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Modeling the temperature effect on the specific growth rate of phytoplankton: a review

机译:对浮游植物特异性生长速率的影响:综述

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Phytoplankton are key components of ecosystems. Their growth is deeply influenced by temperature. In a context of global change, it is important to precisely estimate the impact of temperature on these organisms at different spatial and temporal scales. Here, we review the existing deterministic models used to represent the effect of temperature on microbial growth that can be applied to phytoplankton. We first describe and provide a brief mathematical analysis of the models used in constant conditions to reproduce the thermal growth curve. We present the mechanistic assumptions concerning the effect of temperature on the cell growth and mortality, and discuss their limits. The coupling effect of temperature and other environmental factors such as light are then shown. Finally, we introduce the models taking into account the acclimation needed to thrive with temperature variations. The need for new thermal models, coupled with experimental validation, is argued.
机译:Phytoplankton是生态系统的关键组成部分。 它们的生长受到温度的深受影响。 在全球变化的背景下,重要的是在不同的空间和时间尺度上精确估计温度对这些生物的影响。 在这里,我们审查了现有的确定性模型,用于表示可以应用于浮游植物的微生物生长的温度的影响。 我们首先描述并提供对恒定条件中使用的模型来再现热生长曲线的简要分析。 我们提出了关于温度对细胞生长和死亡率影响的机制假设,并讨论了它们的限制。 然后显示了温度和其他环境因素的耦合效果,例如光。 最后,我们介绍了考虑到温度变化所需的适应性的模型。 据称,对新的热模型的需求与实验验证相结合。

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