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Global patterns of distribution in stream detritivores: implications for biodiversity loss in changing climates

机译:溪流有害生物的全球分布格局:气候变化对生物多样性丧失的影响

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摘要

Aim. We tested the hypothesis that shredder detritivores, a key trophic guild in stream ecosystems, are more diverse at higher latitudes, which has important ecological implications in the face of potential biodiversity losses that are expected as a result of climate change. We also explored the dependence of local shredder diversity on the regional species pool across latitudes, and examined the influence of environ- mental factors on shredder diversity. Location: World-wide (156 sites from 17 regions located in all inhabited continents at latitudes ranging from 67° N to 41° S). Methods: We used linear regression to examine the latitudinal variation in shredder diversity at different spatial scales: alpha (a), gamma (g) and beta (b) diversity. We also explored the effect of g-diversity on a-diversity across latitudes with regression analysis, and the possible influence of local environmental factors on shredder diversity with simple correlations. Results: Alpha diversity increased with latitude, while g- and b-diversity showed no clear latitudinal pattern. Temperate sites showed a linear relationship between g- and a-diversity; in contrast, tropical sites showed evidence of local species saturation, which may explain why the latitudinal gradient in a-diversity is not accompanied by a gradient in g-diversity. Alpha diversity was related to several local habitat characteristics, but g- and b-diversity were not related to any of the environmental factors measured. Main conclusions: Our results indicate that global patterns of shredder diversity are complex and depend on spatial scale. However, we can draw several conclusions that have important ecological implications. Alpha diversity is limited at tropical sites by local factors, implying a higher risk of loss of key species or the whole shredder guild (the latter implying the loss of trophic diversity). Even if regional species pools are not particularly species poor in the tropics, colonization from adjacent sites may be limited. Moreover, many shredder species belong to cool-adapted taxa that may be close to their thermal maxima in the tropics, which makes them more vulnerable to climate warming. Our results suggest that tropical streams require specific scientific attention and conservation efforts to prevent loss of shredder biodiversity and serious alteration of ecosystem processes.
机译:目标。我们检验了以下假设:粉碎的碎屑植物是河流生态系统中的重要营养行会,在较高的纬度上更加多样化,面对气候变化可能造成的生物多样性潜在损失,这对生态系统具有重要的影响。我们还探讨了本地碎纸机多样性对整个纬度区域物种库的依赖性,并研究了环境因素对碎纸机多样性的影响。地点:全球范围(来自所有居住大洲的17个地区的156个地点,纬度范围为北纬67°至41°S)。方法:我们使用线性回归来检验切碎机多样性在不同空间尺度上的纬度变化:α(a),γ(g)和beta(b)多样性。我们还通过回归分析探索了g多样性对跨纬度a多样性的影响,以及通过简单的相关性分析了局部环境因素对切碎机多样性的可能影响。结果:α多样性随纬度增加,而g和b多样性则没有清晰的纬度分布。温带部位显示出g-多样性和a-多样性之间的线性关系。相反,热带地区显示出本地物种饱和的证据,这可以解释为什么a多样性的纬度梯度没有g多样性的梯度。 Alpha多样性与几个当地栖息地特征有关,但g和b多样性与所测量的任何环境因素均无关。主要结论:我们的结果表明,切碎机多样性的全球格局非常复杂,并且取决于空间规模。但是,我们可以得出一些具有重要生态意义的结论。热带地区的阿尔法多样性受到当地因素的限制,这意味着丧失主要物种或整个切碎行会的风险更高(后者意味着营养多样性的丧失)。即使区域物种库在热带地区不是特别贫瘠的物种,也可能会限制相邻站点的定居。此外,许多切碎机物种属于适应凉爽的类群,在热带地区可能接近其热最大值,这使它们更容易受到气候变暖的影响。我们的结果表明,热带溪流需要特别的科学关注和保护工作,以防止切碎生物多样性的丧失和生态系统过程的严重改变。

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