浮游生物
海洋学
环境科学
联合球菌
碳纤维
浮游植物
丰度(生态学)
总有机碳
深海
浮游动物
碳循环
蓝藻
营养物
生态学
地质学
生物
细菌
生态系统
古生物学
复合数
材料科学
复合材料
作者
Lionel Guidi,Samuel Chaffron,Lucie Bittner,Damien Eveillard,Abdelhalim Larhlimi,Simon Roux,Youssef Darzi,Stéphane Audic,Léo Berline,Jennifer R. Brum,Luís Pedro Coelho,J. Cesar Ignacio‐Espinoza,Shruti Malviya,Shinichi Sunagawa,Céline Dimier,Stefanie Kandels‐Lewis,Marc Picheral,Julie Poulain,Sarah Searson,Lars Stemmann
出处
期刊:Nature
[Nature Portfolio]
日期:2016-02-10
卷期号:532 (7600): 465-470
被引量:771
摘要
The biological carbon pump is the process by which CO2 is transformed to organic carbon via photosynthesis, exported through sinking particles, and finally sequestered in the deep ocean. While the intensity of the pump correlates with plankton community composition, the underlying ecosystem structure driving the process remains largely uncharacterized. Here we use environmental and metagenomic data gathered during the Tara Oceans expedition to improve our understanding of carbon export in the oligotrophic ocean. We show that specific plankton communities, from the surface and deep chlorophyll maximum, correlate with carbon export at 150 m and highlight unexpected taxa such as Radiolaria and alveolate parasites, as well as Synechococcus and their phages, as lineages most strongly associated with carbon export in the subtropical, nutrient-depleted, oligotrophic ocean. Additionally, we show that the relative abundance of a few bacterial and viral genes can predict a significant fraction of the variability in carbon export in these regions.
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