生物圈
生态系统
生态学
生物
气候变化
功能(生物学)
弹性(材料科学)
进化生物学
面子(社会学概念)
心理弹性
生物地球化学
功能生态学
生物多样性
环境伦理学
环境资源管理
生物进化
共同进化
环境变化
进化动力学
多样性(政治)
进化生态学
生态系统服务
抗性(生态学)
病毒进化
系统生物学
地理
人病毒体
强迫(数学)
病毒感染
作者
Marguerite V. Langwig,Karthik Anantharaman
标识
DOI:10.1146/annurev-marine-050625-093011
摘要
Viruses dominate the deep-ocean biosphere (>200-m depth) yet remain profoundly understudied. As the most abundant biological entities on Earth, they govern the geochemistry, evolution, and ecology of deep-sea prokaryotic and eukaryotic communities across a vast array of deep-sea biomes. The last two decades have witnessed revolutionary advances in deep-sea sampling, sequencing, and computational biology, illuminating viral diversity and function across Earth's largest active biome. Here, we synthesize emerging patterns in deep-sea viral ecology, biogeography, and evolutionary dynamics while identifying critical knowledge gaps and opportunities. This review is pertinent in the face of deep-sea mining and climate change, which threaten to fundamentally alter these ecosystems and cascade through virus-host networks in ways we cannot yet predict. Understanding viral control of deep-sea biogeochemistry and resistance to environmental perturbation is essential for predicting ecosystem resilience in the face of anthropogenic pressures and informing policy on one of Earth's final frontiers.
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