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营养供应对海洋浮游植物细胞大小演化的影响。

Effect of nutrient supply on cell size evolution of marine phytoplankton.

机构信息

School of Mathematics and Statistics, Northeast Normal University, Changchun, Jilin 130024, China.

College of Integrative Sciences and Arts, Arizona State University, Mesa, AZ 85212, USA.

出版信息

Math Biosci Eng. 2023 Jan;20(3):4714-4740. doi: 10.3934/mbe.2023218. Epub 2022 Dec 29.

Abstract

The variation of nutrient supply not only leads to the differences in the phytoplankton biomass and primary productivity but also induces the long-term phenotypic evolution of phytoplankton. It is widely accepted that marine phytoplankton follows Bergmann's Rule and becomes smaller with climate warming. Compared with the direct effect of increasing temperature, the indirect effect via nutrient supply is considered to be an important and dominant factor in the reduction of phytoplankton cell size. In this paper, a size-dependent nutrient-phytoplankton model is developed to explore the effects of nutrient supply on the evolutionary dynamics of functional traits associated with phytoplankton size. The ecological reproductive index is introduced to investigate the impacts of input nitrogen concentration and vertical mixing rate on the persistence of phytoplankton and the distribution of cell size. In addition, by applying the adaptive dynamics theory, we study the relationship between nutrient input and the evolutionary dynamics of phytoplankton. The results show that input nitrogen concentration and vertical mixing rate have significant effects on the cell size evolution of phytoplankton. Specifically, cell size tends to increase with the input nutrient concentration, as does the diversity of cell sizes. In addition, a single-peaked relationship between vertical mixing rate and cell size is observed. When the vertical mixing rate is too low or too high, only small individuals are dominant in the water column. When the vertical mixing rate is moderate, large individuals can coexist with small individuals, so the diversity of phytoplankton is elevated. We predict that reduced intensity of nutrient input due to climate warming will lead to a trend towards smaller cell size and will reduce the diversity of phytoplankton.

摘要

养分供应的变化不仅导致浮游植物生物量和初级生产力的差异,还会诱导浮游植物的长期表型进化。人们普遍认为,海洋浮游植物遵循伯格曼法则,随着气候变暖而变小。与温度升高的直接影响相比,通过养分供应产生的间接影响被认为是减少浮游植物细胞大小的一个重要和主导因素。本文建立了一个基于尺寸的养分-浮游植物模型,以探讨养分供应对与浮游植物尺寸相关的功能特征进化动态的影响。引入生态生殖指数来研究输入氮浓度和垂直混合率对浮游植物持久性和细胞尺寸分布的影响。此外,通过应用适应性动态理论,我们研究了养分输入与浮游植物进化动态之间的关系。结果表明,输入氮浓度和垂直混合率对浮游植物的细胞尺寸进化有显著影响。具体来说,细胞尺寸随着输入养分浓度的增加而增加,细胞尺寸的多样性也随之增加。此外,还观察到垂直混合率与细胞尺寸之间存在单峰关系。当垂直混合率过低或过高时,水柱中仅占主导地位的是小个体。当垂直混合率适中时,大个体和小个体可以共存,因此浮游植物的多样性会提高。我们预测,由于气候变暖导致的养分输入强度降低将导致细胞尺寸变小的趋势,并降低浮游植物的多样性。

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