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Contrasting patterns and drivers in taxonomic versus functional diversity, and community assembly of aquatic plants in subtropical lakes

机译:亚热带湖泊中分类与功能多样性的对比模式和司机,以及水产植物的社区组装

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Little is known about the differences in patterns and drivers between species richness (SR) and functional diversity (FD) in aquatic plants at large scales, and the underlying assembly mechanisms are not well studied. We compared SR and FD patterns of aquatic plant assemblages in 29 subtropical lakes, and detected the underlying assembly rules. Environmental drivers of SR and FD were revealed by GLM and GAM models, and the relative importance of assembly rules was determined by a null model approach. SR and FD of aquatic plants presented different patterns and drivers in this region. SR was significantly correlated with geographic, hydrological and water quality variables. We found a lower functional richness but higher functional evenness and divergence in the highland lakes. There was no significant correlation between functional richness and environmental variables. Null model analyses showed that most values of standardized effect size were located between the confidence interval, indicating a dominance of randomness. Deterministic processes such as limiting similarity and habitat filtering were also important in individual lakes. Habitat filtering plays a stronger role shaping the hydrophyte assemblages especially with the increase of elevation, area and AWLF (amplitude of water level fluctuation). Our results demonstrated that FD, in contrast to SR, were more resistant to environmental variations, and hydrology played an important role in shaping both SR and FD patterns in lake ecosystems. Furthermore, we revealed complex assembly rules and emphasized the importance of both stochastic and deterministic mechanisms in structuring aquatic plant assemblages at the regional scale.
机译:关于在大尺度的水生植物中物种丰富度(SR)和功能多样性(FD)之间的模式和驱动器之间的差异毫无熟悉,并且潜在的装配机制并不具备很好的研究。我们比较了29个亚热带湖泊的水生植物组合的SR和FD模式,并检测了潜在的组装规则。 GLM和GAM模型揭示了SR和FD的环境驱动程序,并通过无效模型方法确定了装配规则的相对重要性。水生植物的SR和FD在该地区提出了不同的模式和司机。 SR与地理,水文和水质变量显着相关。我们发现了较低的功能性丰富,但在高地湖泊中的功能性均匀性和发散程度较高。功能性丰富和环境变量之间没有显着相关性。 NULL模型分析表明,标准化效果大小的大多数值位于置信区间之间,表明随机性的主导地位。限制相似性和栖息地过滤的确定性过程在个别湖泊中也很重要。栖息地过滤在液体升高,区域和AWLF的增加(水位波动的幅度)增加,塑造了更强的作用。我们的结果表明,与SR相比,FD对环境变化更具抵抗力,水文在塑造湖泊生态系统中的SR和FD模式方面发挥了重要作用。此外,我们透露了复杂的组装规则,并强调了随机和确定性机制在区域规模上建立了水生植物组合的重要性。

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