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当西伯利亚来到荷兰:大陆黑尾塍鹬对罕见春季天气事件的反应。

When Siberia came to the Netherlands: the response of continental black-tailed godwits to a rare spring weather event.

作者信息

Senner Nathan R, Verhoeven Mo A, Abad-Gómez José M, Gutiérrez Jorge S, Hooijmeijer Jos C E W, Kentie Rosemarie, Masero José A, Tibbitts T Lee, Piersma Theunis

机构信息

Conservation Ecology Group, Groningen Institute for Evolutionary Life Sciences (GELIFES), University of Groningen, P.O. Box 11103, Groningen, 9700 CC, The Netherlands.

Conservation Biology Research Group, Department of Anatomy Cell Biology and Zoology, Faculty of Sciences, University of Extremadura, Avenida de Elvas, Badajoz, 06071, Spain.

出版信息

J Anim Ecol. 2015 Sep;84(5):1164-76. doi: 10.1111/1365-2656.12381. Epub 2015 May 29.

DOI:10.1111/1365-2656.12381
PMID:26033015
Abstract
  1. Extreme weather events have the potential to alter both short- and long-term population dynamics as well as community- and ecosystem-level function. Such events are rare and stochastic, making it difficult to fully document how organisms respond to them and predict the repercussions of similar events in the future. 2. To improve our understanding of the mechanisms by which short-term events can incur long-term consequences, we documented the behavioural responses and fitness consequences for a long-distance migratory bird, the continental black-tailed godwit Limosa limosa limosa, resulting from a spring snowstorm and three-week period of record low temperatures. 3. The event caused measurable responses at three spatial scales - continental, regional and local - including migratory delays (+19 days), reverse migrations (>90 km), elevated metabolic costs (+8·8% maintenance metabolic rate) and increased foraging rates (+37%). 4. There were few long-term fitness consequences, however, and subsequent breeding seasons instead witnessed high levels of reproductive success and little evidence of carry-over effects. 5. This suggests that populations with continued access to food, behavioural flexibility and time to dissipate the costs of the event can likely withstand the consequences of an extreme weather event. For populations constrained in one of these respects, though, extreme events may entail extreme ecological consequences.
摘要
  1. 极端天气事件有可能改变短期和长期的种群动态以及群落和生态系统层面的功能。此类事件罕见且具有随机性,因此很难全面记录生物如何对其做出反应,也难以预测未来类似事件的影响。2. 为了增进我们对短期事件如何产生长期后果的机制的理解,我们记录了一场春季暴风雪以及为期三周的创纪录低温对一种长距离候鸟——欧亚黑尾塍鹬(Limosa limosa limosa)的行为反应和适合度后果。3. 该事件在大陆、区域和局部三个空间尺度上引发了可测量的反应,包括迁徙延迟(+19天)、反向迁徙(>90公里)、代谢成本升高(维持代谢率提高+8.8%)以及觅食率增加(+37%)。4. 然而,长期适合度后果很少,随后的繁殖季节反而呈现出高水平的繁殖成功率,几乎没有遗留效应的证据。5. 这表明,能够持续获取食物、具备行为灵活性且有时间消除事件成本的种群可能能够承受极端天气事件的后果。不过,对于在这些方面受到限制的种群而言,极端事件可能会带来极端的生态后果。

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