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应用网络理论对多物种栖息地网络进行优先级排序,这些网络对气候和土地利用变化具有抗性。

Applying network theory to prioritize multispecies habitat networks that are robust to climate and land-use change.

作者信息

Albert Cécile H, Rayfield Bronwyn, Dumitru Maria, Gonzalez Andrew

机构信息

Aix Marseille Univ, Univ Avignon, CNRS, IRD, IMBE, Case 421 Av Escadrille Normandie Niémen 13 397 Marseille cedex 20, France.

Department of Biology, McGill University, Stewart Biology Building 1205 Docteur Penfield, Montreal, QC, H3A 1B1, Canada.

出版信息

Conserv Biol. 2017 Dec;31(6):1383-1396. doi: 10.1111/cobi.12943. Epub 2017 Jul 31.

Abstract

Designing connected landscapes is among the most widespread strategies for achieving biodiversity conservation targets. The challenge lies in simultaneously satisfying the connectivity needs of multiple species at multiple spatial scales under uncertain climate and land-use change. To evaluate the contribution of remnant habitat fragments to the connectivity of regional habitat networks, we developed a method to integrate uncertainty in climate and land-use change projections with the latest developments in network-connectivity research and spatial, multipurpose conservation prioritization. We used land-use change simulations to explore robustness of species' habitat networks to alternative development scenarios. We applied our method to 14 vertebrate focal species of periurban Montreal, Canada. Accounting for connectivity in spatial prioritization strongly modified conservation priorities and the modified priorities were robust to uncertain climate change. Setting conservation priorities based on habitat quality and connectivity maintained a large proportion of the region's connectivity, despite anticipated habitat loss due to climate and land-use change. The application of connectivity criteria alongside habitat-quality criteria for protected-area design was efficient with respect to the amount of area that needs protection and did not necessarily amplify trade-offs among conservation criteria. Our approach and results are being applied in and around Montreal and are well suited to the design of ecological networks and green infrastructure for the conservation of biodiversity and ecosystem services in other regions, in particular regions around large cities, where connectivity is critically low.

摘要

设计连通景观是实现生物多样性保护目标最广泛采用的策略之一。挑战在于,在气候和土地利用变化不确定的情况下,要在多个空间尺度上同时满足多个物种的连通性需求。为了评估残余栖息地片段对区域栖息地网络连通性的贡献,我们开发了一种方法,将气候和土地利用变化预测中的不确定性与网络连通性研究以及空间多用途保护优先级的最新进展相结合。我们利用土地利用变化模拟来探索物种栖息地网络对不同发展情景的稳健性。我们将我们的方法应用于加拿大蒙特利尔市周边的14种脊椎动物重点物种。在空间优先级划分中考虑连通性会显著改变保护优先级,而且这些改变后的优先级对不确定的气候变化具有稳健性。尽管预计会因气候和土地利用变化而导致栖息地丧失,但基于栖息地质量和连通性设定保护优先级仍能维持该区域大部分的连通性。在保护区设计中,将连通性标准与栖息地质量标准一起应用,在需要保护的面积方面是有效的,而且不一定会加剧保护标准之间的权衡。我们的方法和结果正在蒙特利尔市及其周边地区得到应用,并且非常适合用于设计生态网络和绿色基础设施,以保护其他地区,特别是大城市周边连通性极低地区的生物多样性和生态系统服务。

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