论文标题

浮游植物模型群落中的局部种内聚集:发生的空间尺度和对共存的影响

Local intraspecific aggregation in phytoplankton model communities: spatial scales of occurrence and implications for coexistence

论文作者

Picoche, Coralie, Young, William R., Barraquand, Frédéric

论文摘要

尽管有混合种群混合的平均场模型,但经常用多种浮游植物物种的共存,尽管它们依赖相似的资源。实际上,浮游植物的观察表明,在所有尺度上,包括几个人的规模。局部空间聚集可能会阻碍竞争性排斥,因为个人主要与自己物种的其他个体进行互动,而不是来自不同物种的竞争者。为了评估微观空间聚集如何解释浮游植物多样性的维持,需要在流体动力环境中对细胞的基于个体的多物种表示。我们在Kolmogorov量表上制定了浮游植物种群动力学的三维和多种基于个人的模型。通过与点过程理论相关的空间矩方程的模拟和衍生文量,研究了该模型。空间力矩方程在理论和模拟之间显示出良好的匹配。我们针对大型和小型浮游植物的生态和物理特征来参数化模型。将潜在相互作用的区域定义为营养耗竭量之间的重叠,我们表明局部物种组成(在可能的相互作用范围内)取决于浮游植物的大小类别。在小型浮游植物中,个体仍然保留在大多数单特异性簇中。因此,空间结构有利于对小浮游植物的特异性间相互作用,从而有助于共存。大型浮游植物细胞社区似乎更混杂。尽管某些小规模的自组织空间结构仍然存在并可能影响共存机制,但可能需要探索其他因素,以解释大型浮游植物中的多样性维持。

The coexistence of multiple phytoplankton species despite their reliance on similar resources is often explained with mean-field models assuming mixed populations. In reality, observations of phytoplankton indicate spatial aggregation at all scales, including at the scale of a few individuals. Local spatial aggregation can hinder competitive exclusion since individuals then interact mostly with other individuals of their own species, rather than competitors from different species. To evaluate how microscale spatial aggregation might explain phytoplankton diversity maintenance, an individual-based, multispecies representation of cells in a hydrodynamic environment is required. We formulate a three-dimensional and multispecies individual-based model of phytoplankton population dynamics at the Kolmogorov scale. The model is studied through both simulations and the derivation of spatial moment equations, in connection with point process theory. The spatial moment equations show a good match between theory and simulations. We parameterized the model based on phytoplankters' ecological and physical characteristics, for both large and small phytoplankton. Defining a zone of potential interactions as the overlap between nutrient depletion volumes, we show that local species composition -- within the range of possible interactions -- depends on the size class of phytoplankton. In small phytoplankton, individuals remain in mostly monospecific clusters. Spatial structure therefore favours intra- over inter-specific interactions for small phytoplankton, contributing to coexistence. Large phytoplankton cell neighbourhoods appear more mixed. Although some small-scale self-organizing spatial structure remains and could influence coexistence mechanisms, other factors may need to be explored to explain diversity maintenance in large phytoplankton.

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