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Evaluating multiple spatial scales to understand the distribution of anuran beta diversity in the Brazilian Atlantic Forest

机译:评估多个空间尺度,以了解巴西大西洋森林中无色β生物多样性的分布

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Abstract We partitioned the total beta diversity in the species composition of anuran tadpoles to evaluate if species replacement and nestedness components are congruent at different spatial resolutions in the Brazilian Atlantic Forest. We alternated the sampling grain and extent of the study area (among ponds at a site, among ponds within regions, among sites within regions, and among sites within regions pooled together) to assess the importance of anuran beta diversity components. We then performed variation partitioning to evaluate the congruence of environmental descriptors and geographical distance in explaining the spatial distribution of the species replacement and nestedness components. We found that species replacement was the main component of beta diversity, independent of the sampling grain and extent. Furthermore, when considering the same sampling grain and increasing the extent, the values of species replacement increased. On the other hand, when considering the same extent and increasing the sampling grain, the values of species replacement decreased. At the smallest sampling grain and extent, the environmental descriptors and geographic distance were not congruent and alternated in the percentage of variation explaining the spatial distribution of species replacement and nestedness. At the largest spatial scales (SSs), the biogeographical regions showed higher values of the percentage explaining the variation in the beta diversity components. We found high values of species replacement independently of the spatial resolution, but the processes driving community assembly seem to be dependent on the SS. At small scales, both stochastic and deterministic factors might be important processes structuring anuran tadpole assemblages. On the other hand, at a large spatial grain and extent, the processes restricting species distributions might be more effective for drawing inferences regarding the variation in anuran beta diversity in different regions of the Brazilian Atlantic Forest.
机译:摘要我们在无核t的物种组成中划分了总的β多样性,以评估在不同的空间分辨率下巴西大西洋森林中物种替代和嵌套组成是否一致。我们对研究区域(区域内的池塘之间,区域内的池塘之间,区域内的站点之间,区域内的站点之间以及区域内的区域内的各个站点集合在一起)之间的采样粒度和范围进行了交替,以评估auran beta多样性组成部分的重要性。然后,我们在解释物种替换和嵌套组件的空间分布时,进行了变分划分,以评估环境描述符和地理距离的一致性。我们发现,物种替代是β多样性的主要组成部分,与采样颗粒和范围无关。此外,当考虑相同的采样谷物并增加范围时,物种替换值增加。另一方面,当考虑相同程度并增加采样谷物时,物种替换值降低。在最小的采样粒度和程度下,环境描述符和地理距离并不完全一致,并且在变化百分比上互不相同,这说明了物种置换和嵌套的空间分布。在最大的空间尺度上(SSs),生物地理区域显示出更高的百分比值,说明了β多样性成分的变化。我们发现与空间分辨率无关的物种替换具有很高的价值,但是驱动社区组装的过程似乎取决于SS。在小规模上,随机因素和确定性因素都可能是构建无核t组合的重要过程。另一方面,在较大的空间粒度和范围内,限制物种分布的过程可能更有效,以便得出有关巴西大西洋森林不同区域中阿努兰β多样性变化的推断。

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