Synergistic effects of warming and eutrophication alert zooplankton predator–prey interactions along the benthic–pelagic interface

环境科学 生态系统 底栖区 食物网 海洋学 水柱 营养级联 生物量(生态学) 浮游植物 海洋生态系统 水蚤 全球变暖对海洋的影响 海洋酸化 昼夜垂直迁移
作者
Huan Zhang,Peiyu Zhang,Huan Wang,Jorge García Molinos,Lars-Anders Hansson,Liang He,Min Zhang,Jun Xu
出处
期刊:Global Change Biology [Wiley]
卷期号:27 (22): 5907-5919
标识
DOI:10.1111/gcb.15838
摘要

Contemporary evidence suggests that climate change and other co-occurring large-scale environmental changes, such as eutrophication, will have a considerable impact on aquatic communities. However, the interactions of these environmental changes on trophic interactions among zooplankton remain largely unknown. Here we present results of a mesocosm experiment examining how a couple of zooplankton predator and prey taxa with different life-history strategies respond to the combined effect of an increase in temperature (4.5°C) and in eutrophication (phosphorus addition), during the crucial recruiting and growing season. We show that the addition of phosphorus alone significantly weakened the top-down effects by the cyclopoid copepod predators on their rotifer prey. In contrast, warming strengthened the top-down effects from the predator, leading to a reduction in the abundance of the rotifer prey. These effects of warming were enhanced by phosphorus addition. Together, our results demonstrate that warming made plankton prey organisms more susceptible to top-down effects from predators, but reduced their sensitivity to nutrient enrichment. In terms of the phenological effects, warming advanced the termination of diapause for both rotifers and cyclopoid copepods by about 2 weeks, but these temporal shifts, akin for both groups, resulted in no apparent trophic mismatch. Hence, from a future perspective, cyclopoid copepods are likely to benefit more from the combination of nutrient enrichment and climate warming to the detriment of their rotifer prey.
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