School of Marine Sciences, Sun Yat-Sen University, Zhuhai, China.
Department of Ecology and Environmental Studies, The Water School, Florida Gulf Coast University, Fort Myers, FL, USA.
ISME J. 2021 Aug;15(8):2366-2378. doi: 10.1038/s41396-021-00932-y. Epub 2021 Mar 1.
In marine ecosystems, viruses exert control on the composition and metabolism of microbial communities, influencing overall biogeochemical cycling. Deep sea sediments associated with cold seeps are known to host taxonomically diverse microbial communities, but little is known about viruses infecting these microorganisms. Here, we probed metagenomes from seven geographically diverse cold seeps across global oceans to assess viral diversity, virus-host interaction, and virus-encoded auxiliary metabolic genes (AMGs). Gene-sharing network comparisons with viruses inhabiting other ecosystems reveal that cold seep sediments harbour considerable unexplored viral diversity. Most cold seep viruses display high degrees of endemism with seep fluid flux being one of the main drivers of viral community composition. In silico predictions linked 14.2% of the viruses to microbial host populations with many belonging to poorly understood candidate bacterial and archaeal phyla. Lysis was predicted to be a predominant viral lifestyle based on lineage-specific virus/host abundance ratios. Metabolic predictions of prokaryotic host genomes and viral AMGs suggest that viruses influence microbial hydrocarbon biodegradation at cold seeps, as well as other carbon, sulfur and nitrogen cycling via virus-induced mortality and/or metabolic augmentation. Overall, these findings reveal the global diversity and biogeography of cold seep viruses and indicate how viruses may manipulate seep microbial ecology and biogeochemistry.
在海洋生态系统中,病毒对微生物群落的组成和代谢起控制作用,影响整体的生物地球化学循环。与冷泉相关的深海沉积物中栖息着分类多样的微生物群落,但关于感染这些微生物的病毒知之甚少。在这里,我们探测了来自全球海洋七个地理位置不同的冷泉的宏基因组,以评估病毒多样性、病毒-宿主相互作用以及病毒编码的辅助代谢基因 (AMGs)。与栖息在其他生态系统中的病毒进行基因共享网络比较表明,冷泉沉积物中蕴藏着大量尚未开发的病毒多样性。大多数冷泉病毒表现出高度的特有性,而冷泉流体通量是病毒群落组成的主要驱动因素之一。基于谱系特异性病毒/宿主丰度比的预测,溶原性被预测为主要的病毒生活方式。对原核宿主基因组和病毒 AMGs 的代谢预测表明,病毒会影响冷泉微生物烃类生物降解以及通过病毒诱导的死亡和/或代谢增强来影响其他碳、硫和氮循环。总的来说,这些发现揭示了冷泉病毒的全球多样性和生物地理学,并表明病毒可能如何操纵冷泉微生物的生态和生物地球化学。