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首页> 外文期刊>The New Phytologist >Modeling whole-tree carbon assimilation rate using observed transpiration rates and needle sugar carbon isotope ratios
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Modeling whole-tree carbon assimilation rate using observed transpiration rates and needle sugar carbon isotope ratios

机译:使用观察到的蒸腾速率和针状糖碳同位素比对全树碳同化率建模

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Understanding controls over plant-atmosphere CO exchange is important for quantifying carbon budgets across a range of spatial and temporal scales. In this study, we used a simple approach to estimate whole-tree CO assimilation rate (ATree) in a subalpine forest ecosystem. We analysed the carbon isotope ratio (tp#pdC) of extracted needle sugars and combined it with the daytime leaf-to-air vapor pressure deficit to estimate tree water-use efficiency (WUE). The estimated WUE was then combined with observations of tree transpiration rate (E) using sap flow techniques to estimate ATree. Estimates of ATree for the three dominant tree species in the forest were combined with species distribution and tree size to estimate and gross primary productivity (GPP) using an ecosystem process model. A sensitivity analysis showed that estimates of ATree were more sensitive to dynamics in E than tp#pdC. At the ecosystem scale, the abundance of lodgepole pine trees influenced seasonal dynamics in GPP considerably more than Engelmann spruce and subalpine fir because of its greater sensitivity of E to seasonal climate variation. The results provide the framework for a nondestructive method for estimating whole-tree carbon assimilation rate and ecosystem GPP over daily-to weekly time scales.
机译:了解对植物-大气CO交换的控制对于量化一系列时空尺度的碳预算非常重要。在这项研究中,我们使用一种简单的方法来估算亚高山森林生态系统中的全树CO同化率(ATree)。我们分析了提取的针状糖的碳同位素比(tp#pdC),并将其与白天的叶空气蒸气压亏空相结合,以估计树木的用水效率(WUE)。然后使用树液流技术将估计的WUE与树木蒸腾速率(E)的观测值相结合,以估计ATree。使用生态系统过程模型,将森林中三种主要树种的ATree估计值与物种分布和树木大小相结合,以估计和总初级生产力(GPP)。敏感性分析表明,与tp#pdC相比,ATree的估计值对E中的动力学更敏感。在生态系统规模上,由于松树对E对季节气候变化的敏感性更高,所以大量的lodge树对GPP中的季节动态的影响远大于Engelmann云杉和亚高山冷杉。结果提供了一种无损方法的框架,该方法可用于估计每日至每周时间范围内的整树碳同化率和生态系统GPP。

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