Tikhonova I A, Li B L, Malchow H, Medvinskiĭ A B
Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences, Pushchino, Moscow Region, 142290 Russia.
Biofizika. 2003 Sep-Oct;48(5):891-9.
We use a conceptual mathematical reaction-diffusion model to investigate the mechanisms of spatial structure formation and complex temporal dynamics of plankton in a heterogeneous environment. We take into account basic trophic interactions, namely, "prey-predator" interactions between phytoplankton, zooplankton, and fish in upper layers of natural waters. We consider plankton as a passive contaminant in turbulent waters. We show that plankton structure formation can result from the difference in phytoplankton growth rate in neighboring habitats. Phytoplankton and zooplankton biomass is shown to undergo both regular and chaotic oscillations. The fish predation rate substantially affects the spatial and temporal dynamics of plankton in a heterogeneous environment.
我们使用一个概念性的数学反应扩散模型来研究浮游生物在异质环境中空间结构形成和复杂时间动态的机制。我们考虑了基本的营养相互作用,即在天然水体上层浮游植物、浮游动物和鱼类之间的“捕食者-猎物”相互作用。我们将浮游生物视为湍流水中的被动污染物。我们表明,浮游生物结构的形成可能源于相邻栖息地浮游植物生长速率的差异。浮游植物和浮游动物的生物量呈现出规则和混沌的振荡。鱼类的捕食率对异质环境中浮游生物的时空动态有重大影响。