Metabolic scaling of an invasive mussel depends on temperature and chemical cues from an invasive predator
收藏Figshare2024-03-16 更新2026-04-28 收录
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Metabolism drives various biological processes, potentially influencing the ecological success and evolutionary fitness of species. Understanding diverse metabolic rates is fundamental in biology. Mechanisms underlying adaptation to factors like temperature and predation pressure remain unclear. Our study explored the role of temperature and predation pressure in shaping the metabolic scaling of an invasive mussel species (Brachidontes pharaonis). Specifically, we performed laboratory-based experiments to assess effects of phenotypic plasticity on metabolic scaling by exposing the mussels to water conditions with and without predator cues from another invasive species (the blue crab Callinectes sapidus) across various temperature regimes. We found that temperature effects on metabolic scaling of the invasive mussels are mediated by the presence of chemical cues of an invasive predator, the blue crab. Investigating temperature-predator interactions underscores the importance of studying the ecological effects of global warming. Our research advances understanding of how environmental factors jointly impact physiological processes.
创建时间:
2024-03-16



