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Cross-Scale Analysis of the Region Effect on Vascular Plant Species Diversity in Southern and Northern European Mountain Ranges

机译:南部和北欧山区维管植物物种多样性区域效应的跨尺度分析

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摘要

Background: The divergent glacial histories of southern and northern Europe affect present-day species diversity at coarse-grained scales in these two regions, but do these effects also penetrate to the more fine-grained scales of local communities? Methodology/Principal Findings: We carried out a cross-scale analysis to address this question for vascular plants in two mountain regions, the Alps in southern Europe and the Scandes in northern Europe, using environmentally paired vegetation plots in the two regions (n = 403 in each region) to quantify four diversity components: (i) total number of species occurring in a region (total gamma-diversity), (ii) number of species that could occur in a target plot after environmental filtering (habitat-specific gamma-diversity), (iii) pair-wise species compositional turnover between plots (plot-to-plot beta-diversity) and (iv) number of species present per plot (plot alpha-diversity). We found strong region effects on total gamma-diversity, habitat-specific gamma-diversity and plot-to-plot beta-diversity, with a greater diversity in the Alps even towards distances smaller than 50 m between plots. In contrast, there was a slightly greater plot alpha-diversity in the Scandes, but with a tendency towards contrasting region effects on high and low soil-acidity plots. Conclusions/Significance: We conclude that there are strong regional differences between coarse-grained (landscape-to regional-scale) diversity components of the flora in the Alps and the Scandes mountain ranges, but that these differences do not necessarily penetrate to the finest-grained (plot-scale) diversity component, at least not on acidic soils. Our findings are consistent with the contrasting regional Quaternary histories, but we also consider alternative explanatory models. Notably, ecological sorting and habitat connectivity may play a role in the unexpected limited or reversed region effect on plot alpha-diversity, and may also affect the larger-scale diversity components. For instance, plot connectivity and/or selection for high dispersal ability may increase plot alpha-diversity and compensate for low total gamma-diversity.
机译:背景:南欧和北欧不同的冰川历史以这两个区域的粗粒度尺度影响了当今的物种多样性,但是这些影响是否也渗透到了更细粒度的本地社区中?方法/主要发现:我们使用两个地区的环境成对植被图,对两个山区的维管植物进行了跨尺度分析,这两个山区是欧洲南部的阿尔卑斯山和北欧的Scandes。在每个区域中)以量化四个多样性组成部分:(i)一个区域中出现的物种总数(总伽玛多样性),(ii)在经过环境过滤后目标图中可能出现的物种总数(栖息地特定的伽玛(iii)地块之间的成对物种组成转换(地块间β多样性)和(iv)每个地块中存在的物种数(地块α多样性)。我们发现,区域对总伽马多样性,特定于栖息地的伽马多样性以及地对地β多样性具有强烈的影响,即使在地块之间的距离小于50 m时,阿尔卑斯山的多样性也更大。相反,在斯坎德斯地区,地块的α多样性略大,但在高和低土壤酸度地块上存在区域差异的趋势。结论/意义:我们得出结论,阿尔卑斯山和斯坎德山脉的植物群的粗粒度(景观到区域尺度)多样性组成部分之间存在很大的区域差异,但是这些差异并不一定会渗透到最细的区域。粒状(地块规模)的多样性成分,至少不在酸性土壤上。我们的发现与形成鲜明对比的区域第四纪历史相一致,但我们也考虑了替代解释模型。值得注意的是,生态分类和栖息地的连通性可能在意想不到的有限或反向区域对地块α多样性的影响中起作用,并且还可能影响更大范围的多样性成分。例如,图的连通性和/或对高分散能力的选择可能会增加图的alpha多样性并补偿总的伽马多样性低。

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