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北极地区灌木生长增强增加了食草动物的栖息地连通性。

Enhanced shrub growth in the Arctic increases habitat connectivity for browsing herbivores.

机构信息

Department of Biology and Wildlife, University of Alaska Fairbanks, Fairbanks, AK, USA.

Geophysical Institute, University of Alaska Fairbanks, Fairbanks, AK, USA.

出版信息

Glob Chang Biol. 2020 Jul;26(7):3809-3820. doi: 10.1111/gcb.15104. Epub 2020 Apr 28.

Abstract

Habitat connectivity is a key factor influencing species range dynamics. Rapid warming in the Arctic is leading to widespread heterogeneous shrub expansion, but impacts of these habitat changes on range dynamics for large herbivores are not well understood. We use the climate-shrub-moose system of northern Alaska as a case study to examine how shrub habitat will respond to predicted future warming, and how these changes may impact habitat connectivity and the distribution of moose (Alces alces). We used a 19 year moose location dataset, a 568 km transect of field shrub sampling, and forecasted warming scenarios with regional downscaling to map current and projected shrub habitat for moose on the North Slope of Alaska. The tall-shrub habitat for moose exhibited a dendritic spatial configuration correlated with river corridor networks and mean July temperature. Warming scenarios predict that moose habitat will more than double by 2099. Forecasted warming is predicted to increase the spatial cohesion of the habitat network that diminishes effects of fragmentation, which improves overall habitat quality and likely expands the range of moose. These findings demonstrate how climate change may increase habitat connectivity and alter the distributions of shrub herbivores in the Arctic, including creation of novel communities and ecosystems.

摘要

生境连通性是影响物种分布动态的关键因素。北极地区的快速变暖导致广泛的异质灌木扩张,但这些生境变化对大型食草动物分布动态的影响还不太清楚。我们以北阿拉斯加的气候-灌木-驼鹿系统为例,研究灌木生境将如何应对未来的预测变暖,以及这些变化可能如何影响生境连通性和驼鹿(阿尔塞斯·阿尔塞斯)的分布。我们使用了 19 年的驼鹿位置数据集、568 公里的野外灌木采样横断面以及具有区域降尺度的预测变暖情景,以绘制阿拉斯加北坡驼鹿的当前和预测灌木生境图。驼鹿高大灌木生境呈树枝状空间结构,与河流走廊网络和 7 月平均温度相关。预测情景表明,到 2099 年,驼鹿生境将增加一倍以上。预测变暖预计将增加生境网络的空间凝聚力,从而减少破碎化的影响,这将提高整体生境质量,并可能扩大驼鹿的分布范围。这些发现表明,气候变化如何增加生境连通性并改变北极地区灌木食草动物的分布,包括创造新的群落和生态系统。

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