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Variation in leaf surface hydrophobicity of wetland plants: the role of plant traits in water retention

机译:湿地植物叶片表面疏水性的变化:植物性状在保水中的作用

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摘要

Leaf surface wetness has numerous physiological and ecological consequences, and the morphological structures on the leaf surface can affect its extent and duration, contributing to interception rates in the scale of the whole ecosystem. Wetland plants have developed morphological adaptations to high water level allowing them to avoid water excess. Droplet contact angle and surface free energy are measurable parameters which relate to how the plant influences water usage and redistribution. We analysed patterns of contact angle and the surface free energy of the adaxial and abaxial surface of 10 wetland plant species and related them to the optimal habitat conditions and functional traits of the plants. Despite the consistent environment of these plants, we found them to vary greatly in terms of leaf surface wettability and surface free energy, with contact angles ranging from 75 to 169° and surface free energy, from 1.32 to 30.38 mJ/m2. Canopy height and leaf longevity were significantly correlated to leaf wettability, whilst SLA (Specific Leaf Area) and leaf shape were not related to hydrophobicity. Investigating adaptations of wetland plants to their environment showed that including wettability and surface free energy in combination with other plant traits improves our understanding of water plant-soil-water interactions in wetland habitats.
机译:叶片表面的湿润具有许多生理和生态后果,叶片表面的形态结构会影响其范围和持续时间,从而导致整个生态系统规模的截留率提高。湿地植物已适应高水位的形态,从而避免了水分过多。液滴的接触角和表面自由能是可测量的参数,与植物如何影响用水和再分配有关。我们分析了10种湿地植物物种的接触角和正反表面的表面自由能模式,并将其与植物的最佳生境条件和功能特征相关联。尽管这些植物的环境一致,但我们发现它们的叶片表面可湿性和表面自由能变化很大,接触角范围为75至169°,表面自由能范围为1.32至30.38 mJ / m2。冠层高度和叶片寿命与叶片润湿性显着相关,而SLA(比叶面积)和叶片形状与疏水性无关。对湿地植物适应其环境的研究表明,将湿润性和表面自由能与其他植物性状结合起来,可以增进我们对湿地生境中水生植物-土壤-水相互作用的了解。

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