Migratory Species Show Distinct Patterns in Corticosterone Levels during Spring and Autumn Migrations

Q2 Agricultural and Biological Sciences Animal Migration Pub Date : 2019-01-01 DOI:10.1515/ami-2019-0003
A. Tsvey, J. Loshchagina, S. Naidenko
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引用次数: 3

Abstract

Abstract Twice a year billions of birds migrate between breeding and wintering grounds. To facilitate migrations, birds develop migratory disposition, a complex suite of behavioral and physiological adjustments. Glucocorticoid hormone corticosterone is involved in the regulation of migratory behavior and physiology, however no consensus on its exact role in controlling avian migration exists. Using a large dataset on seven songbird species (long- and short-distance migrants) obtained during eleven consecutive migratory seasons on the Courish Spit of the Baltic Sea, we showed the general tendency of similar baseline corticosterone concentrations during both migrations, although stress-induced levels were generally much higher during spring. No difference between long- and short-distance migrants was found in either baseline or stress-induced levels, while there was substantial between-species variation, especially in baseline concentrations. The distinct patterns of corticosterone secretion during seasonal migrations even in ecologically similar species indicate that it is likely to be a species-specific trait. Thus, our study corroborates the inconsistency found in earlier studies and demonstrates how scientific understanding of the role of corticosterone during migration is still evolving. Rather low baseline corticosterone concentrations observed in this study emphasize that birds in both migratory seasons were not in a “stressed” state before capture.
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迁徙物种在春季和秋季迁徙期间皮质酮水平表现出不同的模式
每年有数十亿只鸟类在繁殖地和越冬地之间迁徙两次。为了促进迁徙,鸟类发展了迁徙倾向,这是一套复杂的行为和生理调整。糖皮质激素皮质酮参与鸟类迁徙行为和生理调节,但其在鸟类迁徙控制中的确切作用尚未达成共识。利用在波罗的海库尔什口连续11个迁徙季节获得的7种鸣禽(长途和短途迁徙)的大型数据集,我们发现在两次迁徙期间,皮质酮基线浓度的总体趋势相似,尽管压力诱发的水平在春季通常要高得多。在基线或压力诱导的水平上,长距离和短途迁徙者之间没有发现差异,而物种之间存在很大差异,特别是在基线浓度上。即使在生态相似的物种中,季节性迁徙期间皮质酮分泌的独特模式也表明它可能是一种物种特有的特征。因此,我们的研究证实了早期研究中发现的不一致,并表明对皮质酮在迁移过程中的作用的科学理解仍在不断发展。本研究中观察到的低基线皮质酮浓度强调了两个迁徙季节的鸟类在捕获前并不处于“压力”状态。
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来源期刊
Animal Migration
Animal Migration Environmental Science-Ecology
CiteScore
3.70
自引率
0.00%
发文量
3
审稿时长
18 weeks
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