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The Environment and Cyanophage Diversity: Insights From Environmental Sequencing of DNA Polymerase

机译:环境和噬菌体多样性:DNA聚合酶环境测序的启示

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摘要

Globally distributed and abundant cyanophages in the family Myoviridae have dsDNA genomes with variable gene content, including host-derived auxiliary metabolic genes (AMGs) that potentially can facilitate viral replication. However, it is not well understood how this variation in gene content interacts with environmental variables to shape cyanomyovirus communities. This project correlated the genetic repertoire of cyanomyoviruses with their phyologeny, and investigated cyanomyovirus ecotype distribution as a function of environmental conditions across locations and seasons. Reference cyanomyovirus genomes were compared for their overlap in gene content to infer phyologenetic distances, and these distances were compared to distances calculated based on DNA polymerase (gp43) gene sequences. In turn, gp43 partial gene sequences amplified from natural cyanophage communities were used to describe cyanomyovirus community composition and to assess the relationship between environmental variables. The results showed the following: (1) DNA polymerase gene phylogeny generally correlated with the similarity in gene content among reference cyanomyoviruses, and thus can be used to describe environmental cyanomyovirus communities; (2) spatial and seasonal patterns in cyanomyovirus communities were related to environmental variables; (3) salinity and temperature, combined with nutrient concentration were predictors of cyanomyovirus richness, diversity and community composition. This study shows that environmental variables shape viral communities by drawing on a diverse seed bank of viral genotypes. From these results it is evident that that viral ecotypes with their corresponding genetic repertoires underlie selection pressures. However, the mechanisms involved in selecting for specific viral genotypes remain to be fully understood.
机译:Myoviridae家族中分布全球的丰富噬菌体具有dsDNA基因组,其dsDNA基因组具有可变的基因含量,包括可能潜在地促进病毒复制的宿主衍生辅助代谢基因(AMG)。然而,人们对基因含量的这种变化如何与环境变量相互作用以塑造蓝藻病毒群落的认识还不是很清楚。该项目将蓝藻病毒的遗传库与其种系相关联,并调查了蓝藻病毒的生态型分布随环境条件在不同地点和季节的变化。比较了参照蓝藻病毒基因组的基因含量重叠情况,以推断植物遗传学距离,并将这些距离与基于DNA聚合酶(gp43)基因序列计算出的距离进行比较。反过来,从天然的噬菌体群落中扩增出的gp43部分基因序列被用来描述蓝藻病毒群落的组成并评估环境变量之间的关系。结果表明:(1)DNA聚合酶基因的系统发育通常与参考蓝藻病毒的基因含量相似性相关,因此可用于描述环境蓝藻病毒群落。 (2)蓝藻病毒群落的空间和季节模式与环境变量有关; (3)盐度和温度以及养分浓度是蓝藻病毒丰富度,多样性和群落组成的预测指标。这项研究表明,环境变量通过利用病毒基因型的多样化种子库来塑造病毒群落。从这些结果可以看出,病毒生态型及其相应的遗传库是选择压力的基础。但是,选择特定病毒基因型所涉及的机制仍有待充分理解。

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