Diversity and distribution of viruses inhabiting the deepest ocean on Earth

生物 塔玛丘塔 生态学 基因组 生物多样性 生态系统 生态位 海洋生态系统 栖息地 古细菌 基因 遗传学
作者
Huahua Jian,Yi Yi,Jiahua Wang,Yali Hao,Mujie Zhang,Siyuan Wang,Canxing Meng,Yue Zhang,Hongmei Jing,Yinzhao Wang,Xiang Xiao
出处
期刊:The ISME Journal [Springer Nature]
卷期号:15 (10): 3094-3110 被引量:123
标识
DOI:10.1038/s41396-021-00994-y
摘要

Abstract As the most abundant biological entities on the planet, viruses significantly influence the overall functioning of marine ecosystems. The abundance, distribution, and biodiversity of viral communities in the upper ocean have been relatively well studied, but our understanding of viruses in the hadal biosphere remains poor. Here, we established the oceanic trench viral genome dataset (OTVGD) by analysing 19 microbial metagenomes derived from seawater and sediment samples of the Mariana, Yap, and Kermadec Trenches. The trench viral communities harbored remarkably high novelty, and they were predicted to infect ecologically important microbial clades, including Thaumarchaeota and Oleibacter. Significant inter-trench and intra-trench exchange of viral communities was proposed. Moreover, viral communities in different habitats (seawater/sediment and depth-stratified ocean zones) exhibited distinct niche-dependent distribution patterns and genomic properties. Notably, microbes and viruses in the hadopelagic seawater seemed to preferably adopt lysogenic lifestyles compared to those in the upper ocean. Furthermore, niche-specific auxiliary metabolic genes were identified in the hadal viral genomes, and a novel viral D-amino acid oxidase was functionally and phylogenetically characterized, suggesting the contribution of these genes in the utilization of refractory organic matter. Together, these findings highlight the genomic novelty, dynamic movement, and environment-driven diversification of viral communities in oceanic trenches, and suggest that viruses may influence the hadal ecosystem by reprogramming the metabolism of their hosts and modulating the community of keystone microbes.
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