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Multiple facets of stream macroinvertebrate alpha diversity are driven by different ecological factors across an extensive altitudinal gradient

机译:在广泛的海拔梯度上不同的生态因子驱动着河水大型无脊椎动物阿尔法多样性的多个方面

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摘要

Environmental filtering and spatial structuring are important ecological processes for the generation and maintenance of biodiversity. However, the relative importance of these ecological drivers for multiple facets of diversity is still poorly understood in highland streams. Here, we examined the responses of three facets of stream macroinvertebrate alpha diversity to local environmental, landscape‐climate and spatial factors in a near‐pristine highland riverine ecosystem. Taxonomic (species richness, Shannon diversity, and evenness), functional (functional richness, evenness, divergence, and Rao's Quadratic entropy), and a proxy of phylogenetic alpha diversity (taxonomic distinctness and variation in taxonomic distinctness) were calculated for macroinvertebrate assemblages in 55 stream sites. Then Pearson correlation coefficient was used to explore congruence of indices within and across the three diversity facets. Finally, multiple linear regression models and variation partitioning were employed to identify the relative importance of different ecological drivers of biodiversity. We found most correlations between the diversity indices within the same facet, and between functional richness and species richness were relatively strong. The two phylogenetic diversity indices were quite independent from taxonomic diversity but correlated with functional diversity indices to some extent. Taxonomic and functional diversity were more strongly determined by environmental variables, while phylogenetic diversity was better explained by spatial factors. In terms of environmental variables, habitat‐scale variables describing habitat complexity and water physical features played the primary role in determining the diversity patterns of all three facets, whereas landscape factors appeared less influential. Our findings indicated that both environmental and spatial factors are important ecological drivers for biodiversity patterns of macroinvertebrates in Tibetan streams, although their relative importance was contingent on different facets of diversity. Such findings verified the complementary roles of taxonomic, functional and phylogenetic diversity, and highlighted the importance of comprehensively considering multiple ecological drivers for different facets of diversity in biodiversity assessment.
机译:环境过滤和空间结构是生物多样性产生和维持的重要生态过程。然而,在高原河流中,这些生态驱动因素对于多样性的多个方面的相对重要性仍然知之甚少。在这里,我们研究了近原始高原河流生态系统中河流大型无脊椎动物α多样性的三个方面对局部环境,景观气候和空间因素的响应。计算了55种大型无脊椎动物组合的分类学(物种丰富度,香农多样性和均匀度),功能性(功能丰富度,均匀度,发散度和Rao二次熵)和系统发育alpha多样性的代名词(分类学差异性和分类学差异性)。流网站。然后,使用Pearson相关系数来探索三个多样性方面内和之间的指标的一致性。最后,采用多元线性回归模型和变异分区来确定生物多样性的不同生态驱动因素的相对重要性。我们发现同一方面内多样性指数之间,功能丰富度和物种丰富度之间的大多数相关性都较强。这两个系统发育多样性指数与分类学多样性完全无关,但在某种程度上与功能多样性指数相关。分类学和功能多样性由环境变量决定,而系统发育多样性由空间因素更好地解释。在环境变量方面,描述栖息地复杂性和水物理特征的栖息地规模变量在确定所有三个方面的多样性模式中起主要作用,而景观因素似乎影响较小。我们的发现表明,环境因素和空间因素都是西藏河流中大型无脊椎动物生物多样性模式的重要生态驱动力,尽管它们的相对重要性取决于多样性的不同方面。这些发现证实了生物分类,功能和系统发育多样性的互补作用,并强调了在生物多样性评估中综合考虑多种生态驱动因素对多样性的不同方面的重要性。

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