原绿藻
生物
碳循环
透光带
海洋噬菌体
生态学
固碳
异养
蓝藻
浮游植物
联合球菌
细菌
生态系统
营养物
二氧化碳
遗传学
作者
Lanlan Cai,Haofu Li,Junwei Deng,Ruiqian Zhou,Qinglu Zeng
标识
DOI:10.1016/j.tim.2023.08.011
摘要
The unicellular picocyanobacterium Prochlorococcus is the most abundant photoautotroph and contributes substantially to global CO2 fixation. In the vast euphotic zones of the open ocean, Prochlorococcus converts CO2 into organic compounds and supports diverse organisms, forming an intricate network of interactions that regulate the magnitude of carbon cycling and storage in the ocean. An understanding of the biological interactions with Prochlorococcus is critical for accurately estimating the contributions of Prochlorococcus and interacting organisms to the marine carbon cycle. This review synthesizes the primary production contributed by Prochlorococcus in the global ocean. We outline recent progress on the interactions of Prochlorococcus with heterotrophic bacteria, phages, and grazers that multifacetedly determine Prochlorococcus carbon production and fate. We discuss that climate change might affect the biological interactions with Prochlorococcus and thus the marine carbon cycle.
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