Simon F.S. Li Marine Science Laboratory, The Chinese University of Hong Kong, Sha Tin, New Territories, Hong Kong SAR.
Simon F.S. Li Marine Science Laboratory, The Chinese University of Hong Kong, Sha Tin, New Territories, Hong Kong SAR.
Mar Environ Res. 2024 Oct;201:106675. doi: 10.1016/j.marenvres.2024.106675. Epub 2024 Aug 10.
Predator-prey interactions are important in shaping ecosystem structure. Consequently, impacts of accelerating global warming on predators will have notable implications. Effects are likely to be particularly marked for tropical organisms which are anticipated to be sensitive to further thermal stress. Here, we investigated effects of future ocean warming on the predatory dogwhelk Reishia clavigera and its predation of Saccostrea cucullata. Mortality of the predators rapidly increased under the extreme elevated temperature, while those exposed to moderate elevated temperature displayed similar mortality as the ambient. Predators that survived moderate temperature increases altered their oxygen consumption patterns, increased average feeding rates, and functional responses, although condition index and energy reserves were unchanged. Overall, we show extreme ocean warming scenarios can remove predators and their consumption of prey from an ecosystem, whereas moderate warming can intensify predator-prey interactions. Such temperature-dependent alterations to predator-prey interactions would lead to fundamental changes of ecosystem structure as the ocean warms.
捕食者-被捕食者的相互作用对生态系统结构的形成很重要。因此,加速全球变暖对捕食者的影响将具有显著意义。对于热带生物而言,这种影响可能尤为显著,因为预计它们会对进一步的热应激敏感。在这里,我们研究了未来海洋变暖对掠食性犬螺 Reishia clavigera 及其对 Saccostrea cucullata 的捕食作用的影响。在极端高温下,捕食者的死亡率迅速上升,而暴露在适度高温下的捕食者的死亡率与环境温度相似。在中等温度升高的情况下幸存下来的捕食者改变了它们的耗氧模式,增加了平均摄食率和功能反应,尽管条件指数和能量储备没有变化。总的来说,我们表明,极端的海洋变暖情景可以使捕食者及其对猎物的消耗从生态系统中消失,而适度的变暖则会加剧捕食者-被捕食者的相互作用。随着海洋变暖,这种依赖于温度的捕食者-被捕食者相互作用的改变将导致生态系统结构的根本变化。