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首页> 外文期刊>Oikos: A Journal of Ecology >Distinguishing the signatures of local environmental filtering and regional trait range limits in the study of trait-environment relationships
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Distinguishing the signatures of local environmental filtering and regional trait range limits in the study of trait-environment relationships

机译:区分当地环境过滤和区域特质范围限制的特征环境关系中的签名

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Understanding the imprint of environmental filtering on community assembly along environmental gradients is a key objective of trait-gradient analyses. Depending on local constraints, this filtering generally entails that species departing from an optimum trait value have lower abundances in the community. The community-weighted mean (CWM) and variance (CWV) of trait values are then expected to depict the optimum and intensity of filtering, respectively. However, the trait distribution within the regional species pool and its limits can also affect local CWM and CWV values apart from the effect of environmental filtering. The regional trait range limits are more likely to be reached in communities at the extremes of environmental gradients. Analogous to the mid-domain effect in biogeography, decreasing CWV values in extreme environments can then represent the influence of regional trait range limits rather than stronger filtering in the local environment. We name this effect the 'trait-gradient boundary effect' (TGBE). First, we use a community assembly framework to build simulated communities along a gradient from a species pool and environmental filtering with either constant or varying intensity while accounting for immigration processes. We demonstrate the significant influence of TGBE, in parallel to environmental filtering, on CWM and CWV at the extremes of the environmental gradient. We provide a statistical tool based on Approximate Bayesian Computation to decipher the respective influence of local environmental filtering and regional trait range limits. Second, as a case study, we reanalyze the functional composition of alpine plant communities distributed along a gradient of snow cover duration. We show that leaf trait convergence found in communities at the extremes of the gradient reflect an influence of trait range limits rather than stronger environmental filtering. These findings challenge correlative trait-environment relationships and call for more explicitly identifying the mechanisms responsible of trait convergence/divergence along environmental gradients.
机译:了解沿环境梯度沿着环境梯度对社区组装的环境过滤印记是特质梯度分析的关键目标。根据本地约束,该过滤通常需要脱离最佳特征价值的物种在社区中具有较低的丰富。然后预期特征值的社区加权平均值(CWM)和方差(CWV)分别描绘过滤的最佳和强度。然而,区域物种池中的特质分配及其限制也可能影响局部CWM和CWV值,除了环境过滤的影响。环境特质范围限制更有可能在环境梯度极端的社区中达成。类似于生物地理中的中域效应,可以降低极端环境中的CWV值,然后可以代表区域特征范围限制的影响而不是当地环境中的更强的滤波。我们称之为“特质梯度边界效应”(TGBE)。首先,我们使用社区组装框架,沿着物种池和环境过滤的渐变构建模拟社区,同时占移民过程的同时具有常数或不同的强度。我们展示了TGBE,平行于环境梯度的极端环境过滤的TGBE对环境过滤的重大影响。我们提供了一种基于近似贝叶斯计算的统计工具,以破译局部环境滤波和区域特质范围限制的各个影响。其次,作为一个案例研究,我们重新分析了沿着雪覆盖持续时间的梯度分布的高山植物社区的功能组成。我们展示了在梯度极端的社区中发现的叶状性状会聚反映了特质范围限制而不是更强烈的环境过滤的影响。这些调查结果挑战相关性状环境关系,并呼吁更明确地识别沿环境梯度负责的特质收敛/分歧的机制。

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