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首页> 外文期刊>Conservation Biology >Connectivity Planning to Address Climate Change
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Connectivity Planning to Address Climate Change

机译:连接规划以应对气候变化

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摘要

As the climate changes, human land use may impede species from tracking areas with suitable climates. Maintaining connectivity between areas of different temperatures could allow organisms to move along temperature gradients and allow species to continue to occupy the same temperature space as the climate warms. We used a coarse-filter approach to identify broad corridors for movement between areas where human influence is low while simultaneously routing the corridors along present-day spatial gradients of temperature. We modified a cost-distance algorithm to model these corridors and tested the model with data on current land-use and climate patterns in the Pacific Northwest of the United States. The resulting maps identified a network of patches and corridors across which species may move as climates change. The corridors are likely to be robust to uncertainty in the magnitude and direction of future climate change because they are derived from gradients and land-use patterns. The assumptions we applied in our model simplified the stability of temperature gradients and species responses to climate change and land use, but the model is flexible enough to be tailored to specific regions by incorporating other climate variables or movement costs. When used at appropriate resolutions, our approach may be of value to local, regional, and continental conservation initiatives seeking to promote species movements in a changing climate.
机译:随着气候变化,人类土地利用可能会阻碍气候适宜地区的物种入侵。保持不同温度区域之间的连通性可以使生物体沿温度梯度移动,并使物种在气候变暖时继续占据相同的温度空间。我们使用粗滤器方法来识别宽阔的走廊,以在人类影响力较低的区域之间移动,同时沿着当今的空间温度梯度布置走廊。我们修改了一种成本-距离算法来对这些走廊进行建模,并使用有关美国西北太平洋地区当前土地利用和气候模式的数据对模型进行了测试。生成的地图确定了斑块和走廊的网络,物种可能会随着气候变化而在其中移动。这些走廊很可能对未来气候变化的幅度和方向的不确定性具有鲁棒性,因为它们来自梯度和土地利用方式。我们在模型中应用的假设简化了温度梯度和物种对气候变化和土地利用的响应的稳定性,但是该模型具有足够的灵活性,可以通过结合其他气候变量或移动成本来适应特定区域。当以适当的分辨率使用时,我们的方法可能对寻求在气候变化中促​​进物种运动的地方,区域和大陆保护计划具有价值。

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