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选择范围:检测对栖息地的尺度依赖性响应的新方法

Spectrum of selection: new approaches to detecting the scale-dependent response to habitat.

作者信息

Mayor S J, Schaefer J A, Schneider D C, Mahoney S P

机构信息

Memorial University of Newfoundland, Department of Biology, St. John's, Newfoundland A1B 3X9, Canada.

出版信息

Ecology. 2007 Jul;88(7):1634-40. doi: 10.1890/06-1672.1.

Abstract

Detecting habitat selection depends on the spatial scale of analysis, but multi-scale studies have been limited by the use of a few, spatially variable, hierarchical levels. We developed spatially explicit approaches to quantify selection along a continuum of scales using spatial (coarse-graining) and geostatistical (variogram) pattern analyses at multiple levels of habitat use (seasonal range, travel routes, feeding areas, and microsites). We illustrate these continuum-based approaches by applying them to winter habitat selection by woodland caribou (Rangifer tarandus caribou) using two key habitat components, Cladina lichens and snow depth. We quantified selection as the reduction in variance in used relative to available sites, thus avoiding reliance on correlations between organism and habitat, for which interpretation can be impeded by cross-scale correlations. By consistently selecting favorable habitat features, caribou experienced reduced variance in these features. The degree to which selection was accounted for by the travel route, feeding area, or microsite levels varied across the scale continuum. Caribou selected for Cladina within a 13-km scale domain and selected shallower snow at all scales. Caribou responded most strongly at the dominant scales of patchiness, implicating habitat heterogeneity as an underlying cause of multi-scale habitat selection. These novel approaches enable a spatial understanding of resource selection behavior.

摘要

检测栖息地选择取决于分析的空间尺度,但多尺度研究一直受到使用少数几个空间可变的层次水平的限制。我们开发了空间明确的方法,通过在多个栖息地利用水平(季节性范围、迁徙路线、觅食区域和微生境)上使用空间(粗粒化)和地质统计(变差函数)模式分析,沿着连续的尺度量化选择。我们通过将这些基于连续体的方法应用于林地驯鹿(Rangifer tarandus caribou)冬季栖息地选择,并使用两个关键栖息地组成部分,即石蕊地衣和雪深,来说明这些方法。我们将选择量化为使用地点相对于可用地点的方差减少,从而避免依赖生物体与栖息地之间的相关性,因为跨尺度相关性可能会妨碍对其的解释。通过持续选择有利的栖息地特征,驯鹿在这些特征上的方差减少。选择在迁徙路线、觅食区域或微生境水平上所占的比例在整个尺度连续体上有所不同。驯鹿在13公里的尺度范围内选择石蕊地衣,并且在所有尺度上都选择较浅的雪。驯鹿在斑块主导尺度上反应最为强烈,这表明栖息地异质性是多尺度栖息地选择的根本原因。这些新颖的方法能够对资源选择行为进行空间理解。

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