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首页> 外文期刊>Frontiers in Marine Science >Resource Competition Affects Plankton Community Structure; Evidence from Trait-Based Modeling
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Resource Competition Affects Plankton Community Structure; Evidence from Trait-Based Modeling

机译:资源竞争影响普拉克斯州群落结构;来自特质的建模的证据

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摘要

Understanding the phenology of phytoplankton species is still a challenge and despite a lot of theoretical work on competition for ressources this process is under-represented in deterministic models. To study the main driver of the species selection, we thus used a trait-based model that keeps phenotypic variability through physiological trait parameterization. We next validate the results by using a key species, the toxic dinoflagellate Alexandrium minutum. Due to their monitoring, we show that harmful algae are ideal models for studying ecological niches and for contributing to this more global challenge. As a first step, a dimensionless model of an estuary (France) was built with water temperature and water exchanges deduced from a hydro-dynamic model. The biological parametrisation takes into account the size (from pico- to microphytoplankton) and the type of assimilation. The results show that temperature, competition for nutrients and dilution are important factors regulating the community structure and extit{Alexandrium minutum} dynamics (more especially the bloom initiation and magnitude). These drivers contribute to determine the ecological niche of A. minutum, to influence the shape of its blooms and to provide potential explanations of its interannual variability. This approach mainly introduce more flexibility of the community structure to study how environmental forcing could drive its evolution.
机译:了解浮游植物物种的候选物种仍然是一个挑战,尽管有很多关于Ressources竞争的理论工作,但这种过程在确定性模型中表示。为了研究物种选择的主要驱动器,我们使用基于特征的模型,通过生理性状参数化来保持表型变异性。我们接下来通过使用一个关键物种,毒性Dinoflagellate Alexandrium Ninutum验证结果。由于他们的监测,我们表明有害的藻类是研究生态利基的理想模型,并为更有全球挑战做出贡献。作为第一步,采用水温和从水电动力学模型推断的水温和水交换构成了一系列无量纲模型。生物学参数化考虑到尺寸(从微微至脑脊液)和同化的类型。结果表明,温度,营养和稀释的竞争是调节社区结构和 yexit {亚历山大学Minutum}动态的重要因素(更尤其是绽放启动和幅度)。这些司机有助于确定A.细胞的生态利基,影响其盛开的形状,并提供持续可变性的潜在解释。这种方法主要引入社区结构的更多灵活性,以研究环境强迫如何推动其演变。

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