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首页> 外文期刊>Journal of plankton research >Contribution to the Themed Section: Advances in Plankton Modelling and Biodiversity Evaluation REVIEW The role of phytoplankton diversity in the emergent oceanic stoichiometry
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Contribution to the Themed Section: Advances in Plankton Modelling and Biodiversity Evaluation REVIEW The role of phytoplankton diversity in the emergent oceanic stoichiometry

机译:对主题部分的贡献:浮游生物建模和生物多样性评估的进展综述浮游植物多样性在新兴海洋化学计量中的作用

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摘要

Marine phytoplankton are a taxonomically and functionally diverse group of organisms that are key players in the most important biogeochemical cycles. Phytoplankton taxa show different resource utilization strategies (e.g. nutrient-uptake rates and cellular allocation) and traits. Therefore, acknowledging this diversity is crucial to understanding how elemental cycles operate, including the origin and dynamics of elemental ratios. In this paper, we focus on trait-based models as tools to study the role of phytoplankton diversity in the stoichiometric phenomenology observed in the laboratory and in the open ocean. We offer a compilation of known empirical results on stoichiometry and summarize how trait-based approaches have attempted to replicate these results. By contrasting the different ecological and evolutionary approaches available in the literature, we explore the strengths and limitations of the existing models. We thus try to identify existing gaps and challenges, and point to potential new directions that can be explored to fill these gaps. We aim to highlight the potential of including diversity explicitly in our modeling approaches, which can help us gain important knowledge about changes in local and global stoichiometric patterns.
机译:海洋浮游植物是生物分类学和功能多样化的一组生物,它们是最重要的生物地球化学循环中的关键角色。浮游植物分类群显示出不同的资源利用策略(例如养分吸收率和细胞分配)和性状。因此,认识到这种多样性对于理解元素周期如何运行至关重要,包括元素比率的起源和动态。在本文中,我们将重点放在基于特征的模型上,以研究浮游植物多样性在实验室和远洋海洋中观察到的化学计量现象中的作用。我们提供了有关化学计量的已知经验结果的汇总,并总结了基于特征的方法如何尝试复制这些结果。通过对比文献中可用的不同生态学和进化方法,我们探索了现有模型的优势和局限性。因此,我们试图找出现有的差距和挑战,并指出可以探索以填补这些差距的潜在新方向。我们旨在强调在我们的建模方法中明确包含多样性的潜力,这可以帮助我们获得有关本地和全球化学计量模式变化的重要知识。

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