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个体在生活史时间上的变化:野生哺乳动物中的同步出现、异步事件和物候补偿。

Individual variation in life-history timing: synchronous presence, asynchronous events and phenological compensation in a wild mammal.

机构信息

Department of Ecology and Evolutionary Biology, University of California Santa Cruz, Santa Cruz, CA 95060, USA.

Institute of Marine Sciences, University of California Santa Cruz, Santa Cruz, CA 95060, USA.

出版信息

Proc Biol Sci. 2024 Apr 30;291(2021):20232335. doi: 10.1098/rspb.2023.2335. Epub 2024 Apr 17.

Abstract

Many animals and plants have species-typical annual cycles, but individuals vary in their timing of life-history events. Individual variation in fur replacement (moult) timing is poorly understood in mammals due to the challenge of repeated observations and longitudinal sampling. We examined factors that influence variation in moult duration and timing among elephant seals (). We quantified the onset and progression of fur loss in 1178 individuals. We found that an exceptionally rapid visible moult (7 days, the shortest of any mammals or birds), and a wide range of moult start dates (spanning 6-10× the event duration) facilitated high asynchrony across individuals (only 20% of individuals in the population moulting at the same time). Some of the variation was due to reproductive state, as reproductively mature females that skipped a breeding season moulted a week earlier than reproductive females. Moreover, individual variation in timing and duration within age-sex categories far outweighed (76-80%) variation among age-sex categories. Individuals arriving at the end of the moult season spent 50% less time on the beach, which allowed them to catch up in their annual cycles and reduce population-level variance during breeding. These findings underscore the importance of individual variation in annual cycles.

摘要

许多动物和植物都有典型的年度周期,但个体在生命史事件的时间上存在差异。由于重复观察和纵向采样的挑战,哺乳动物中对毛发更换(换毛)时间的个体变异的了解甚少。我们研究了影响象海豹()换毛持续时间和时间变化的因素。我们量化了 1178 个个体的毛发生长和脱落的开始和进展。我们发现,异常快速的可见换毛(7 天,是所有哺乳动物或鸟类中最短的),以及广泛的换毛开始日期(比事件持续时间长 6-10 倍),促进了个体之间的高度异步(只有 20%的个体同时换毛)。部分变异归因于生殖状态,因为跳过繁殖季节的生殖成熟雌性比生殖雌性早换毛一周。此外,年龄-性别类别内的时间和持续时间的个体变异远远超过(76-80%)年龄-性别类别之间的变异。在换毛季节结束时到达的个体在海滩上花费的时间减少了 50%,这使它们能够在年度周期中赶上进度,并减少繁殖期间的种群水平方差。这些发现强调了个体年度周期变异的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c97/11021928/8e6554194183/rspb20232335f01.jpg

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