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首页> 外文期刊>Climate research >Migratory behaviour constrains the phenological response of birds to climate change
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Migratory behaviour constrains the phenological response of birds to climate change

机译:迁徙行为限制了鸟类对气候变化的物候响应

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Migratory birds may be unable to respond to climate change at their breeding grounds in the same way as residents because they do not experience local environmental conditions until migration has been completed, or because of limited plasticity in response to environmental variation. Indeed, several studies have shown that long-distance migrants have advanced their phenology less than short-distance migrants in recent decades, suggesting a slower phenological response to ongoing climate warming. However, few studies compared the phenological response of species that live year-round within the same climatic region (including residents) with that of species migrating over longer distances. We used an extensive data set on temporal change in spring first singing date (FSD) during 1977–2006 of 56 resident and migratory bird species in Northern Germany to test whether migratory status affected 2 aspects of the phenological response: the temporal trend in FSD and the response of FSD to local temperatures. Species migrating <4° latitude (ca. 450 km) (less migratory species) showed greater temporal advancement in FSD compared to more migratory species. In addition, the variance in temporal trends was larger among less migratory species. Higher local temperatures were associated with earlier FSD, and multi-brooded species showed a stronger advancement in FSD with higher temperatures than single-brooded species. However, the temperature response was unaffected by migratory status, suggesting that the difference in the temporal trend in FSD between less migratory and more migratory species was mainly due to climatic and/or environmental cues regulating departure of the latter from the wintering areas and/or temporal scheduling of migratory flights, rather than to differential responses of FSD to local temperatures. Therefore, migratory behaviour should be regarded as a life-history trait possibly constraining the phenological response to rapid climatic changes in avian species.
机译:候鸟可能无法以与居民相同的方式应对其繁殖地的气候变化,因为它们在迁移完成之前不会经历当地环境条件,或者由于对环境变化的可塑性有限。确实,一些研究表明,近几十年来长途移民的物候学进展不及短途移民好,这表明对持续的气候变暖的物候学反应较慢。但是,很少有研究将在同一气候区域(包括居民)中常年生存的物种与在较远距离迁移的物种的物候响应进行比较。我们使用了广泛的数据集,对1977-2006年春季德国北部56种常住和候鸟物种的春季首次演唱日期(FSD)的时间变化进行了测试,以检验迁徙状况是否影响了物候响应的两个方面:FSD和FSD对当地温度的响应。与更多迁徙物种相比,迁徙至<4°纬度(约450 km)的物种(迁徙物种较少)在FSD中显示出更大的时间进展。此外,迁徙较少的物种在时间趋势上的差异更大。较高的局部温度与较早的FSD有关,并且与单繁殖的物种相比,多繁殖种的FSD进展温度更高。然而,温度响应不受迁徙状况的影响,表明迁徙较少和迁徙物种之间FSD的时间趋势差异主要是由于气候和/或环境线索调节了后者从越冬地区和/或临时安排飞行时间,而不是FSD对当地温度的不同响应。因此,迁徙行为应被视为一种生活史特征,可能会限制对快速变化的禽类的物候响应。

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