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适宜的春季条件可以缓冲冬季遗留效应对一种北极繁殖海鸟关键繁殖决策的影响。

Favorable spring conditions can buffer the impact of winter carryover effects on a key breeding decision in an Arctic-breeding seabird.

作者信息

Steenweg Rolanda J, Crossin Glenn T, Hennin Holly L, Gilchrist H Grant, Love Oliver P

机构信息

Department of Biology Dalhousie University Halifax Nova Scotia Canada.

Environment and Climate Change Canada National Wildlife Research Centre Carleton University Ottawa Ontario Canada.

出版信息

Ecol Evol. 2022 Feb 9;12(2):e8588. doi: 10.1002/ece3.8588. eCollection 2022 Feb.

Abstract

The availability and investment of energy among successive life-history stages is a key feature of carryover effects. In migratory organisms, examining how both winter and spring experiences carryover to affect breeding activity is difficult due to the challenges in tracking individuals through these periods without impacting their behavior, thereby biasing results.Using common eiders , we examined whether spring conditions at an Arctic breeding colony (East Bay Island, Nunavut, Canada) can buffer the impacts of winter temperatures on body mass and breeding decisions in birds that winter at different locations (Nuuk and Disko Bay, Greenland, and Newfoundland, Canada; assessed by analyzing stable isotopes of 13-carbon in winter-grown claw samples). Specifically, we used path analysis to examine how wintering and spring environmental conditions interact to affect breeding propensity (a key reproductive decision influencing lifetime fitness in female eiders) within the contexts of the timing of colony arrival, pre-breeding body mass (body condition), and a physiological proxy for foraging effort (baseline corticosterone).We demonstrate that warmer winter temperatures predicted lower body mass at arrival to the nesting colony, whereas warmer spring temperatures predicted earlier arrival dates and higher arrival body mass. Both higher body mass and earlier arrival dates of eider hens increased the probability that birds would initiate laying (i.e., higher breeding propensity). However, variation in baseline corticosterone was not linked to either winter or spring temperatures, and it had no additional downstream effects on breeding propensity.Overall, we demonstrate that favorable pre-breeding conditions in Arctic-breeding common eiders can compensate for the impact that unfavorable wintering conditions can have on breeding investment, perhaps due to greater access to foraging areas prior to laying.

摘要

能量在连续生命史阶段的可获得性和投入是遗留效应的一个关键特征。在迁徙生物中,由于在不影响个体行为的情况下跟踪它们经历冬季和春季这两个时期存在挑战,进而会使结果产生偏差,所以很难研究冬季和春季的经历如何遗留下来影响繁殖活动。我们以普通绒鸭为研究对象,探究了北极繁殖地(加拿大努纳武特地区东湾岛)春季的环境条件是否能缓冲冬季温度对在不同地点越冬的鸟类(格陵兰岛的努克和迪斯科湾以及加拿大纽芬兰;通过分析冬季生长的爪样本中碳-13的稳定同位素进行评估)体重及繁殖决策的影响。具体而言,我们运用路径分析来研究越冬和春季环境条件如何相互作用,从而在群体到达时间、繁殖前体重(身体状况)以及觅食努力的生理指标(基础皮质酮)的背景下,影响繁殖倾向(这是影响雌性普通绒鸭终生繁殖成功率的一个关键繁殖决策)。我们发现,冬季温度较高预示着到达筑巢地时体重较低,而春季温度较高则预示着到达日期较早且到达时体重较高。普通绒鸭母鸡体重增加和到达日期提前都会增加鸟类开始产蛋的概率(即繁殖倾向较高)。然而,基础皮质酮的变化与冬季或春季温度均无关联,并且对繁殖倾向没有额外的下游影响。总体而言,我们证明了北极繁殖的普通绒鸭在繁殖前的有利条件可以弥补不利越冬条件对繁殖投入的影响,这可能是由于在产蛋前有更多机会获取觅食区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f245/8826066/5a75c21bdbee/ECE3-12-e8588-g001.jpg

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