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首页> 外文期刊>Studies on neotropical fauna and environment >Assessing future habitat availability for coastal lowland anurans in the Brazilian Atlantic rainforest
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Assessing future habitat availability for coastal lowland anurans in the Brazilian Atlantic rainforest

机译:评估巴西大西洋雨林中沿海低地无脊椎动物的未来栖息地可用性

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摘要

Global warming is expected to cause several modifications to physical environments, and sea level rise is a certain outcome. However, assessment of the potential impacts caused by sea level rise on biodiversity is still emerging. Therefore, we assessed the combined impact of global warming and sea level rise on the potential distribution of 19 coastal lowland anurans in the biodiversity hotspot Atlantic Forest. We applied a correlative species distribution model (SDM) (BIOCLIM) and GIS-based spatial analyses. We evaluated the extent of changes of potential distributions under extreme and moderate global warming scenarios as well as two extreme sea level rise scenarios. Our results suggest wide areas of suitable habitat for most species in the future. However, for 15% of these species the SDMs predict massive losses of range extent as a result of a combination of global warming and sea level rise. Such observations highlight an immediate need to consider the potential effects of sea level rise in conservation action plans. Since the current potential distribution of these anuran species is likely underestimated, we also analyzed their environmental niche under current conditions in order to provide a baseline for further field surveys. Considering this current state of knowledge for such species, species distribution modeling to help gather further information on unknown species is desirable.
机译:预计全球变暖会导致物理环境发生多种变化,并且海平面上升是必然的结果。但是,关于海平面上升对生物多样性的潜在影响的评估仍在进行中。因此,我们评估了全球变暖和海平面上升对生物多样性热点大西洋森林中19个沿海低地无脊椎动物的潜在分布的综合影响。我们应用了相关物种分布模型(SDM)(BIOCLIM)和基于GIS的空间分析。我们评估了极端和中等全球变暖情景以及两个极端海平面上升情景下潜在分布的变化程度。我们的研究结果表明,将来大多数物种都可以在宽阔的适宜栖息地中生活。然而,对于这些物种中的15%,SDM预测由于全球变暖和海平面上升的共同作用,范围范围内的大量损失。这些观察结果突出表明,迫切需要在保护行动计划中考虑海平面上升的潜在影响。由于这些无氧物种的当前潜在分布可能被低估了,我们还分析了它们在当前条件下的环境利基,以便为进一步的野外调查提供基准。考虑到此类物种的当前知识状态,需要进行物种分布建模以帮助收集有关未知物种的更多信息。

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