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The Role of Inter- and Intraspecific Variations in Grassland Plant Functional Traits along an Elevational Gradient in a Mediterranean Mountain Area

机译:地中海山区沿着高地梯度沿着草地植物功能性状的间歇和内际变化的作用

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摘要

Elevational gradients offer special opportunities to investigate the relative role of intraspecific and interspecific trait variations in relation to stress gradients. We used an altitudinal gradient in the Mediterranean (Mt Velino, Central Italy) to study (1) how community-weighted means (CWM) and nonweighted means (CM) vary with elevation for plant height, specific leaf area, and seed mass; and (2) how variation patterns differ for inter- and intraspecific functional variability. We tested (1) if elevation influences community functional composition on the basis of the adaptive value of plant traits and (2) if the latter shows intraspecific variations according to the species’ ability to cope with local conditions. We found that different traits showed different patterns, which can be linked to the function they express. Differences between communities were influenced more by differences between their traits (CM) than by the relative species coverage (CWM). Both highest and lowest elevations were the most selective due to their particularly severe climatic conditions. Intermediate elevations were the most favorable thanks to less constraining climatic conditions. Interspecific trait variability was the most relevant component, indicating a low plant ability to cope with environmental variations through phenotypic plasticity.
机译:高级梯度提供了特殊的机会,以调查有关涉及与压力梯度的有内容和间隙性变化的相对作用。我们在地中海(MT Velino,意大利MT Velino)的一直梯度学习(1)社区加权装置(CWM)和非重量手段(CM)如何随植物高度,特定叶面积和种子质量的升高而变化; (2)变形图案如何因互相型功能可变性而异。我们测试了(1)如果基于植物特征的自适应价值和(2),如果后者根据物种应对当地条件的能力,则升高,则会影响群落功能组合物。我们发现不同的特征显示出不同的模式,可以与它们表达的功能相关联。社区之间的差异在其特征(cm)之间的差异而不是通过相对物种覆盖率(CWM)影响。由于其特别严重的气候条件,最高和最低的高度都是最具选择性的。由于不太限制的气候条件,中间仰角是最有利的。间隙性状可变性是最相关的组分,表明通过表型可塑性应对环境变化的低植物能力。

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