Zooplankton seasonal vertical migration in an optimality-based plankton ecosystem model

IF 1.9 3区 环境科学与生态学 Q2 MARINE & FRESHWATER BIOLOGY Journal of Plankton Research Pub Date : 2024-04-27 DOI:10.1093/plankt/fbae016
Michal Grossowicz, Markus Pahlow
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Abstract

Several species from various zooplankton taxa perform seasonal vertical migrations (SVM) of typically several hundred meters between the surface layer and overwintering depths, particularly in high-latitude regions. We use OPtimality-based PLAnkton (OPPLA) ecosystem model) to simulate SVM behavior in zooplankton in the Labrador Sea. Zooplankton in OPPLA is a generic functional group without life cycle, which facilitates analyzing SVM evolutionary stability and interactions between SVM and the plankton ecosystem. A sensitivity analysis of SVM-related parameters reveals that SVM can amplify the seasonal variations of phytoplankton and zooplankton and enhance the reduction of summer surface nutrient concentrations. SVM is often explained as a strategy to reduce exposure to visual predators during winter. We find that species doing SVM can persist and even dominate the summer-time zooplankton community, even in the presence of Stayers, which have the same traits as the migrators, but do not perform SVM. The advantage of SVM depends strongly on the timing of the seasonal migrations, particularly the day of ascent. The presence of higher (visual) predators tends to suppress the Stayers in our simulations, whereas the SVM strategy can persist in the presence of non-migrating species even without higher predators.
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基于优化的浮游生物生态系统模型中的浮游动物季节性垂直迁移
各种浮游动物类群中的一些物种在表层和越冬深度之间进行季节性垂直洄游(SVM),通常洄游距离达数百米,尤其是在高纬度地区。我们使用基于 OPtimality 的浮游动物生态系统模型(OPPLA)来模拟拉布拉多海浮游动物的 SVM 行为。OPPLA 中的浮游动物是一个没有生命周期的通用功能群,这有助于分析 SVM 的进化稳定性以及 SVM 与浮游生物生态系统之间的相互作用。对 SVM 相关参数的敏感性分析表明,SVM 可以放大浮游植物和浮游动物的季节性变化,并增强夏季地表营养浓度的降低。SVM通常被解释为一种在冬季减少暴露于视觉捕食者的策略。我们发现,进行SVM的物种可以持续存在,甚至在夏季浮游动物群落中占主导地位,即使在Stayers存在的情况下也是如此,Stayers具有与迁徙者相同的特征,但不进行SVM。SVM的优势在很大程度上取决于季节性迁徙的时间,尤其是上升日。在我们的模拟中,高等(视觉)捕食者的存在往往会抑制停留者,而 SVM 策略即使在没有高等捕食者的情况下也能在非迁徙物种的存在下持续存在。
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来源期刊
Journal of Plankton Research
Journal of Plankton Research 生物-海洋学
CiteScore
3.50
自引率
9.50%
发文量
65
审稿时长
1 months
期刊介绍: Journal of Plankton Research publishes innovative papers that significantly advance the field of plankton research, and in particular, our understanding of plankton dynamics.
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