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Retain or repel? Droplet volume does matter when measuring leaf wetness traits

机译:保留还是击退?在测量叶片湿度特性时液滴的体积确实很重要

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摘要

>Background and Aims Leaf wetness is an important characteristic linked to a plant’s strategies for water acquisition, use and redistribution. A trade-off between leaf water retention (LWR) and hydrophobicity (LWH) may be expected, since a higher LWH/lower LWR may enhance photosynthesis, while the opposite combination may increase the leaf water uptake (LWU). However, the validation of the ecological meaning of both traits and the influence of droplet volume when measuring them have been largely neglected.>Methods To address these questions, LWR and LWH of 14 species were measured using droplets of between 5 and 50 μL. Furthermore, the ability of those species to perform LWU was evaluated through leaf submergence in water. The droplet-volume effect on absolute values and on species ranking for LWR and LWH was tested, as well as the influence of water droplet volume on the relationship between leaf wetness traits and LWU.>Key Results Variations in droplet volume significantly affected the absolute values and the species ranking for both LWR and LWH. The expected negative correlation between leaf wetness traits was not observed, and they were not validated as a proxy for LWU.>Conclusions The water droplet volume does matter when measuring leaf wetness traits. Therefore, it is necessary to standardize the methodological approach used to measure them. The use of a standard 5 μL droplet for LWH and a 50 μL droplet for LWR is proposed. It is cautioned that the validation of both traits is also needed before using them as proxies to describe responses and effects in functional approaches.
机译:>背景和目的:叶片的湿润度是与植物的水获取,使用和再分配策略相关的重要特征。由于较高的LWH /较低的LWR可能会增强光合作用,而相反的组合可能会增加叶片的水分吸收(LWU),因此可以预期在叶片保水量(LWR)和疏水性(LWH)之间进行权衡。但是,在很大程度上忽略了这两个性状的生态意义的验证以及在测量它们时液滴体积的影响。>方法为解决这些问题,使用介于两者之间的液滴测量了14个物种的LWR和LWH 5和50μL。此外,通过叶片浸没在水中来评估那些物种执行LWU的能力。测试了液滴体积对LWR和LWH的绝对值和物种等级的影响,以及水滴体积对叶片湿度性状与LWU之间关系的影响。>主要结果体积显着影响LWR和LWH的绝对值和物种排名。未观察到预期的叶片湿润性状之间的负相关性,也未将其验证为LWU的代用品。>结论在测量叶片湿润性状时,水滴的体积确实很重要。因此,有必要标准化用于测量它们的方法学方法。建议将标准的5μL液滴用于LWH,将50μL液滴用于LWR。请注意,在将两个特征用作描述功能方法中的响应和效果的代理之前,也需要对两个特征进行验证。

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