论文标题

农业景观中的栖息地连通性,改善了构造湿地的多功能性作为基于自然的解决方案

Habitat connectivity in agricultural landscapes improving multi-functionality of constructed wetlands as nature-based solutions

论文作者

Préau, Clémentine, Tournebize, Julien, Lenormand, Maxime, Alleaume, Samuel, Boussada, Véronique Gouy, Luque, Sandra

论文摘要

在农业景观中预防生物多样性损失以保护生态系统稳定性和功能本身至关重要,并且在维持相关的生态系统服务方面至关重要。强烈的农业导致物种丰富度和物种池均质的丧失以及自然栖息地和地下水污染的破裂。建造的湿地是基于自然的溶液(NB),通过拦截农作物和地表水之间的颗粒,营养和农药的转移来缓冲水质的降解。在坎斯特的流域,污水坑直接向地下水缩短了水资源脆弱性的地下水,建议建造湿地来减轻农业污染物。建造的湿地还有可能通过为野生动植物提供避难和繁殖地来改善景观连通性,尤其是针对两栖动物。我们在这里提出了一种方法,可以从栖息地连通性的角度使用建造的湿地来确定减少水污染的最佳位置。我们在区域规模上使用生态利基建模来模拟栖息地适合9种两栖动物的潜力,并推断景观如何阻碍物种运动。我们将这些结果结合在一起,以确定农业集水区的运营量表的连通性优先级。我们的框架使我们能够从该物种的角度来确定最佳区域,从而分析旨在减少水污染并改善两栖动物物种栖息地总体连通性的多功能湿地的影响。更普遍地,我们显示了栖息地连通性评估的潜力,以改善NBS的多功能性以减轻污染。

The prevention of biodiversity loss in agricultural landscapes to protect ecosystem stability and functions is of major importance in itself and for the maintenance of associated ecosystem services. Intense agriculture leads to a loss in species richness and homogenization of species pools as well as the fragmentation of natural habitats and groundwater pollution. Constructed wetlands stand as nature-based solutions (NBS) to buffer the degradation of water quality by intercepting the transfer of particles, nutrients and pesticides between crops and surface waters. In karstic watersheds where sinkholes short-cut surface water directly to groundwater increasing water resource vulnerability, constructed wetlands are recommended to mitigate agricultural pollutants. Constructed wetlands also have the potential to improve landscape connectivity by providing refuge and breeding sites for wildlife, especially for amphibians. We propose here a methodology to identify optimal locations for water pollution mitigation using constructed wetlands from the perspective of habitat connectivity. We use ecological niche modelling at the regional scale to model the potential of habitat suitability for nine amphibian species, and to infer how the landscape impedes species movements. We combine those results to graph theory to identify connectivity priorities at the operational scale of an agricultural catchment area. Our framework allowed us to identify optimal areas from the point of view of the species, to analyze the effect of multifunctional constructed wetlands aiming to both reduce water pollution and to improve amphibian species habitat overall connectivity. More generally, we show the potential of habitat connectivity assessment to improve multifunctionality of NBS for pollution mitigation.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源