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Viral recombination blurs taxonomic lines: examination of single-stranded DNA viruses in a wastewater treatment plant

机译:病毒重组模糊了分类标准:检查废水处理厂中的单链DNA病毒

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摘要

Understanding the structure and dynamics of microbial communities, especially those of economic concern, is of paramount importance to maintaining healthy and efficient microbial communities at agricultural sites and large industrial cultures, including bioprocessors. Wastewater treatment plants are large bioprocessors which receive water from multiple sources, becoming reservoirs for the collection of many viral families that infect a broad range of hosts. To examine this complex collection of viruses, full-length genomes of circular ssDNA viruses were isolated from a wastewater treatment facility using a combination of sucrose-gradient size selection and rolling-circle amplification and sequenced on an Illumina MiSeq. Single-stranded DNA viruses are among the least understood groups of microbial pathogens due to genomic biases and culturing difficulties, particularly compared to the larger, more often studied dsDNA viruses. However, the group contains several notable well-studied examples, including agricultural pathogens which infect both livestock and crops (Circoviridae and Geminiviridae), and model organisms for genetics and evolution studies (Microviridae). Examination of the collected viral DNA provided evidence for 83 unique genotypic groupings, which were genetically dissimilar to known viral types and exhibited broad diversity within the community. Furthermore, although these genomes express similarities to known viral families, such as Circoviridae, Geminiviridae, and Microviridae, many are so divergent that they may represent new taxonomic groups. This study demonstrated the efficacy of the protocol for separating bacteria and large viruses from the sought after ssDNA viruses and the ability to use this protocol to obtain an in-depth analysis of the diversity within this group.
机译:了解微生物群落的结构和动态,尤其是那些与经济有关的微生物,对于在农业场所和包括生物处理器在内的大型工业文化中维持健康高效的微生物群落至关重要。废水处理厂是大型的生物处理器,可以从多种来源接收水,成为收集许多感染宿主的许多病毒科的蓄水池。为了检查这种复杂的病毒集合,使用蔗糖梯度大小选择和滚环扩增相结合,从废水处理设施中分离了环状ssDNA病毒的全长基因组,并在Illumina MiSeq上进行了测序。由于基因组偏倚和培养困难,单链DNA病毒是微生物病原体中最鲜为人知的组,特别是与更大,更经常研究的dsDNA病毒相比。但是,该小组包含了几个值得充分研究的实例,包括感染牲畜和农作物的农业病原体(圆环病毒科和双子病毒科),以及用于遗传和进化研究的模型生物(微病毒科)。对收集的病毒DNA的检查为83个独特的基因型分组提供了证据,这些分组在遗传上与已知的病毒类型不同,并且在社区内表现出广泛的多样性。此外,尽管这些基因组与已知的病毒科(如圆环病毒科,双子病毒科和微病毒科)表达相似性,但它们之间的差异是如此之大,以至于它们代表了新的分类学组。这项研究证明了该协议从受追捧的ssDNA病毒中分离细菌和大病毒的功效以及使用该协议获得对该组内多样性的深入分析的能力。

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