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鸣禽迁徙时间的非平行变化无法用中途停留时间的变化来解释。

Non-parallel changes in songbird migration timing are not explained by changes in stopover duration.

作者信息

Dorian Nicholas N, Lloyd-Evans Trevor L, Reed J Michael

机构信息

Department of Biology, Tufts University, Medford, MA, USA.

Manomet Inc., Manomet, MA, USA.

出版信息

PeerJ. 2020 May 19;8:e8975. doi: 10.7717/peerj.8975. eCollection 2020.

Abstract

Shifts in the timing of animal migration are widespread and well-documented; however, the mechanism underlying these changes is largely unknown. In this study, we test the hypothesis that systematic changes in stopover duration-the time that individuals spend resting and refueling at a site-are driving shifts in songbird migration timing. Specifically, we predicted that increases in stopover duration at our study site could generate increases in passage duration-the number of days that a study site is occupied by a particular species-by changing the temporal breadth of observations and vise versa. We analyzed an uninterrupted 46-year bird banding dataset from Massachusetts, USA using quantile regression, which allowed us to detect changes in early-and late-arriving birds, as well as changes in passage duration. We found that median spring migration had advanced by 1.04 days per decade; that these advances had strengthened over the last 13 years; and that early-and late-arriving birds were advancing in parallel, leading to negligible changes in the duration of spring passage at our site (+0.07 days per decade). In contrast, changes in fall migration were less consistent. Across species, we found that median fall migration had delayed by 0.80 days per decade, and that changes were stronger in late-arriving birds, leading to an average increase in passage duration of 0.45 days per decade. Trends in stopover duration, however, were weak and negative and, as a result, could not explain any changes in passage duration. We discuss, and provide some evidence, that changes in population age-structure, cryptic geographic variation, or shifts in resource availability are consistent with increases in fall passage duration. Moreover, we demonstrate the importance of evaluating changes across the entire phenological distribution, rather than just the mean, and stress this as an important consideration for future studies.

摘要

动物迁徙时间的变化很普遍且有充分记录;然而,这些变化背后的机制在很大程度上尚不清楚。在本研究中,我们检验了这样一个假设:中途停留持续时间(个体在一个地点休息和补充能量所花费的时间)的系统性变化正在推动鸣禽迁徙时间的变化。具体而言,我们预测,在我们的研究地点中途停留持续时间的增加可能会通过改变观察的时间跨度来导致通过持续时间(一个特定物种占据一个研究地点的天数)增加,反之亦然。我们使用分位数回归分析了来自美国马萨诸塞州的一个连续46年的鸟类环志数据集,这使我们能够检测早到和晚到鸟类的变化以及通过持续时间的变化。我们发现春季迁徙的中位数每十年提前了1.04天;在过去13年中这些提前趋势有所增强;并且早到和晚到鸟类在同步提前,导致我们研究地点春季通过持续时间的变化可以忽略不计(每十年增加0.07天)。相比之下,秋季迁徙的变化不太一致。在所有物种中,我们发现秋季迁徙的中位数每十年延迟了0.80天,并且晚到鸟类的变化更强,导致通过持续时间平均每十年增加0.45天。然而,中途停留持续时间的趋势微弱且呈负向,因此无法解释通过持续时间的任何变化。我们讨论并提供了一些证据,表明种群年龄结构的变化、隐秘的地理变异或资源可用性的变化与秋季通过持续时间的增加是一致的。此外,我们证明了评估整个物候分布而非仅仅是平均值变化的重要性,并强调这是未来研究的一个重要考虑因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fff5/7243817/3455da597747/peerj-08-8975-g001.jpg

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