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一种长寿猛禽物种跨海拔梯度向出生地扩散的决定因素。

Determinants of departure to natal dispersal across an elevational gradient in a long-lived raptor species.

作者信息

Scherler Patrick, Witczak Stephanie, Aebischer Adrian, van Bergen Valentijn, Catitti Benedetta, Grüebler Martin U

机构信息

Swiss Ornithological Institute Sempach Switzerland.

Department of Evolutionary Biology and Environmental Studies University of Zurich Zurich Switzerland.

出版信息

Ecol Evol. 2023 Jan 16;13(1):e9603. doi: 10.1002/ece3.9603. eCollection 2023 Jan.

Abstract

Attributes of natal habitat often affect early stages of natal dispersal. Thus, environmental gradients at mountain slopes are expected to result in gradients of dispersal behavior and to drive elevational differences in dispersal distances and settlement behavior. However, covariation of environmental factors across elevational gradients complicates the identification of mechanisms underlying the elevational patterns in dispersal behavior. Assuming a decreasing food availability with elevation, we conducted a food supplementation experiment of red kite () broods across an elevational gradient toward the upper range margin and we GPS-tagged nestlings to assess their start of dispersal. While considering timing of breeding and breeding density across elevation, this allowed disentangling effects of elevational food gradients from co-varying environmental gradients on the age at departure from the natal home range. We found an effect of food supplementation on age at departure, but no elevational gradient in the effect of food supplementation. Similarly, we found an effect of breeding density on departure age without an underlying elevational gradient. Supplementary-fed juveniles and females in high breeding densities departed at younger age than control juveniles and males in low breeding densities. We only found an elevational gradient in the timing of breeding. Late hatched juveniles, and thus individuals at high elevation, departed at earlier age compared to early hatched juveniles. We conclude that favorable natal food conditions, allow for a young departure age of juvenile red kites. We show that the elevational delay in breeding is compensated by premature departure resulting in an elevational gradient in departure age. Thus, elevational differences in dispersal behaviour likely arise due to climatic factors affecting timing of breeding. However, the results also suggest that spatial differences in food availability and breeding density affect dispersal behavior and that their large-scale gradients within the distributional range might result in differential natal dispersal patterns.

摘要

出生地栖息地的属性常常会影响出生后扩散的早期阶段。因此,山坡上的环境梯度预计会导致扩散行为的梯度变化,并驱动扩散距离和定居行为的海拔差异。然而,环境因素在海拔梯度上的协变使得识别扩散行为中海拔模式背后的机制变得复杂。假设随着海拔升高食物可获得性降低,我们在朝向分布上限的海拔梯度上对红鸢()巢进行了食物补充实验,并对雏鸟进行了GPS标记以评估它们开始扩散的情况。在考虑海拔上的繁殖时间和繁殖密度的同时,这使得我们能够区分海拔食物梯度与共同变化的环境梯度对离开出生地家域年龄的影响。我们发现食物补充对离开年龄有影响,但食物补充的影响不存在海拔梯度。同样,我们发现繁殖密度对离开年龄有影响,但不存在潜在的海拔梯度。高繁殖密度下接受补充喂养的幼鸟和雌鸟比低繁殖密度下的对照幼鸟和雄鸟更早离开。我们只在繁殖时间上发现了海拔梯度。与早孵化的幼鸟相比,晚孵化的幼鸟,即高海拔地区的个体,更早离开。我们得出结论,有利的出生地食物条件使得红鸢幼鸟能够较早离开。我们表明,繁殖的海拔延迟通过提前离开得到补偿,从而导致离开年龄出现海拔梯度。因此,扩散行为的海拔差异可能是由于气候因素影响繁殖时间所致。然而,结果也表明食物可获得性和繁殖密度的空间差异会影响扩散行为,并且它们在分布范围内的大规模梯度可能导致不同的出生后扩散模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73ae/9842906/45eb268cc64d/ECE3-13-e9603-g003.jpg

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