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人口统计特征和环境驱动因素的变化与一种长途跨洋迁徙海鸟——冰岛海雀的个体繁殖状态有关。

Demographic profiles and environmental drivers of variation relate to individual breeding state in a long-lived trans-oceanic migratory seabird, the Manx shearwater.

机构信息

School of Natural & Social Sciences, University of Gloucestershire, Cheltenham, United Kingdom.

CEFE, Univ Montpellier, CNRS, EPHE-PSL University, IRD, Univ Paul Valéry Montpellier 3, Montpellier, France.

出版信息

PLoS One. 2021 Dec 16;16(12):e0260812. doi: 10.1371/journal.pone.0260812. eCollection 2021.

Abstract

Understanding the points in a species breeding cycle when they are most vulnerable to environmental fluctuations is key to understanding interannual demography and guiding effective conservation and management. Seabirds represent one of the most threatened groups of birds in the world, and climate change and severe weather is a prominent and increasing threat to this group. We used a multi-state capture-recapture model to examine how the demographic rates of a long-lived trans-oceanic migrant seabird, the Manx shearwater Puffinus puffinus, are influenced by environmental conditions experienced at different stages of the annual breeding cycle and whether these relationships vary with an individual's breeding state in the previous year (i.e., successful breeder, failed breeder and non-breeder). Our results imply that populations of Manx shearwaters are comprised of individuals with different demographic profiles, whereby more successful reproduction is associated with higher rates of survival and breeding propensity. However, we found that all birds experienced the same negative relationship between rates of survival and wind force during the breeding season, indicating a cost of reproduction (or central place constraint for non-breeders) during years with severe weather conditions. We also found that environmental effects differentially influence the breeding propensity of individuals in different breeding states. This suggests individual spatio-temporal variation in habitat use during the annual cycle, such that climate change could alter the frequency that individuals with different demographic profiles breed thereby driving a complex and less predictable population response. More broadly, our study highlights the importance of considering individual-level factors when examining population demography and predicting how species may respond to climate change.

摘要

了解物种繁殖周期中最容易受到环境波动影响的阶段,对于理解年际种群动态以及指导有效的保护和管理至关重要。海鸟是世界上受威胁最严重的鸟类群体之一,气候变化和恶劣天气是对该群体的一个突出且日益严重的威胁。我们使用多状态捕获-再捕获模型来研究一种长距离跨洋迁徙海鸟——马恩岛剪水鹱(Puffinus puffinus)的种群动态率如何受到繁殖周期不同阶段所经历的环境条件的影响,以及这些关系是否随个体在前一年的繁殖状态而变化(即成功繁殖者、繁殖失败者和非繁殖者)。我们的研究结果表明,马恩岛剪水鹱的种群由具有不同种群动态特征的个体组成,其中更成功的繁殖与更高的存活率和繁殖倾向相关。然而,我们发现,所有鸟类在繁殖季节的存活率和风力之间都存在相同的负相关关系,这表明在恶劣天气条件下繁殖会产生成本(或非繁殖者的中心位置限制)。我们还发现,环境效应对不同繁殖状态个体的繁殖倾向有不同的影响。这表明个体在年度繁殖周期中对栖息地的利用存在时空变化,因此气候变化可能会改变具有不同种群动态特征的个体繁殖的频率,从而导致复杂且不可预测的种群反应。更广泛地说,我们的研究强调了在研究种群动态和预测物种如何应对气候变化时,考虑个体水平因素的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e78c/8675709/40ac8d9b33bd/pone.0260812.g001.jpg

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