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Thermal acclimation modulates the impacts of temperature and enrichment on trophic interaction strengths and population dynamics

机译:热适应调节温度和富集对营养相互作用强度和种群动态的影响

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摘要

Global change affects individual phenotypes and biotic interactions, which can have cascading effects up to the ecosystem level. However, the role of environmentally induced phenotypic plasticity in species interactions is poorly understood, leaving a substantial gap in our knowledge of the impacts of global change on ecosystems. Using a cla-doceran-dragonfly system, we experimentally investigated the effects of thermal acclimation, acute temperature change and enrichment on predator functional response and metabolic rate. Using our experimental data, we next parameterized a population dynamics model to determine the consequences of these effects on trophic interaction strength and food-chain stability. We found that (1) predation and metabolic rates of the dragonfly larvae increase with acute warming, (2) warm-acclimated larvae have a higher maximum predation rate than cold-acclimated ones, and (3) long-term interaction strength increases with enrichment but decreases with both acclimation and acute temperatures. Overall, our experimental results show that thermal acclimation can buffer negative impacts of environmental change on predators and increase food-web stability and persistence. We conclude that the effect of acclimation and, more generally, phenotypic plasticity on trophic interactions should not be overlooked if we aim to understand the effects of climate change and enrichment on species interaction strength and food-web stability.
机译:全球变化会影响个体的表型和生物相互作用,可能会在生态系统层面产生连锁反应。然而,人们很少了解环境诱导的表型可塑性在物种相互作用中的作用,这使得我们对全球变化对生态系统的影响的认识还存在很大差距。使用cla-doceran-dragonfly系统,我们实验研究了热适应,急性温度变化和富集对捕食者功能性反应和代谢率的影响。接下来,使用实验数据对种群动力学模型进行参数化,以确定这些效应对营养相互作用强度和食物链稳定性的影响。我们发现(1)蜻蜓幼虫的捕食和代谢率随急性变暖而增加;(2)温驯化幼虫的最大捕食率高于冷驯化幼虫,(3)长期相互作用强度随富集而增加但随着环境和急性温度的升高而降低。总体而言,我们的实验结果表明,热适应可以缓解环境变化对捕食者的负面影响,并增加食物网的稳定性和持久性。我们得出的结论是,如果我们旨在了解气候变化和丰富化对物种相互作用强度和食物网稳定性的影响,那么不应忽略适应性以及表型可塑性对营养相互作用的影响。

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