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From deep sequencing to viral tagging: Recent advances in viral metagenomics

机译:从深度测序到病毒标记:病毒宏基因组学的最新进展

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Culture-independent high-throughput sequencing has provided unprecedented insights into microbial ecology, particularly for Earth's most ubiquitous and diverse inhabitants the viruses. A plethora of methods now exist for amplifying the vanishingly small amounts of nucleic acids in natural viral communities in order to sequence them, and sequencing depth is now so great that viral genomes can be detected and assembled even amid large concentrations of non-viral DNA. Complementing these advances in amplification and sequencing is the ability to physically link fluorescently labeled viruses to their host cells via high-throughput flow sorting. Sequencing of such isolated virushost pairs facilitates cultivation-independent exploration of the natural host range of viruses. Within the next decade, as these technologies become widespread, we can expect to see a systematic expansion of our knowledge of viruses and their hosts.
机译:与文化无关的高通量测序已为微生物生态学提供了空前的见解,尤其是对于地球上最普遍和最多样化的居民而言,病毒。现在存在大量的方法来扩增天然病毒群落中消失的少量核酸以对其进行测序,而且测序深度如此之大,以至即使在高浓度的非病毒DNA中也可以检测和组装病毒基因组。扩增和测序技术的这些进步是对荧光标记病毒通过高通量流分类物理连接到其宿主细胞的补充。这种分离的病毒宿主对的测序促进了病毒天然宿主范围的非培养独立探索。在接下来的十年中,随着这些技术的普及,我们有望看到我们对病毒及其宿主知识的系统扩展。

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