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Spatial and environmental effects on plant communities in the Yellow River Delta, Eastern China.

机译:中国黄河三角洲植物社区的空间与环境影响。

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Types and structure of plant communities in the Yellow River Delta in Shandong, eastern China were investigated by using detrended canonical correspondence analyses and a two-way indicator species analysis. The distribution pattern and influential factors of the plant communities were also analysed by testing elevation, slope, soil characteristics, longitude and latitude of 134 vegetation samples collected by representative plot sampling methods. Results showed that all the 134 vegetation samples could be divided into seven vegetation groups, separately dominated by Robinia pseudoacacia, Imperata cylindrica, Miscanthus sacchariflorus, Suaeda salsa, Aeluropus sinensis, Phragmites australis and Tamarix chinensis. The vegetation distribution pattern was mainly related to elevation, groundwater depth and soil characteristics such as salinity and soluble potassium. Among the factors affecting distribution pattern of the plant communities, the species matrix explained by non-spatial environmental variation accounts for 45.2% of total variation. Spatial variation and spatial-structured environmental variation explain 11.8, and 2.2%, respectively. The remaining 40.8% of undetermined variation is attributed to biological and stochastic factors.
机译:山东黄河三角洲植物社区的类型和结构是通过使用贬义的规范对应分析和双向指示物种分析来研究了山东黄河三角洲。通过代表性绘图采样方法收集的134个植被样本的测试升高,坡度,土壤特性,经度和纬度,还分析了植物群落的分布模式和影响因素。结果表明,所有134个植被样品都可以分为七个植被组,单独主导地由罗宾状伪曲线,渗行甘氨酸, miscanthus sacchariflorus ,<我> Suaeda Salsa, Aeluropus sinensis , Phragmites Australis 和 Tamarix Chinensis 。植被分布模式主要与盐度和可溶性钾等升高,地下水深度和土壤特性有关。在影响植物社区分布模式的因素中,非空间环境变异解释的物种矩阵占总变异的45.2%。空间变化和空间结构的环境变异分别解释11.8和2.2%。剩下的40.8%的未确定变异归因于生物和随机因素。

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