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Temperature variability alters the stability and thresholds for collapse of interacting species

机译:温度变化改变了相互作用物种崩溃的稳定性和阈值

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摘要

Temperature variability and extremes can have profound impacts on populations and ecological communities. Predicting impacts of thermal variability poses a challenge, because it has both direct physiological effects and indirect effects through species interactions. In addition, differences in thermal performance between predators and prey and nonlinear averaging of temperature-dependent performance can result in complex and counterintuitive population dynamics in response to climate change. Yet the combined consequences of these effects remain underexplored. Here, modelling temperature-dependent predator-prey dynamics, we study how changes in temperature variability affect population size, collapse and stable coexistence of both predator and prey, relative to under constant environments or warming alone. We find that the effects of temperature variation on interacting species can lead to a diversity of outcomes, from predator collapse to stable coexistence, depending on interaction strengths and differences in species' thermal performance. Temperature variability also alters predictions about population collapse-in some cases allowing predators to persist for longer than predicted when considering warming alone, and in others accelerating collapse. To inform management responses that are robust to future climates with increasing temperature variability and extremes, we need to incorporate the consequences of temperature variation in complex ecosystems. This article is part of the theme issue 'Integrative research perspectives on marine conservation'.
机译:温度变化和极端可能对人口和生态社区产生深远影响。预测热变异的影响是一个挑战,因为它既有直接的生理影响,也有通过物种相互作用产生的间接影响。此外,捕食者和被捕食者之间的热性能差异以及温度相关性能的非线性平均可能会导致复杂且违反直觉的种群动态,以应对气候变化。然而,这些影响的综合后果仍然没有得到充分的探讨。在这里,我们通过模拟温度依赖的捕食者-食饵动力学,研究了相对于恒定环境或仅在变暖条件下,温度变异性的变化如何影响种群规模、崩溃以及捕食者和食饵的稳定共存。我们发现,温度变化对相互作用物种的影响可以导致多种结果,从捕食者崩溃到稳定共存,这取决于相互作用强度和物种热性能的差异。温度变化也会改变关于种群崩溃的预测,在某些情况下,当仅考虑变暖时,捕食者的生存时间比预测的要长,而在另一些情况下,则会加速种群崩溃。为了让管理层做出应对,应对未来气温变化和极端天气不断加剧的气候,我们需要考虑复杂生态系统中气温变化的后果。本文是“海洋保护综合研究展望”主题的一部分。

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