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Ecological Stoichiometry of Ocean Plankton
Annual Review of Marine Science ( IF 17.3 ) Pub Date : 2018-01-03 00:00:00 , DOI: 10.1146/annurev-marine-121916-063126
Allison R. Moreno 1 , Adam C. Martiny 1, 2
Affiliation  

Marine plankton elemental stoichiometric ratios can deviate from the Redfield ratio (106C:16N:1P); here, we examine physiological and biogeochemical mechanisms that lead to the observed variation across lineages, regions, and seasons. Many models of ecological stoichiometry blend together acclimative and adaptive responses to environmental conditions. These two pathways can have unique molecular mechanisms and stoichiometric outcomes, and we attempt to disentangle the two processes. We find that interactions between environmental conditions and cellular growth are key to understanding stoichiometric regulation, but the growth rates of most marine plankton populations are poorly constrained. We propose that specific physiological mechanisms have a strong impact on plankton and community stoichiometry in nutrient-rich environments, whereas biogeochemical interactions are important for the stoichiometry of the oligotrophic gyres. Finally, we outline key areas with missing information that is needed to advance understanding of the present and future ecological stoichiometry of ocean plankton.

中文翻译:


海洋浮游生物的生态化学计量

海洋浮游生物的元素化学计量比可以偏离雷德菲尔德比(106C:16N:1P);在这里,我们研究了生理和生物地球化学机制,这些机制导致观察到的世系,地区和季节之间的差异。生态化学计量学的许多模型将对环境条件的适应性和适应性响应融合在一起。这两个途径可能具有独特的分子机理和化学计量结果,我们试图弄清这两个过程。我们发现环境条件和细胞生长之间的相互作用是理解化学计量调节的关键,但是大多数海洋浮游生物种群的生长速度受到的约束很有限。我们提出,在营养丰富的环境中,特定的生理机制对浮游生物和群落化学计量有很大影响,而生物地球化学相互作用对贫营养型回旋的化学计量很重要。最后,我们概述了缺少信息的关键区域,这些信息是增进对当前和未来海洋浮游生物生态计量的了解所需要的。

更新日期:2018-01-03
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