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首页> 外文期刊>Ecology and Evolution >The interaction between island geomorphology and environmental parameters drives Adélie penguin breeding phenology on neighboring islands near Palmer Station, Antarctica
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The interaction between island geomorphology and environmental parameters drives Adélie penguin breeding phenology on neighboring islands near Palmer Station, Antarctica

机译:岛地貌与环境参数之间的相互作用在南极洲帕尔默站附近的邻近岛屿上的AdéliePenguin育种候选

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Despite many studies on Adélie penguin breeding phenology, understanding the drivers of clutch initiation dates (CIDs, egg 1 lay date) is limited or lacks consensus. Here, we investigated Adélie penguin CIDs over 25?years (1991–2016) on two neighboring islands, Torgersen and Humble (1?km apart), in a rapidly warming region near Palmer Station, Antarctica. We found that sea ice was the primary large‐scale driver of CIDs and precipitation was a secondary small‐scale driver that fine‐tunes CID to island‐specific nesting habitat geomorphology. In general, CIDs were earlier (later) when the spring sea ice retreat was earlier (later) and when the preceding annual ice season was shorter (longer). Island‐specific effects related to precipitation and island geomorphology caused greater snow accumulation and delayed CIDs by ~2?days on Torgersen compared to Humble Island. When CIDs on the islands were similar, conditions were mild with less snow across breeding sites. At Torgersen Island, the negative relationship between CID and breeding success highlights detrimental effects of delayed breeding and/or snow on penguin fitness. Past phenological studies reported a relationship between air temperature and CID, assumed to be related to precipitation, but we found air temperature was more highly correlated to sea ice, revealing a misinterpretation of temperature effects. Finally, contrasting trends in CIDs based on temporal shifts in regional sea ice patterns revealed trends toward earlier CIDs (4–6?day advance) from 1979 to 2009 as the annual ice season shortened, and later CIDs (7–10?day delay) from 2010 to 2016 as the annual ice season lengthened. Adélie penguins tracked environmental conditions with flexible breeding phenology, but their life history remains vulnerable to subpolar weather conditions that can delay CIDs and decrease breeding success, especially on landscapes where geomorphology facilitates snow accumulation.
机译:尽管对AdéliePenguin育种的研究很多,但了解离合器启动日期的驱动程序(CID,鸡蛋1延期)受限或缺乏共识。在这里,我们在两个邻近岛屿,orgersen和谦虚(<1 km Apart)的一年(1991-2016)上调查了Adéliepenguincids,在南极洲帕尔默站附近的一个快速变暖的地区。我们发现海冰是CIDS的主要大规模驾驶员,降水是一种次要小型驾驶员,可将CID与岛上筑巢栖息地的地貌进行微调。一般来说,当春天海冰撤退早期(后来)时,CIDS早期(后来),当前的年度冰季短(更长)。与沉淀和岛地貌相关的岛屿特异性效果引起了较大的雪积累和延迟CID〜2?天数与谦逊岛相比orgersen。当岛上的CID在岛上相似时,繁殖场地越来越少的条件。在Torgersen Island,CID与育种成功之间的负面关系凸显了延迟育种和/或雪对企鹅健身的不利影响。过去的鉴别研究报告了空气温度和CID之间的关系,假设与沉淀有关,但我们发现空气温度与海冰更高度相关,揭示了温度效应的误解。最后,基于区域海冰模式的时间变化的CIDS对比趋势揭示了早期CID的趋势(4-6?日前前进),从1979年到2009年,随着年度冰季缩短,后来CIDS(7-10?日延迟)从2010年到2016年,随着年度冰季加长。 AdéliePenguins跟踪了具有柔性育种的环境条件,但他们的生命历史仍然容易受到亚马加尔天气条件,可以推迟CID和减少育种成功,特别是在地貌促进积雪的景观上。

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