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首页> 外文期刊>Flora >Climate and vegetation structure determine plant diversity in Quercus ilex woodlands along an aridity and human-use gradient in Northern Algeria
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Climate and vegetation structure determine plant diversity in Quercus ilex woodlands along an aridity and human-use gradient in Northern Algeria

机译:气候和植被结构决定了阿尔及利亚北部干旱和人类利用梯度下栎属林地的植物多样性

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摘要

We studied the influence of environmental factors relating to climate, soil and vegetation cover on total species richness, species richness of different life-forms and species composition of plant communities occurring in Quercus ilex woodlands, across a 450-km long transect in Northern Algeria constituting a gradient of aridity and human use. We sampled vegetation and collected environmental data in 81 10. m. ×. 10. m plots in five zones representing the largest Q. ilex woodlands throughout the study area, analysing them within an a priori hypothesis framework with the use of Path Analysis. Changes in plant diversity were mainly influenced by environmental factors related to precipitation and temperature regimes, as well as by total plant cover. In particular, changes in species composition were determined by factors associated with the temperature regime through their influence on both woody and annual herbaceous plant richness, and by factors related to the precipitation regime through their influence on perennial herbaceous plant richness, likely due to the differential tolerances of these functional groups to cold and water stress. Our results emphasize the importance of differences in environmental adaptability of the most important life-forms with regard to explaining compositional change (beta diversity) along aridity gradients, and the mediator role of total plant cover in relation to the effects of soil conditions on plant diversity.
机译:我们研究了与气候,土壤和植被覆盖有关的环境因素对阿尔及利亚北部450 km长样带上栎属阔叶林中总物种丰富度,不同生命形式的物种丰富度和植物群落物种组成的影响干旱和人类使用的梯度。我们在81 10 m采样了植被并收集了环境数据。 ×。 10.五个区域中的m个图代表整个研究区域中最大的Q. ilex林地,并使用“路径分析”在先验假设框架内进行分析。植物多样性的变化主要受与降水和温度状况有关的环境因素以及植物总覆盖率的影响。尤其是,物种组成的变化取决于温度变化对木本植物和一年生草本植物丰富度的影响,而与降水变化相关的因素对它们对多年生草本植物的丰富度的影响。这些官能团对寒冷和水分胁迫的耐受性。我们的结果强调了最重要的生命形式在环境适应性方面的差异对于解释干旱梯度上的成分变化(β多样性)的重要性,以及总植物覆盖率与土壤条件对植物多样性的影响有关的调节作用。

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