首页> 外文期刊>Journal of plankton research >Contribution to the Themed Section: Advances in Plankton Modelling and Biodiversity Evaluation Flexible phytoplankton functional type (FlexPFT) model: size-scaling of traits and optimal growth
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Contribution to the Themed Section: Advances in Plankton Modelling and Biodiversity Evaluation Flexible phytoplankton functional type (FlexPFT) model: size-scaling of traits and optimal growth

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柔性浮游植物功能类型(FlexPFT)模型:性状的尺度缩放和最佳生长

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摘要

Recent studies have analysed valuable compilations of data for the size-scaling of phytoplankton traits, but these cannot be employed directly in most large-scale modelling studies, which typically do not explicitly resolve the relevant trait values. Although some recent large-scale modelling studies resolve species composition and sorting within communities, most do not account for the observed flexible response of phytoplankton communities, such as the dynamic acclimation often observed in laboratory experiments. In order to derive a simple yet flexible model of phytoplankton growth that can be useful for a wide variety of ocean modelling applications, we combine two trade-offs, one for growth and the other for nutrient uptake, under the optimality assumption, i.e. that intracellular resources are dynamically allocated to maximize growth rate. This yields an explicit equation for growth as a function of nutrient concentration and daily averaged irradiance. We furthermore show how with this model effective Monod parameter values depend on both the underlying trait values and environmental conditions. We apply this new model to two contrasting time-series observation sites, including idealized simulations of size diversity. The flexible model responds differently compared with an inflexible control, suggesting that acclimation by individual species could impact models of plankton diversity.
机译:最近的研究已经分析了有价值的数据集,用于浮游植物特征的规模定标,但是这些数据不能直接用于大多数大型建模研究中,这些研究通常不会明确解析相关的特征值。尽管最近进行的一些大规模建模研究解决了群落内物种的组成和分类问题,但大多数研究并未解决浮游植物群落所观察到的灵活反应,例如实验室实验中经常观察到的动态适应。为了得出一个简单而灵活的浮游植物生长模型,该模型可用于多种海洋建模应用,在最佳假设下,我们结合了两个权衡,一个用于增长,另一个用于养分吸收,即细胞内动态分配资源以最大化增长率。这样就得出了一个明确的生长方程,该方程是营养物浓度和日平均辐照度的函数。我们进一步展示了使用该模型的有效Monod参数值如何取决于基础特征值和环境条件。我们将此新模型应用于两个相对的时间序列观测站点,包括大小多样性的理想模拟。与不灵活的控制相比,灵活的模型反应不同,这表明单个物种的适应可能影响浮游生物的多样性模型。

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