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Virioplankton assemblages from challenger deep, the deepest place in the oceans

Hadal ocean biosphere, that is, the deepest part of the world’s oceans, harbors a unique microbial community, suggesting a potential uncovered co-occurring virioplankton assemblage. Herein, we reveal the unique virioplankton assemblages of the Challenger Deep, comprising 95,813 non-redundant viral c...

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Autores principales: Gao, Chen, Liang, Yantao, Jiang, Yong, Paez-Espino, David, Han, Meiaoxue, Gu, Chengxiang, Wang, Meiwen, Yang, Yumei, Liu, Fengjiao, Yang, Qingwei, Gong, Zheng, Zhang, Xinran, Luo, Zhixiang, He, Hui, Guo, Cui, Shao, Hongbing, Zhou, Chun, Shi, Yang, Xin, Yu, Xing, Jinyan, Tang, Xuexi, Qin, Qilong, Zhang, Yu-Zhong, He, Jianfeng, Jiao, Nianzhi, McMinn, Andrew, Tian, Jiwei, Suttle, Curtis A., Wang, Min
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9356048/
https://www.ncbi.nlm.nih.gov/pubmed/35942087
http://dx.doi.org/10.1016/j.isci.2022.104680
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author Gao, Chen
Liang, Yantao
Jiang, Yong
Paez-Espino, David
Han, Meiaoxue
Gu, Chengxiang
Wang, Meiwen
Yang, Yumei
Liu, Fengjiao
Yang, Qingwei
Gong, Zheng
Zhang, Xinran
Luo, Zhixiang
He, Hui
Guo, Cui
Shao, Hongbing
Zhou, Chun
Shi, Yang
Xin, Yu
Xing, Jinyan
Tang, Xuexi
Qin, Qilong
Zhang, Yu-Zhong
He, Jianfeng
Jiao, Nianzhi
McMinn, Andrew
Tian, Jiwei
Suttle, Curtis A.
Wang, Min
author_facet Gao, Chen
Liang, Yantao
Jiang, Yong
Paez-Espino, David
Han, Meiaoxue
Gu, Chengxiang
Wang, Meiwen
Yang, Yumei
Liu, Fengjiao
Yang, Qingwei
Gong, Zheng
Zhang, Xinran
Luo, Zhixiang
He, Hui
Guo, Cui
Shao, Hongbing
Zhou, Chun
Shi, Yang
Xin, Yu
Xing, Jinyan
Tang, Xuexi
Qin, Qilong
Zhang, Yu-Zhong
He, Jianfeng
Jiao, Nianzhi
McMinn, Andrew
Tian, Jiwei
Suttle, Curtis A.
Wang, Min
author_sort Gao, Chen
collection PubMed
description Hadal ocean biosphere, that is, the deepest part of the world’s oceans, harbors a unique microbial community, suggesting a potential uncovered co-occurring virioplankton assemblage. Herein, we reveal the unique virioplankton assemblages of the Challenger Deep, comprising 95,813 non-redundant viral contigs from the surface to the hadal zone. Almost all of the dominant viral contigs in the hadal zone were unclassified, potentially related to Alteromonadales and Oceanospirillales. 2,586 viral auxiliary metabolic genes from 132 different KEGG orthologous groups were mainly related to the carbon, nitrogen, sulfur, and arsenic metabolism. Lysogenic viral production and integrase genes were augmented in the hadal zone, suggesting the prevalence of viral lysogenic life strategy. Abundant rve genes in the hadal zone, which function as transposase in the caudoviruses, further suggest the prevalence of viral-mediated horizontal gene transfer. This study provides fundamental insights into the virioplankton assemblages of the hadal zone, reinforcing the necessity of incorporating virioplankton into the hadal biogeochemical cycles.
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spelling pubmed-93560482022-08-07 Virioplankton assemblages from challenger deep, the deepest place in the oceans Gao, Chen Liang, Yantao Jiang, Yong Paez-Espino, David Han, Meiaoxue Gu, Chengxiang Wang, Meiwen Yang, Yumei Liu, Fengjiao Yang, Qingwei Gong, Zheng Zhang, Xinran Luo, Zhixiang He, Hui Guo, Cui Shao, Hongbing Zhou, Chun Shi, Yang Xin, Yu Xing, Jinyan Tang, Xuexi Qin, Qilong Zhang, Yu-Zhong He, Jianfeng Jiao, Nianzhi McMinn, Andrew Tian, Jiwei Suttle, Curtis A. Wang, Min iScience Article Hadal ocean biosphere, that is, the deepest part of the world’s oceans, harbors a unique microbial community, suggesting a potential uncovered co-occurring virioplankton assemblage. Herein, we reveal the unique virioplankton assemblages of the Challenger Deep, comprising 95,813 non-redundant viral contigs from the surface to the hadal zone. Almost all of the dominant viral contigs in the hadal zone were unclassified, potentially related to Alteromonadales and Oceanospirillales. 2,586 viral auxiliary metabolic genes from 132 different KEGG orthologous groups were mainly related to the carbon, nitrogen, sulfur, and arsenic metabolism. Lysogenic viral production and integrase genes were augmented in the hadal zone, suggesting the prevalence of viral lysogenic life strategy. Abundant rve genes in the hadal zone, which function as transposase in the caudoviruses, further suggest the prevalence of viral-mediated horizontal gene transfer. This study provides fundamental insights into the virioplankton assemblages of the hadal zone, reinforcing the necessity of incorporating virioplankton into the hadal biogeochemical cycles. Elsevier 2022-06-27 /pmc/articles/PMC9356048/ /pubmed/35942087 http://dx.doi.org/10.1016/j.isci.2022.104680 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Gao, Chen
Liang, Yantao
Jiang, Yong
Paez-Espino, David
Han, Meiaoxue
Gu, Chengxiang
Wang, Meiwen
Yang, Yumei
Liu, Fengjiao
Yang, Qingwei
Gong, Zheng
Zhang, Xinran
Luo, Zhixiang
He, Hui
Guo, Cui
Shao, Hongbing
Zhou, Chun
Shi, Yang
Xin, Yu
Xing, Jinyan
Tang, Xuexi
Qin, Qilong
Zhang, Yu-Zhong
He, Jianfeng
Jiao, Nianzhi
McMinn, Andrew
Tian, Jiwei
Suttle, Curtis A.
Wang, Min
Virioplankton assemblages from challenger deep, the deepest place in the oceans
title Virioplankton assemblages from challenger deep, the deepest place in the oceans
title_full Virioplankton assemblages from challenger deep, the deepest place in the oceans
title_fullStr Virioplankton assemblages from challenger deep, the deepest place in the oceans
title_full_unstemmed Virioplankton assemblages from challenger deep, the deepest place in the oceans
title_short Virioplankton assemblages from challenger deep, the deepest place in the oceans
title_sort virioplankton assemblages from challenger deep, the deepest place in the oceans
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9356048/
https://www.ncbi.nlm.nih.gov/pubmed/35942087
http://dx.doi.org/10.1016/j.isci.2022.104680
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