and contribute to the daily flux of billions of tons of organic matter. Despite recent advancements in metagenomics, much of their biodiversity remains uncharacterized. Here we report a data set of 27,346 marine virome contigs that includes 44 complete genomes. These outnumber all currently known phage genomes in marine habitats and include members of previously uncharacterized lineages. We designed a new method for host prediction based on co-occurrence associations that reveals these viruses infect dominant members of the marine microbiome such as Prochlorococcus and Pelagibacter. A negative association between host abundance and the virus-to-host ratio supports the recently proposed Piggyback-the-Winner model of reduced phage lysis at higher host densities. An analysis of the abundance patterns of viruses throughout the oceans revealed how marine viral communities adapt to various seasonal, temperature and photic regimes according to targeted hosts and the diversity of auxiliary metabolic genes.
机译:海洋病毒是宿主多样性,种群动态和生物地球化学循环的主要驱动力,并且每天导致数十亿吨有机物质的流量。尽管宏基因组学最近取得了进步,但它们的许多生物多样性仍未表征。在这里,我们报告了27346例海洋病毒重叠群的数据集,其中包括44个完整的基因组。这些数量超过海洋生境中所有目前已知的噬菌体基因组,并且包括以前未鉴定的谱系成员。我们设计了一种基于共现关联的宿主预测新方法,该方法揭示了这些病毒感染海洋微生物组的主要成员,如原绿球菌和Pelagibacter。宿主丰度与病毒/宿主比率之间的负相关关系支持了最近提出的在高宿主密度下减少噬菌体裂解的Piggyback-the-Winner模型。对整个海洋中病毒的丰富模式进行的分析表明,根据目标宿主和辅助代谢基因的多样性,海洋病毒群落如何适应各种季节,温度和光合作用。

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