Sorbonne Universités, UPMC Université, Paris 06, UMR 7159, LOCEAN-IPSL, 75005 Paris, France.
Department of Biology, Woods Hole Oceanographic Institution, Woods Hole, MA, USA.
Biol Lett. 2021 Jun;17(6):20210097. doi: 10.1098/rsbl.2021.0097. Epub 2021 Jun 16.
In a fast-changing world, polar ecosystems are threatened by climate variability. Understanding the roles of fine-scale processes, and linear and nonlinear effects of climate factors on the demography of polar species is crucial for anticipating the future state of these fragile ecosystems. While the effects of sea ice on polar marine top predators are increasingly being studied, little is known about the impacts of landfast ice (LFI) on this species community. Based on a unique 39-year time series of satellite imagery and meteorological conditions and on the world's longest dataset of emperor penguin () breeding parameters, we studied the effects of fine-scale variability of LFI and weather conditions on this species' reproductive success. We found that longer distances to the LFI edge (i.e. foraging areas) negatively affected the overall breeding success but also the fledging success. Climate window analyses suggested that chick mortality was particularly sensitive to LFI variability between August and November. Snowfall in May also affected hatching success. Given the sensitivity of LFI to storms and changes in wind direction, important future repercussions on the breeding habitat of emperor penguins are to be expected in the context of climate change.
在快速变化的世界中,极地生态系统受到气候变化的威胁。了解微观过程的作用,以及气候因素对极地物种的数量变化的线性和非线性影响,对于预测这些脆弱生态系统的未来状态至关重要。虽然海冰对极地海洋顶级捕食者的影响越来越受到关注,但人们对陆缘冰(LFI)对该物种群落的影响知之甚少。本研究基于 39 年的卫星图像和气象条件的独特时间序列,以及世界上最长的帝企鹅繁殖参数数据集,研究了 LFI 与天气条件的微观变化对该物种繁殖成功率的影响。我们发现,距离 LFI 边缘(即觅食区)越远,整体繁殖成功率和育雏成功率越低。气候窗分析表明,8 月至 11 月 LFI 变化与雏鸟死亡率特别相关。5 月的降雪也会影响孵化成功率。鉴于 LFI 对风暴和风向变化的敏感性,预计在气候变化的背景下,陆缘冰对帝企鹅繁殖栖息地会产生重要的未来影响。