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走廊最有利于保护区域网络的功能连接。

Corridors best facilitate functional connectivity across a protected area network.

机构信息

School of Environmental Studies, University of Victoria, Victoria, BC, V8Z 2Y2, Canada.

Pacific Forestry Centre, Natural Resources Canada, Victoria, BC, V8Z 1M5, Canada.

出版信息

Sci Rep. 2019 Jul 26;9(1):10852. doi: 10.1038/s41598-019-47067-x.

Abstract

Biologging data allow animal ecologists to directly measure species' fine-scale spatiotemporal responses to environments, such as movement - critical for our understanding of biodiversity declines in the Anthropocene. Animal movement between resource patches is a behavioral expression of multiple ecological processes that affect individual fitness. Protected area (PA) networks are a tool used to conserve biodiversity by sustaining habitat patches across vast heterogeneous landscapes. However, our ability to design PA networks that conserve biodiversity relies on our accurate understanding of animal movement and functional connectivity; this understanding is rarely tested in real-world situations due to the large geographic expanse of most PA networks. Using a tractable PA network mesocosm, we employ cutting-edge biologging technology to analyze animal movement decisions in response to a highly heterogeneous landscape. We analyze these data to test, in a novel way, three common hypotheses about functional connectivity - structural corridors, least cost paths, and stepping stones. Consistently, animals moved along structurally self-similar corridors. In reference to the Aichi 2020 Biodiversity Targets, relying on species to "stepping stone" across habitat remnants may not achieve protected area network conservation objectives.

摘要

生物遥测数据使动物生态学家能够直接测量物种对环境的精细时空响应,例如运动——这对于我们理解人类世生物多样性下降至关重要。动物在资源斑块之间的运动是影响个体适应性的多种生态过程的行为表现。保护地网络是通过在广阔的异质景观中维持生境斑块来保护生物多样性的一种工具。然而,我们设计能够保护生物多样性的保护地网络的能力取决于我们对动物运动和功能连通性的准确理解;由于大多数保护地网络的地理范围都很大,因此很少在实际情况下进行这种理解的测试。我们使用一个易于处理的保护地网络模拟系统,利用最先进的生物遥测技术来分析动物对高度异质景观的运动决策。我们分析这些数据,以新颖的方式测试了关于功能连通性的三个常见假设——结构走廊、最小成本路径和踏脚石。一致的是,动物沿着结构上自相似的走廊移动。参照 2020 年爱知生物多样性目标,依靠物种在“踏脚石”上跨越生境残余物可能无法实现保护地网络的保护目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d38c/6659697/975733186c67/41598_2019_47067_Fig1_HTML.jpg

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