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Spatial scale‐dependent phylogenetic signal in species distributions along geographic and elevation gradients in a mountainous rangeland

机译:山区草地沿地理和海拔梯度的物种分布中与空间尺度相关的系统发生信号

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The mechanisms determining community phylogenetic structure range from local ecological mechanisms to broad biogeographical processes. How these community assembly processes determine phylogenetic structure and patterns in rangeland communities across multiple spatial scales is still poorly understood. We sought to determine whether the structure of herbaceous and shrub assemblages along local environmental gradients (elevation) and broad geography (latitude) exhibited phylogenetic signal at different spatial scales, across 2,500?ha of a mountainous rangeland. We analyzed species distribution and phylogenetic data at two spatial scales: the community level (1?m 2 sample units obtained by stratified random sampling) and the habitat level (plant assemblages identified categorically based on environmental and geographical variables). We found significant phylogenetic signal in structure and pattern at both spatial scales, along local elevational, and latitudinal gradients. Moreover, beta diversity was affected by different environmental variables in herbaceous and shrub species distributions across different spatial scales. Our results highlight the relative importance of local ecological mechanisms, including niche‐based deterministic processes (environmental filtering and species interactions) as well as those of biogeographical processes, such as stochastic dispersal limitation and habitat specialization in plant assemblages of mountainous rangeland.
机译:决定群落系统发育结构的机制范围从局部生态机制到广泛的生物地理过程。这些群落组装过程如何确定跨多个空间尺度的牧场群落的系统发育结构和模式仍知之甚少。我们试图确定在2500公顷的山区牧场中,沿局部环境梯度(海拔)和宽广的地理(纬度)分布的草本和灌木组合的结构是否显示出系统发生信号。我们在两个空间尺度上分析了物种分布和系统发育数据:群落水平(通过分层随机抽样获得的1?m 2样本单位)和栖息地水平(根据环境和地理变量分类确定的植物组合)。我们在两个空间尺度上,沿着局部海拔和纬度梯度,都在结构和模式上发现了重要的系统发育信号。此外,β多样性受到不同空间尺度上草本和灌木物种分布的不同环境变量的影响。我们的结果强调了局部生态机制的相对重要性,包括基于生态位的确定性过程(环境过滤和物种相互作用)以及生物地理过程的过程,例如随机散布限制和山区草地植物群落中的生境专业化。

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