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Habitat diversity determines ghyll woodland species diversity: adding complexity to the species area relationship, a new predictive model?

机译:栖息地多样性决定Ghyll林地物种多样性:为物种区域关系添加复杂性,一个新的预测模型?

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Ghylls are linear valley features cut into the sandstone beds of the Weald of south-eastern England. The indigenous ghyll woodlands are highly species rich, supporting distinctive assemblages of cryptogamic plants. We assessed the ability of the species-area relationship, the Choros model and a modified version of the Choros model to describe variations in higher plant diversity. Principal component analysis (PCA) was used to produce proxy environmental variables, multi-regression analysis of which allowed factors determining diversity to be investigated. Field layer diversity varied substantially between ghylls. The data did not fit the species area relationship. A statistically weak fit was provided by the standard Choros model. The modified Choros model, incorporating a PCA generated proxy variable for habitat diversity, provided a good fit. The results suggest that ghyll field layer diversity is primarily determined by habitat diversity and to a lesser extent by ghyll isolation, length and area.
机译:Ghylls是Linear Valley的特征,切入英格兰东南部Weald的砂岩床。土着Ghyll林地是高度物种丰富的,支持着独特的Cryptogamic植物组装。我们评估了物种面积关系,ChoroS模型和ChoroS模型的修改版本的能力,以描述更高植物多样性的变化。主要成分分析(PCA)用于产生代理环境变量,多元回归分析,其允许调查多样性的因素。场层分集基本上变化在ghyll。数据不适合物种区域关系。标准的Choros模型提供了统计上弱的拟合。改进的Choros模型,包括用于栖息地多样性的PCA生成的代理变量,提供了良好的合适。结果表明,Ghyll场层分集主要由栖息地分集决定,并通过Ghyll隔离,长度和面积较小。

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