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A taxonomic, functional, and phylogenetic perspective on the community assembly of passerine birds along an elevational gradient in southwest China

机译:中国西南地区雀形目鸟类群落组装沿海拔梯度的分类,功能和系统发育研究

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摘要

Integrating multiple facets of biodiversity to describe spatial and temporal distribution patterns is one way of revealing the mechanisms driving community assembly. We assessed the species, functional, and phylogenetic composition and structure of passerine bird communities along an elevational gradient both in wintering and breeding seasons in the Ailao Mountains, southwest China, in order to identify the dominant ecological processes structuring the communities and how these processes change with elevation and season. Our research confirms that the highest taxonomic diversity, and distinct community composition, was found in the moist evergreen broadleaf forest at high elevation in both seasons. Environmental filtering was the dominant force at high elevations with relatively cold and wet climatic conditions, while the observed value of mean pairwise functional and phylogenetic distances of low elevation was constantly higher than expectation in two seasons, suggested interspecific competition could play the key role at low elevations, perhaps because of relative rich resource result from complex vegetation structure and human‐induced disturbance. Across all elevations, there was a trend of decreasing intensity of environmental filtering whereas increasing interspecific competition from wintering season to breeding season. This was likely due to the increased resource availability but reproduction‐associated competition in the summer months. In general, there is a clear justification for conservation efforts to protect entire elevational gradients in the Ailao Mountains, given the distinct taxonomic, functional, and phylogenetic compositions and also elevational migration pattern in passerine bird communities.
机译:整合生物多样性的多个方面来描述空间和时间分布模式是揭示驱动社区聚集的机制的一种方式。我们评估了西南哀牢山越冬和繁殖季节沿高度梯度的雀形目鸟类群落的种类,功能,系统发育组成和结构,以鉴定构成群落的主要生态过程以及这些过程如何变化与海拔和季节有关。我们的研究证实,在两个季节的高海拔潮湿常绿阔叶林中,发现了最高的分类学多样性和独特的群落组成。在相对寒冷和潮湿的气候条件下,高海拔地区的环境过滤是主导力量,而低海拔地区的平均成对功能和系统发育距离的观测值在两个季节中始终高于预期,这表明种间竞争可能在低海拔地区发挥关键作用。海拔升高,可能是由于复杂的植被结构和人为干扰导致资源相对丰富。从冬季到繁殖季节,所有海拔地区的环境过滤强度都有降低的趋势,而种间竞争则呈增加趋势。这可能是由于资源可用性增加,但在夏季与繁殖相关的竞争所致。总的来说,鉴于在雀形目鸟类群落中明显的生物分类,功能和系统发育组成以及海拔迁移模式,有明显的理由进行保护工作以保护哀牢山的整个海拔梯度。

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