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Elevation predicts the functional composition of alpine plant communities based on vegetative traits, but not based on floral traits

机译:高程基于营养性状而非花性状预测高山植物群落的功能组成

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The functional diversity and composition of plant traits within communities are tightly linked to important ecosystem functions and processes. Whereas vegetative traits reflecting adaptations to environmental conditions are commonly assessed in community ecology, floral traits are often neglected despite their importance for the plants' life cycle. The consideration of floral traits covers important aspects such as sexual plant reproduction and pollinator diversity, which remain unobserved in studies focussing on vegetative traits only. To test whether vegetative and floral traits differ in their responses to elevation, we measured morphological and chemical traits of plant species occurring in pastures at seven elevations in the Austrian Alps. Variation in functional composition was examined using the concept of n-dimensional hypervolumes and vector analysis. Our data show that vegetative and floral traits vary differently with the elevational gradient. Whereas vegetative traits changed in a predictable manner with elevation, floral traits did not specifically respond to elevation. Overall variation in vegetative traits mainly resulted from phenotypical differences between plants in different elevations, whereas total variation in floral traits was a result from a high variation within communities. The assessment of functional changes in vegetative and floral traits along mountain slopes thus reveals different patterns in plant responses to elevation and may help to generate testable hypotheses on functional responses to current climate warming.
机译:社区内植物性状的功能多样性和组成与重要的生态系统功能和过程紧密相关。尽管在社区生态学中通常会评估反映对环境条件的适应性的植物性状,但尽管花卉性状对于植物的生命周期很重要,但往往被忽略。对花卉性状的考虑涵盖了重要方面,例如有性植物繁殖和授粉媒介多样性,这些方面在仅关注植物性状的研究中仍未观察到。为了测试植物性和花卉性状对海拔的响应是否不同,我们测量了奥地利阿尔卑斯山七个海拔高度的牧场中发生的植物物种的形态和化学性状。使用n维超体积和矢量分析的概念检查功能成分的变化。我们的数据表明,植物和花卉的性状随海拔梯度而变化。营养性状随着海拔的升高以可预测的方式发生变化,而花卉性状对海拔的升高没有特别的反应。营养性状的总体变异主要是由于不同海拔高度植物之间的表型差异所致,而花卉性状的总体变异是由于群落内部的高度变异所致。因此,对沿山坡地植物和花卉特征的功能变化的评估揭示了植物对海拔变化的响应方式不同,并可能有助于就当前气候变暖的功能响应产生可验证的假设。

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