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Urban plant species patterns are highly driven by density and function of built-up areas

机译:城市植物物种格局在很大程度上取决于建成区的密度和功能

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This paper aims to assess the relative importance of the type of built-up area in structuring plant species composition and richness in urbanised environments, The study was carried out in the city of Brussels where all vascular plant species were recorded in 189 grid cells of 1 km2 each. The effect of urban land use type on species composition was investigated using first Canonical Correspondence Analysis. Densely built-up area was the most powerful predictor for species composition, followed by industrial built-up areas, half open or open built-up areas with plantations, and open built-up areas with much natural vegetation in the surroundings. Indicator species were found for each type of built-up area and a response curve to the amount of built land was produced using Generalised Additive Modelling. Various types of built-up areas had different effects on environmental conditions as inferred by Ellen-berg's indicator values, as well as on the species richness, species rarity, number of exotic species and proportion of extinction-prone species. It is concluded that future ecological studies should not treat urban areas as homogeneous areas by combining all anthropogenic factors into one aggregated variable. Instead, the urban matrix should be categorised in subsystems as it is multidimensional and highly variable across space.
机译:本文旨在评估建成区类型在构造城市化环境中植物物种组成和丰富度方面的相对重要性。该研究在布鲁塞尔市进行,布鲁塞尔的所有维管植物物种都记录在1个网格中的189个网格中每平方公里。使用首次规范对应分析研究了城市土地利用类型对物种组成的影响。密集的建筑面积是物种构成的最有力的预测指标,其次是工业建筑的面积,半开放或开放的人工林种植区,以及周围自然植被丰富的开放建筑区。找到每种建筑面积类型的指示剂物种,并使用广义加性模型绘制出对建筑用地数量的响应曲线。根据艾伦伯格的指标值推断,各种类型的建成区对环境条件的影响以及对物种丰富度,物种稀有性,外来物种数量和易灭绝物种比例的影响。结论是,未来的生态研究不应通过将所有人为因素合并为一个聚集变量来将城市地区视为同质区域。取而代之的是,城市矩阵应在子系统中分类,因为它是多维的并且在空间中变化很大。

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