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Predicting greater sage‐grouse habitat selection at the southern periphery of their range

机译:预测南方周边的大型鼠尾草栖息地选择

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摘要

Mapping suitable habitat is an important process in wildlife conservation planning. Species distribution reflects habitat selection processes occurring across multiple spatio‐temporal scales. Because habitat selection may be driven by different factors at different scales, conservation planners require information at the scale of the intervention to plan effective management actions. Previous research has described habitat selection processes shaping the distribution of greater sage‐grouse (Centrocercus urophasianus; sage‐grouse) at the range‐wide scale. Finer‐scale information for applications within jurisdictional units inside the species range is lacking, yet necessary, because state wildlife agencies are the management authority for sage‐grouse in the United States. We quantified seasonal second‐order habitat selection for sage‐grouse across the state of Utah to produce spatio‐temporal predictions of their distribution at the southern periphery of the species range. We used location data obtained from sage‐grouse marked with very‐high‐frequency radio‐transmitters and lek location data collected between 1998 and 2013 to quantify species habitat selection in relation to a suite of topographic, edaphic, climatic, and anthropogenic variables using random forest algorithms. Sage‐grouse selected for greater sagebrush (Artemisia spp.) cover, higher elevations, and gentler slopes and avoided lower precipitations and higher temperatures. The strength of responses to habitat variables varied across seasons. Anthropogenic variables previously reported as affecting their range‐wide distribution (i.e., roads, powerlines, communication towers, and agricultural development) were not ranked as top predictors at our focal scale. Other than strong selection for sagebrush cover, the responses we observed differed from what has been reported at the range‐wide scale. These differences likely reflect the unique climatic, geographic, and topographic context found in the southern peripheral area of the species distribution compared to range‐wide environmental gradients. Our results highlight the importance of considering appropriateness of scale when planning conservation actions for wide‐ranging species.
机译:映射合适的栖息地是野生动物保护计划中的一个重要过程。物种分布反映了跨空间尺度发生的栖息地选择过程。由于栖息地选择可能由不同尺度的不同因素驱动,因此保护规划人员需要在干预规模上进行信息以计划有效的管理行动。以前的研究描述了栖息地选择过程,塑造了塑形大鼠尾草(Centrocusus Urophasianus; Sage-Grouse)的范围范围的范围。物种范围内辖区范围内的申请的更精细的信息缺乏,但必要是必要的,因为州野生动物机构​​是美国鼠尾草的管理权。我们在犹他州的状态下量化了季节性二阶栖息地选择,以产生它们在物种南部周边的分布的时空预测。我们使用了从1998年至2013之间的非常高频无线电发射器和lek位置数据的鼠尾草放松所获得的位置数据来定量与随机使用随机的地形,助理,气候和人为变量的含量选择。森林算法。为更大的Sagebrush(Artemisia SPP)封面,高度高度和温和的倾斜,并避免降低沉淀和更高的温度。对栖息地变量的反应强度各不相同。以前报告的人为变量影响其范围的范围的分布(即道路,电力线,沟通塔和农业发展)并未排名为我们焦平衡的最高预测因子。除了SageBrush封面的强烈选择外,我们观察到的响应与在范围范围的范围内报告的响应不同。与范围范围的环境梯度相比,这些差异可能反映了物种分布的南部外围区域中的独特气候,地理和地形和地形背景。我们的结果突出了考虑宽范围物种的保护行动时考虑规模适当性的重要性。

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