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Patterns of phylogenetic beta diversity in China's grasslandsin in relation to geographical and environmental distance

机译:中国草地系统发育β多样性与地理和环境距离的关系

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Patterns and determinants of beta (beta-) diversity can be used to explore the underlying mechanisms regulating community assembly. Despite being the most commonly used measure of beta-diversity, species turnover does not consider the evolutionary differences among species, treating all species equally. Incorporating information on phylogenetic non-independence or relatedness among species in the calculation of beta-diversity may substantially advance our understanding of the ecological and evolutionary mechanisms structuring communities. Here, we investigate the relative influence of geographical distance and differences in environmental conditions (environmental distance) on the phylogenetic beta-diversity between grassland communities expanding 4000 km across the Tibetan Plateau, the Inner Mongolia Plateau and the Xinjiang Autonomous Region in China. Both observed and standardized effect size of phylogenetic beta-diversity were significantly correlated with geographical and environmental distance across all regions. However, the effect of geographical distance on the standardized effect size of phylogenetic beta-diversity disappeared when environmental distance was controlled. We also found that within different regions, the effect of environmental distance on both observed and standardized effect size of phylogenetic beta-diversity was more significant than geographical distance. Among environmental variables, climate played a more important role in shaping observed phylogenetic beta-diversity across and within regions, and standardized effect size of phylogenetic beta-diversity across regions. Soil properties played a more important role in shaping standardized effect size of phylogenetic beta-diversity within regions. The phylogenetic beta-diversity of species from dicot and monocot clades exhibited similar patterns along environmental and geographical distance. The results suggest that at the study scale, phylogeny of grassland communities in China is predominantly structured by environmental filtering, and the dominant environmental factors may be scale-dependent.
机译:β(beta-)多样性的模式和决定因素可用于探索调节社区装配的潜在机制。尽管它是最常用的β多样性度量,但物种更新并未考虑物种之间的进化差异,而是平等对待所有物种。将有关物种间系统发生非独立性或相关性的信息纳入β-多样性的计算中,可能会大大提高我们对构建群落的生态和进化机制的理解。在这里,我们调查了地理距离和环境条件(环境距离)差异对跨越青藏高原,内蒙古高原和中国新疆自治区4000 km的草地群落之间的系统发生β多样性的相对影响。系统发育β多样性的观测效应和标准化效应大小均与所有区域的地理和环境距离显着相关。但是,当控制环境距离时,地理距离对系统发生β多样性的标准化影响大小的影响消失了。我们还发现,在不同区域内,环境距离对系统发育β多样性的观测效应和标准化效应量的影响均比地理距离更为显着。在环境变量中,气候在塑造区域内和区域内已观察到的系统发生β-多样性以及区域间系统发生β-多样性的标准化效应量方面起着更为重要的作用。在塑造区域内系统发生β多样性的标准化效应量方面,土壤特性起着更重要的作用。双子叶植物和单子叶植物进化枝物种的系统进化β-多样性沿环境和地理距离表现出相似的模式。结果表明,在研究规模上,中国草地群落的系统发育主要是通过环境过滤来构成的,并且主要的环境因素可能与规模有关。

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