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Effects of Topographic and Soil Factors on Woody Species Assembly in a Chinese Subtropical Evergreen Broadleaved Forest

机译:地形和土壤因素对中国亚热带常绿阔叶林木本植物组装的影响

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Evergreen broadleaved forests in subtropical China contain a complicated structure of diverse species. The impact of topographic and soil factors on the assembly of woody species in the forest has been poorly understood. We used Ripley’s K(t) function to analyze the spatial patterns and associations of dominant species and residual analysis (RDA) to quantify the contribution of topography and soil to species assembly. The 1 ha plot investigated had 4797 stems with a diameter at breast height (dbh) larger than 1 cm that belong to 73 species, 55 genera, and 38 families. All stems of the entire forest and four late successional species exhibited a reversed J shape for dbh distribution, while two early successional species showed a unimodal shape. Aggregation was the major spatial pattern for entire forests and dominant species across vertical layers. Spatial associations between inter- and intra-species were mostly independent. Topographic and soil factors explained 28.1% of species assembly. The forest was close to late succession and showed the characteristics of diverse woody species, high regeneration capacity, and aggregated spatial patterns. Topographic and soil factors affected species assembly, but together they could only explain a small part of total variance.
机译:亚热带的常绿阔叶林包含各种物种的复杂结构。人们对地形和土壤因素对森林中木本物种聚集的影响知之甚少。我们使用Ripley的K(t)函数来分析优势物种的空间格局和关联,并使用残差分析(RDA)来量化地形和土壤对物种组装的贡献。所调查的1公顷地块有4797个茎,胸径(dbh)大于1 cm,属于73个物种,55个属和38个科。整个森林的所有茎和四个晚期演替物种的dbh分布呈倒J形,而两个早期演替物种则呈单峰形。聚集是整个森林和垂直层上优势种的主要空间格局。种间和种内的空间联系大多是独立的。地形和土壤因素占物种组装的28.1%。森林接近后期演替,并表现出多种木本物种,高再生能力和聚集的空间格局的特征。地形和土壤因素影响物种的组装,但它们在一起只能解释总变异的一小部分。

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