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Synergistic effects associated with climate change and the development of rocky shore molluscs

机译:与气候变化和石质海岸软体动物发展相关的协同效应

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Global climate change and ozone layer thinning will simultaneously expose organisms to increasingly stressful conditions. Early life stages of marine organisms, particularly eggs and larvae, are considered most vulnerable to environmental extremes. Here, we exposed encapsulated embryos of three common rocky shore gastropods to simultaneous combinations of ecologically realistic levels of ultraviolet radiation (UVR), water temperature stress and salinity stress to identify potential interactions and associated impacts of climate change. We detected synergistic effects with increases in mortality and retardation in development associated with the most physiologically stressful conditions. The effects of UVR were particularly marked, with mortality increasing up to 12-fold under stressful conditions. Importantly, the complex outcomes observed on applying multiple stressors could not have been predicted from examining environmental variables in isolation. Hence, we are probably dramatically underestimating the ecological impacts of climate change by failing to consider the complex interplay of combinations of environmental variables with organisms.
机译:全球气候变化和臭氧层变薄将同时使生物体承受越来越大的压力。海洋生物特别是鸡蛋和幼虫的生命早期阶段被认为最容易受到极端环境的影响。在这里,我们将三种常见的岩岸腹足动物的封装胚胎暴露于生态现实水平的紫外线辐射(UVR),水温应力和盐度应力的同时组合中,以识别气候变化的潜在相互作用和相关影响。我们检测到与大多数生理压力条件相关的死亡率增加和发育迟缓的协同效应。 UVR的作用尤为明显,在压力条件下,死亡率可增加多达12倍。重要的是,无法通过单独检查环境变量来预测使用多个压力源时所观察到的复杂结果。因此,我们可能由于没有考虑环境变量与生物体的复杂相互作用而大大低估了气候变化对生态的影响。

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