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通往远郊湿地更高持久性和生物多样性之路。

The road to higher permanence and biodiversity in exurban wetlands.

作者信息

Urban Mark C, Roehm Robert

机构信息

Department of Ecology and Evolutionary Biology, University of Connecticut, 75 North Eagleville Rd, Unit 3043, Storrs, Mansfield, CT, 06269, USA.

Center of Biological Risk, University of Connecticut, 75 North Eagleville Rd, Unit 3043, Storrs, Mansfield, CT, 06269, USA.

出版信息

Oecologia. 2018 Jan;186(1):291-302. doi: 10.1007/s00442-017-3989-y. Epub 2017 Nov 2.

Abstract

Exurban areas are expanding throughout the world, yet their effects on local biodiversity remain poorly understood. Wetlands, in particular, face ongoing and substantial threats from exurban development. We predicted that exurbanization would reduce the diversity of wetland amphibian and invertebrate communities and that more spatially aggregated residential development would leave more undisturbed natural land, thereby promoting greater local diversity. Using structural equation models, we tested a series of predictions about the direct and indirect pathways by which exurbanization extent, spatial pattern, and wetland characteristics might affect diversity patterns in 38 wetlands recorded during a growing season. We used redundancy, indicator species, and nested community analyses to evaluate how exurbanization affected species composition. In contrast to expectations, we found higher diversity in exurban wetlands. We also found that housing aggregation did not significantly affect diversity. Exurbanization affected biodiversity indirectly by increasing roads and development, which promoted permanent wetlands with less canopy cover and more aquatic vegetation. These pond characteristics supported greater diversity. However, exurbanization was associated with fewer temporary wetlands and fewer of the species that depend on these habitats. Moreover, the best indicator species for an exurban wetland was the ram's head snail, a common disease vector in disturbed ponds. Overall, results suggest that exurbanization is homogenizing wetlands into more permanent water bodies. These more permanent, exurban ponds support higher overall animal diversity, but exclude temporary wetland specialists. Conserving the full assemblage of wetland species in expanding exurban regions throughout the world will require protecting and creating temporary wetlands.

摘要

远郊地区正在全球范围内不断扩张,但其对当地生物多样性的影响仍知之甚少。尤其是湿地,正面临着来自远郊开发的持续且重大的威胁。我们预测,远郊城市化会降低湿地两栖动物和无脊椎动物群落的多样性,而且空间上更为集中的住宅开发会留下更多未受干扰的自然土地,从而促进更高的当地生物多样性。我们使用结构方程模型,检验了一系列关于远郊城市化程度、空间格局和湿地特征可能影响生长季记录的38个湿地多样性格局的直接和间接途径的预测。我们使用冗余分析、指示物种分析和嵌套群落分析来评估远郊城市化如何影响物种组成。与预期相反,我们发现远郊湿地的生物多样性更高。我们还发现住房集聚对生物多样性没有显著影响。远郊城市化通过增加道路和开发间接影响生物多样性,这促进了永久性湿地的形成,这些湿地树冠覆盖较少,水生植被较多。这些池塘特征支持了更高的生物多样性。然而,远郊城市化与较少的临时湿地以及依赖这些栖息地的物种数量减少有关。此外,远郊湿地的最佳指示物种是公羊头蜗牛,它是受干扰池塘中常见的疾病传播媒介。总体而言,结果表明远郊城市化正在将湿地同质化成更多的永久性水体。这些更永久性的远郊池塘支持更高的总体动物多样性,但排除了临时湿地特有的物种。在全球不断扩张的远郊地区保护湿地物种的完整组合将需要保护和创建临时湿地。

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