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首页> 外文期刊>Journal of Experimental Botany >Hydraulic traits vary as the result of tip-to-base conduit widening in vascular plants
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Hydraulic traits vary as the result of tip-to-base conduit widening in vascular plants

机译:液压特性随着血管植物中的尖端导管而变化。

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摘要

Plant hydraulic traits are essential metrics for characterizing variation in plant function, but they vary markedly with plant size and position in a plant. We explore the potential effect of conduit widening on variation in hydraulic traits along the stem. We examined three species that differ in conduit diameter at the stem base for a given height (Moringa oleifera, Casimiroa edulis, and Pinus ayacahuite). We made anatomical and hydraulic measurements at different distances from the stem tip, constructed vulnerability curves, and examined the safety-efficiency trade-off with height-standardized data. Our results showed that segment-specific hydraulic resistance varied predictably along the stem, paralleling changes in mean conduit diameter and total number of conduits. The Huber value and leaf specific conductivity also varied depending on the sampling point. Vulnerability curves were markedly less noisy with height standardization, making the vulnerability-efficiency trade-off clearer. Because conduits widen predictably along the stem, taking height and distance from the tip into account provides a way of enhancing comparability and interpretation of hydraulic traits. Our results suggest the need for rethinking hydraulic sampling for comparing plant functional differences and strategies across individuals.
机译:植物液压特性是用于表征植物功能变异的基本度量,但它们在植物中具有显着变化和植物中的位置。我们探讨了导管沿杆液压性状变化的潜在影响。我们检查了三种物种在茎底的导管直径不同(Moringa Oleifera,Casimiroa Edulis和Pinus Ayacahuite)。我们在杆尖端,构造漏洞曲线的不同距离下进行了解剖和液压测量,并通过高度标准化数据检查了安全效率的权衡。我们的研究结果表明,沿着阀杆可预测可预测的特定液压电阻,平均导管直径和导管总数的平行变化。 HUBER值和叶片特定电导率也取决于采样点。漏洞曲线具有高度标准化的噪音显着较小,使漏洞效率进行更低。因为导管沿着杆可预测可预见,所以从尖端占据尖端的高度和距离提供了一种提高液压性状的可比性和解释的方式。我们的结果表明需要重新思考液压采样,以比较植物功能差异和各个策略。

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