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Distinguishing the importance between habitat specialization and dispersal limitation on species turnover

机译:区分栖息地专业化和传播限制对物种周转的重要性

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摘要

Understanding what governs community assembly and the maintenance of biodiversity is a central issue in ecology, but has been a continuing debate. A key question is the relative importance of habitat specialization (niche assembly) and dispersal limitation (dispersal assembly). In the middle of the Loess Plateau, northwestern China, we examined how species turnover in Liaodong oak (Quercus wutaishanica) forests differed between observed and randomized assemblies, and how this difference was affected by habitat specialization and dispersal limitation using variation partitioning. Results showed that expected species turnover based on individual randomization was significantly lower than the observed value (P < 0.01). The turnover deviation significantly depended on the environmental and geographical distances (P < 0.05). Environmental and spatial variables significantly explained approximately 40% of the species composition variation at all the three layers (P < 0.05). However, their contributions varied among forest layers; the herb and shrub layers were dominated by environmental factors, whereas the canopy layer was dominated by spatial factors. Our results underscore the importance of synthetic models that integrate effects of both dispersal and niche assembly for understanding the community assembly. However, habitat specialization (niche assembly) may not always be the dominant process in community assembly, even under harsh environments. Community assembly may be in a trait-dependent manner (e.g., forest layers in this study). Thus, taking more species traits into account would strengthen our confidence in the inferred assembly mechanisms.
机译:了解什么决定社区集会和生物多样性的维护是生态学的中心问题,但一直是持续的辩论。一个关键问题是栖息地专业化(生态位组装)和分散限制(分散组装)的相对重要性。在中国西北的黄土高原中部,我们研究了观察到的和随机集会的辽东栎林(五台山栎)森林的树种更新如何差异,以及这种差异如何受到生境专业化和使用变异分区的扩散限制的影响。结果表明,基于个体随机性的预期物种更新率显着低于观察值(P <0.01)。营业额偏差主要取决于环境和地理距离(P <0.05)。环境和空间变量显着解释了在所有三层中大约40%的物种组成变化(P <0.05)。但是,它们的贡献因森林层而异。草本和灌木层受环境因素影响,而冠层受空间因素影响。我们的结果强调了综合模型的重要性,该模型综合了散布和利基装配的效果,有助于理解社区装配。但是,即使在恶劣的环境下,栖息地专业化(生态位组装)也不一定总是社区组装的主导过程。社区集会可能以特质依赖的方式出现(例如,本研究中的森林层)。因此,考虑更多的物种性状将增强我们对推断的组装机制的信心。

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