人病毒体
门
核糖核酸
生物
进化生物学
分类学(生物学)
系统发育学
遗传学
病毒进化
扁虫
核糖体RNA
计算生物学
生态学
基因组
基因
作者
Ahmed A. Zayed,James M. Wainaina,Guillermo Domínguez‐Huerta,Éric Pelletier,Jiarong Guo,Mohamed Mohssen,Funing Tian,Akbar Adjie Pratama,Benjamin Bolduc,Olivier Zablocki,Dylan Cronin,Lindsey Solden,Erwan Delage,Adriana Alberti,Jean‐Marc Aury,Quentin Carradec,Corinne Da Silva,Karine Labadie,Julie Poulain,Hans‐Joachim Ruscheweyh
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2022-04-07
卷期号:376 (6589): 156-162
被引量:256
标识
DOI:10.1126/science.abm5847
摘要
Whereas DNA viruses are known to be abundant, diverse, and commonly key ecosystem players, RNA viruses are insufficiently studied outside disease settings. In this study, we analyzed ≈28 terabases of Global Ocean RNA sequences to expand Earth's RNA virus catalogs and their taxonomy, investigate their evolutionary origins, and assess their marine biogeography from pole to pole. Using new approaches to optimize discovery and classification, we identified RNA viruses that necessitate substantive revisions of taxonomy (doubling phyla and adding >50% new classes) and evolutionary understanding. "Species"-rank abundance determination revealed that viruses of the new phyla "Taraviricota," a missing link in early RNA virus evolution, and "Arctiviricota" are widespread and dominant in the oceans. These efforts provide foundational knowledge critical to integrating RNA viruses into ecological and epidemiological models.
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