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Arctic climate change and pollution impact little auk foraging and fitness across a decade

机译:北极气候变化和污染影响了过去十年的野性觅食和健康状况

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摘要

Ongoing global changes apply drastic environmental forcing onto Arctic marine ecosystems, particularly through ocean warming, sea-ice shrinkage and enhanced pollution. To test impacts on arctic marine ecological functioning, we used a 12-year integrative study of little auks (Alle alle), the most abundant seabird in the Atlantic Arctic. We monitored the foraging ecology, reproduction, survival and body condition of breeding birds, and we tested linkages between these biological variables and a set of environmental parameters including sea-ice concentration (SIC) and mercury contamination. Little auks showed substantial plasticity in response to SIC, with deeper and longer dives but less time spent underwater and more time flying when SIC decreased. Their diet also contained less lipid-rich ice-associated prey when SIC decreased. Further, in contrast to former studies conducted at the annual scale, little auk fitness proxies were impacted by environmental changes: Adult body condition and chick growth rate were negatively linked to SIC and mercury contamination. However, no trend was found for adult survival despite high inter-annual variability. Our results suggest that potential benefits of milder climatic conditions in East Greenland may be offset by increasing pollution in the Arctic. Overall, our study stresses the importance of long-term studies integrating ecology and ecotoxicology.
机译:不断发生的全球变化特别是通过海洋变暖,海冰萎缩和污染加剧,对北极海洋生态系统造成了巨大的环境压力。为了测试对北极海洋生态功能的影响,我们使用了一项为期12年的综合研究,该研究涉及大西洋北极地区最丰富的海鸟小海雀(Alle alle)。我们监测了繁殖鸟类的觅食生态,繁殖,存活和身体状况,并测试了这些生物学变量与一组环境参数(包括海冰浓度(SIC)和汞污染)之间的联系。较小的秋海雀显示出对SIC的可塑性,深潜和更长的潜水时间,但是当SIC下降时,在水下的时间更少,飞行的时间更长。当SIC降低时,他们的饮食中还含有较少的富含脂质的冰相关猎物。此外,与以前的年度研究相反,几乎没有auk健身代理受到环境变化的影响:成年人体状况和雏鸡生长速度与SIC和汞污染负相关。然而,尽管年际变化很大,但没有发现成年生存的趋势。我们的结果表明,东格陵兰气候温和的潜在好处可能会因北极地区污染的增加而抵消。总的来说,我们的研究强调了将生态学和生态毒理学结合起来的长期研究的重要性。

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