Southwest University, School of Resource & Environment Science, 2 Tiansheng Road, Chongqing 400716, China.
Wuhan University, School of Resource & Environment Science, 129 Luoyu Road, Wuhan, 430079, China.
Sci Total Environ. 2018 Dec 1;643:1553-1561. doi: 10.1016/j.scitotenv.2018.06.332. Epub 2018 Jul 4.
Understanding the impact of urban expansion on functional connectivity is significant to biodiversity conservation. Particularly, in the Three Gorges Reservoir Area (TGRA, Southwest China), the urban land has rapidly expanded to provide settlements for an enormous population of TGRA migrants. However, the consequence of future land-use changes to the functional connectivity of the local habitat network has rarely been studied. To extend this knowledge, this paper proposes a framework that integrates a novel cellular automata (CA) simulation model and ecological network analysis, taking the TGRA as the study area, to predict how different urban expansion scenarios might affect functional connectivity for a nationally protected species, the leopard. The least-cost path modeling is used, and a set of connectivity indicators are adopted to evaluate functional connectivity. The results show that, the population-growth-based urban expansion maintains a higher connectivity than the business-as-usual and fast-urban-growth scenarios. In addition, the connectivity loss due to urban expansion can be offset by the reforestation efforts of the Green-for-Grain Project. Finally, we identify habitat patches that act as key connectivity providers, and suggest that those patches be prioritized for protection to avoid significant connectivity loss.
了解城市扩张对功能连通性的影响对生物多样性保护具有重要意义。特别是在中国西南地区的三峡库区,城市土地迅速扩张,为三峡库区移民提供了大量的定居点。然而,未来土地利用变化对当地生境网络功能连通性的影响很少得到研究。为了扩展这方面的知识,本文提出了一个框架,该框架结合了一种新的元胞自动机(CA)模拟模型和生态网络分析,以三峡库区为研究区域,预测不同的城市扩张情景如何影响国家保护物种豹的功能连通性。该研究采用最小成本路径建模,并采用一组连通性指标来评估功能连通性。结果表明,基于人口增长的城市扩张比常规情景和快速城市增长情景保持更高的连通性。此外,退耕还林工程的造林努力可以抵消城市扩张造成的连通性损失。最后,我们确定了作为关键连通性提供者的生境斑块,并建议优先保护这些斑块,以避免连通性的显著损失。