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发现了几千种高度多样化的环状 DNA 病毒。

Discovery of several thousand highly diverse circular DNA viruses.

机构信息

Lab of Cellular Oncology, National Cancer Institute, National Institutes of Health, Bethesda, United States.

Metaorganism Immunity Section, Laboratory of Immune System Biology, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, United States.

出版信息

Elife. 2020 Feb 4;9:e51971. doi: 10.7554/eLife.51971.

Abstract

Although millions of distinct virus species likely exist, only approximately 9000 are catalogued in GenBank's RefSeq database. We selectively enriched for the genomes of circular DNA viruses in over 70 animal samples, ranging from nematodes to human tissue specimens. A bioinformatics pipeline, Cenote-Taker, was developed to automatically annotate over 2500 complete genomes in a GenBank-compliant format. The new genomes belong to dozens of established and emerging viral families. Some appear to be the result of previously undescribed recombination events between ssDNA and ssRNA viruses. In addition, hundreds of circular DNA elements that do not encode any discernable similarities to previously characterized sequences were identified. To characterize these 'dark matter' sequences, we used an artificial neural network to identify candidate viral capsid proteins, several of which formed virus-like particles when expressed in culture. These data further the understanding of viral sequence diversity and allow for high throughput documentation of the virosphere.

摘要

虽然可能存在数百万种不同的病毒物种,但 GenBank 的 RefSeq 数据库中仅约有 9000 种被编目。我们从线虫到人体组织标本等 70 多种动物样本中选择性富集了圆形 DNA 病毒的基因组。开发了一种名为 Cenote-Taker 的生物信息学管道,以自动注释符合 GenBank 格式的 2500 多个完整基因组。这些新的基因组属于数十个已建立和新兴的病毒家族。其中一些似乎是 ssDNA 和 ssRNA 病毒之间以前未描述的重组事件的结果。此外,还鉴定了数百个不编码任何先前表征序列的可识别相似性的圆形 DNA 元件。为了描述这些“暗物质”序列,我们使用人工神经网络来识别候选病毒衣壳蛋白,其中一些在培养中表达时形成了类似病毒的颗粒。这些数据进一步加深了对病毒序列多样性的理解,并允许高通量记录病毒圈。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9f2/7000223/0bac6847e88d/elife-51971-fig1.jpg

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