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Temporal and Spatial Signaling Mediating the Balance of the Plankton Microbiome
Annual Review of Marine Science ( IF 17.3 ) Pub Date : 2022-01-03 , DOI: 10.1146/annurev-marine-042021-012353
Yun Deng 1 , Marine Vallet 2 , Georg Pohnert 1, 2
Affiliation  

The annual patterns of plankton succession in the ocean determine ecological and biogeochemical cycles. The temporally fluctuating interplay between photosynthetic eukaryotes and the associated microbiota balances the composition of aquatic planktonic ecosystems. In addition to nutrients and abiotic factors, chemical signaling determines the outcome of interactions between phytoplankton and their associated microbiomes. Chemical mediators control essential processes, such as the development of key morphological, physiological, behavioral, and life-history traits during algal growth. These molecules thus impact species succession and community composition across time and space in processes that are highlighted in this review. We focus on spatial, seasonal, and physiological dynamics that occur during the early association of algae with bacteria, the exponential growth of a bloom, and its decline and recycling. We also discuss how patterns from field data and global surveys might be linked to the actions of metabolic markers in natural phytoplankton assemblages.

中文翻译:


介导浮游生物微生物组平衡的时空信号

海洋中浮游生物演替的年度模式决定了生态和生物地球化学循环。光合真核生物和相关微生物群之间随时间波动的相互作用平衡了水生浮游生态系统的组成。除了营养物质和非生物因素外,化学信号还决定了浮游植物与其相关微生物组之间相互作用的结果。化学介质控制基本过程,例如藻类生长过程中关键形态、生理、行为和生活史特征的发展。因此,这些分子会在本综述重点介绍的过程中跨时间和空间影响物种演替和群落组成。我们专注于藻类与细菌早期结合过程中发生的空间、季节和生理动态,花朵的指数增长,以及它的衰退和循环。我们还讨论了来自实地数据和全球调查的模式如何与天然浮游植物组合中代谢标记的作用相关联。

更新日期:2022-01-04
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