首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Long-term effects of warming and ocean acidification are modified by seasonal variation in species responses and environmental conditions
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Long-term effects of warming and ocean acidification are modified by seasonal variation in species responses and environmental conditions

机译:物种响应和环境条件的季节性变化可以改变变暖和海洋酸化的长期影响

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摘要

Warming of sea surface temperatures and alteration of ocean chemistry associated with anthropogenic increases in atmospheric carbon dioxide will have profound consequences for a broad range of species, but the potential for seasonal variation to modify species and ecosystem responses to these stressors has received little attention. Here, using the longest experiment to date (542 days), we investigate how the interactive effects of warming and ocean acidification affect the growth, behaviour and associated levels of ecosystem functioning (nutrient release) for a functionally important non-calcifying intertidal polychaete (Alitta virens) under seasonally changing conditions.We find that the effects of warming, ocean acidification and their interactions are not detectable in the short term, but manifest over time through changes in growth, bioturbation and bioirrigation behaviour that, in turn, affect nutrient generation. These changes are intimately linked to species responses to seasonal variations in environmental conditions (temperature and photoperiod) that, depending upon timing, can either exacerbate or buffer the long-term directional effects of climatic forcing. Taken together, our observations caution against over emphasizing the conclusions from short-term experiments and highlight the necessity to consider the temporal expression of complex system dynamics established over appropriate timescales when forecasting the likely ecological consequences of climatic forcing.
机译:人为增加的二氧化碳引起的海面温度升高和海洋化学变化将对广泛的物种产生深远的影响,但是季节性变化改变物种和生态系统对这些压力源的响应的潜力却鲜为人知。在这里,使用迄今为止最长的实验(542天),我们研究了变暖和海洋酸化的相互作用如何影响功能上重要的非钙化潮间多毛cha(Alitta)的生长,行为和相关的生态系统功能水平(营养释放)我们发现在短期内无法检测到变暖,海洋酸化及其相互作用的影响,而是随着时间的推移通过生长,生物扰动和生物灌溉行为的变化而显现出来,进而影响养分的产生。这些变化与物种对环境条件(温度和光周期)的季节性变化的响应密切相关,取决于时机,它们会加剧或缓冲气候强迫的长期定向效应。综上所述,我们的观察警告不要过分强调短期实验的结论,并强调在预测气候强迫的可能生态后果时,有必要考虑在适当的时标上建立的复杂系统动力学的时间表达。

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