Global population trends in shorebirds: migratory behaviour makes species at risk

被引:0
|
作者
Jaroslav Koleček
Jiří Reif
Miroslav Šálek
Jan Hanzelka
Camille Sottas
Vojtěch Kubelka
机构
[1] Charles University,Institute for Environmental Studies, Faculty of Science
[2] Prague,Department of Zoology and Laboratory of Ornithology, Faculty of Science
[3] Palacký University in Olomouc,Department of Ecology, Faculty of Environmental Sciences
[4] Czech University of Life Sciences,Department of Zoology, Faculty of Science
[5] Charles University,Department of Animal and Plant Sciences
[6] University of Sheffield,Department of Biodiversity Research, Global Change Research Institute
[7] Czech Academy of Sciences,Department of Evolutionary Zoology and Human Biology, Faculty of Science
[8] University of Debrecen,Milner Centre for Evolution
[9] University of Bath,undefined
来源
The Science of Nature | 2021年 / 108卷
关键词
Climate change; Conservation; Habitat deterioration; Life history strategy; Migration flyway; Waders;
D O I
暂无
中图分类号
学科分类号
摘要
Linking population trends to species’ traits is informative for the detection of the most important threatening factors and for assessing the effectiveness of conservation measures. Although some previous studies performed such an analysis at local to continental scales, the global-scale focus is the most relevant for conservation of the entire species. Here we evaluate information on global population trends of shorebirds, a widely distributed and ecologically diversified group, where some species connect different parts of the world by migration, while others are residents. Nowadays, shorebirds face rapid environmental changes caused by various human activities and climate change. Numerous signs of regional population declines have been recently reported in response to these threats. The aim of our study was to test whether breeding and non-breeding habitats, migratory behaviour (migrants vs. residents) and migration distance, breeding latitude, generation time and breeding range size mirror species’ global population trends. We found that a majority of shorebird species have declined globally. After accounting for the influence of traits and species taxonomy, linear mixed-effects models showed that populations of migratory shorebirds decreased more than populations of residents. Besides that, declines were more frequent for species breeding at high latitudes of the Northern Hemisphere, but these patterns did not hold after excluding the non-migratory species. Our findings suggest that factors linked to migration, such as habitat loss as well as deterioration at stop-over or wintering sites and a pronounced climate change impact at high latitudes, are possible drivers of the observed worldwide population decreases.
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