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全球海洋巨型病毒的基因组和功能多样性扩展。

Expansion of the genomic and functional diversity of global ocean giant viruses.

作者信息

Minch Benjamin, Moniruzzaman Mohammad

机构信息

Department of Marine Biology and Ecology, Rosenstiel School of Marine, Atmospheric, and Earth Sciences, University of Miami, Miami, FL, USA.

出版信息

Npj Viruses. 2025 Apr 21;3(1):32. doi: 10.1038/s44298-025-00122-z.

Abstract

Giant viruses (GVs) play crucial roles in the global ocean microbial food web and biogeochemistry. Recent metagenomic advances have uncovered >1800 new GV genomes from the world's oceans. While this rapid increase in genomic information is impressive, it is nowhere close to the extensive genomic information available for other marine entities-e.g., prokaryotes and their "virome". We present 230 new high-quality GV genomes (genomes with 4 or more marker genes) and 398 partial genomes from nine global ocean datasets. Notably, we identified numerous GV genomes from the Baltic Sea, offering insights into their phylogenomics, metabolic potential, and environmental drivers in one of the largest brackish water ecosystems. We discovered new GV functions and identified a significant functional divide between the Imitervirales and Algavirales orders. Additionally, we evaluated factors affecting GV abundance through a case study on the Baltic Sea dataset. Our study significantly expands the marine GV genomic and functional diversity, broadening our understanding of their roles in the food web and biogeochemistry.

摘要

巨型病毒(GVs)在全球海洋微生物食物网和生物地球化学中发挥着关键作用。近期宏基因组学的进展已从世界海洋中发现了1800多个新的巨型病毒基因组。虽然基因组信息的这种快速增长令人印象深刻,但它与其他海洋生物(如原核生物及其“病毒群落”)所拥有的广泛基因组信息相比还差得很远。我们展示了来自九个全球海洋数据集的230个新的高质量巨型病毒基因组(具有4个或更多标记基因的基因组)和398个部分基因组。值得注意的是,我们从波罗的海鉴定出了大量巨型病毒基因组,为了解它们在最大的半咸水生态系统之一中的系统发育基因组学、代谢潜力和环境驱动因素提供了见解。我们发现了新的巨型病毒功能,并确定了模仿病毒目和藻类病毒目之间存在显著的功能差异。此外,我们通过对波罗的海数据集的案例研究评估了影响巨型病毒丰度的因素。我们的研究显著扩展了海洋巨型病毒的基因组和功能多样性,加深了我们对它们在食物网和生物地球化学中作用的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e056/12012013/a83b60cb6f93/44298_2025_122_Fig1_HTML.jpg

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