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The combined effects of climate change and river fragmentation on the distribution of Andean Amazon fishes

机译:气候变化与河流碎片对Andean Amazon鱼类分布的综合影响

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摘要

Upstream range shifts of freshwater fishes have been documented in recent years due to ongoing climate change. River fragmentation by dams, presenting physical barriers, can limit the climatically induced spatial redistribution of fishes. Andean freshwater ecosystems in the Neotropical region are expected to be highly affected by these future disturbances. However, proper evaluations are still missing. Combining species distribution models and functional traits of Andean Amazon fishes, coupled with dam locations and climatic projections (2070s), we (a) evaluated the potential impacts of future climate on species ranges, (b) investigated the combined impact of river fragmentation and climate change and (c) tested the relationships between these impacts and species functional traits. Results show that climate change will induce range contraction for most of the Andean Amazon fish species, particularly those inhabiting highlands. Dams are not predicted to greatly limit future range shifts for most species (i.e., the Barrier effect). However, some of these barriers should prevent upstream shifts for a considerable number of species, reducing future potential diversity in some basins. River fragmentation is predicted to act jointly with climate change in promoting a considerable decrease in the probability of species to persist in the long-term because of splitting species ranges in smaller fragments (i.e., the Isolation effect). Benthic and fast-flowing water adapted species with hydrodynamic bodies are significantly associated with severe range contractions from climate change.
机译:由于持续的气候变化,近年来近年来记录了淡水鱼的上游偏移。河流破碎坝,呈现出物理障碍,可以限制气候诱导的鱼类的空间再分配。探望着NeoTropical地区的Andean淡水生态系统受到这些未来干扰的影响。但是,仍然缺少适当的评估。结合Andean Amazon Fishes的物种分布模型和功能性状,加上大坝位置和气候预测(2070年代),我们(a)评估了未来气候对物种范围的潜在影响,(b)调查了河流碎片和气候的综合影响改变和(c)测试了这些影响与物种功能性的关系。结果表明,气候变化将诱导大多数安第斯亚马逊鱼类的范围收缩,特别是那些居住的高地。没有预测大多数物种(即屏障效应)的未来范围变化大大限制了大坝。然而,其中一些障碍应防止上游转移以获得相当数量的物种,从而减少一些盆地的未来潜在多样性。预计河碎碎片将与气候变化共同行动,因为在较小的片段中分裂物种范围(即隔离效果),在长期内促进物种的可能性相当降低。具有流体动力学体的底栖和快速流动的水适应性与气候变化的严重范围收缩显着相关。

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