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Scaling Up Sap Flow Measurements from the Stem Scale to the Individual Scale for Multibranched Caragana Korshinskii on the Chinese Loess Plateau

机译:将SAP流量测量从Stem规模扩展到中国黄土高原上的多刺Caragana Korshinskii的个人规模

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摘要

The traditional heat balance method for measuring plant sap flow (SF) becomes troublesome and uneconomic for multibranched shrub species if all their stems are used for the measurement. The objectives of this study were to explore specific relationships between stem-scale SF and plant morphological traits and then to scale up SF measurements from the stem scale to the individual scale for Caragana korshinskii Kom., a dominant shrub species on the Chinese Loess Plateau. Sap flow was measured for twenty-one stems from three representative individuals from July to September 2018 during the rainy season. The results indicated that the stem-scale SF in C. korshinskii presented a positive linear correlation with the stem base diameter (SBD), stem length (SL), primary branch numbers in the stem (PBN), and estimated stem biomass (W). The SBD-based statistical models performed well in estimating the stem-scale SF, with an R2 value of 0.9726 and root mean squared error (RMSE) of 2.5389 g h−1. Over the canopy projection area, the individual-scale transpiration flows for the three selected C. korshinskii were 1.91, 1.10, and 1.59 mm·d−1. In addition, stem-scale SF was positively and linearly correlated with air temperature, photosynthetically active radiation, vapor pressure deficit, reference crop evapotranspiration, and variable transpiration. This study sheds light on morphological and meteorological influences on stem-scale SF and has made contributes to the accurate and rapid estimation of the plant sap flow from easily available morphological traits for multibranched shrub species in semiarid regions. Limitations, however, may exist for the established model when it is used to estimate SF of C. korshinskii during the water-limited dry season. Our study deserves further exploration of a more general model to have a better estimation of SF for C. korshinskii in both dry and rainy seasons.
机译:如果所有的其茎用于测量用于测量植物液流传统热平衡方法(SF)变得麻烦和不经济的多分支灌木。这项研究的目的是探索干大规模SF和植物形态特征,然后之间的特定关系,从干规模SF测量扩展到了柠条的个体尺度,对中国黄土高原优势灌木树种。测量液流为21雨季从七月三个有代表性的个人茎至九月2018结果表明,茎 - 规模SF在柠条带有茎基部直径(SBD),茎长(SL),主分支号码在所述杆(PBN),和估计的干生物量(W)的正线性相关。基于SBD-统计模型估计的干尺度SF表现良好,具有0.9726的2.5389克H-1的R2值和根均方误差(RMSE)。在树冠投影区域,所述个体尺度蒸腾选定C.三个埂是1.91,1.10流动,并且1.59毫米·d-1。此外,干规模SF呈正和线性空气温度,光合有效辐射,水汽压亏,参考作物蒸散量,和可变蒸腾相关。本研究揭示光对干规模SF形态学和气象影响和已经从在半干旱地区的多分支灌木容易获得的形态性状作出有助于植物的汁液流动的准确和快速估计。限制,但是,当它被使用的限水旱季估计柠条的SF可能存在所建立的模型。我们的研究值得更一般的模型可供进一步勘探的有SF为C.两个旱季和雨季柠条更好的估计。

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