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叶片和生态系统水分利用效率的衡量指标有何不同?

How do leaf and ecosystem measures of water-use efficiency compare?

机构信息

Hawkesbury Institute for the Environment, Western Sydney University, Locked Bag 1797, Penrith, NSW, 2751, Australia.

Department of Biological Science, Macquarie University, North Ryde, NSW, 2109, Australia.

出版信息

New Phytol. 2017 Nov;216(3):758-770. doi: 10.1111/nph.14626. Epub 2017 Jun 2.

Abstract

The terrestrial carbon and water cycles are intimately linked: the carbon cycle is driven by photosynthesis, while the water balance is dominated by transpiration, and both fluxes are controlled by plant stomatal conductance. The ratio between these fluxes, the plant water-use efficiency (WUE), is a useful indicator of vegetation function. WUE can be estimated using several techniques, including leaf gas exchange, stable isotope discrimination, and eddy covariance. Here we compare global compilations of data for each of these three techniques. We show that patterns of variation in WUE across plant functional types (PFTs) are not consistent among the three datasets. Key discrepancies include the following: leaf-scale data indicate differences between needleleaf and broadleaf forests, but ecosystem-scale data do not; leaf-scale data indicate differences between C and C species, whereas at ecosystem scale there is a difference between C and C crops but not grasslands; and isotope-based estimates of WUE are higher than estimates based on gas exchange for most PFTs. Our study quantifies the uncertainty associated with different methods of measuring WUE, indicates potential for bias when using WUE measures to parameterize or validate models, and indicates key research directions needed to reconcile alternative measures of WUE.

摘要

陆地碳和水循环密切相关

碳循环由光合作用驱动,而水分平衡主要由蒸腾作用主导,这两个通量都受到植物气孔导度的控制。这些通量之间的比率,即植物水分利用效率(WUE),是植被功能的一个有用指标。WUE 可以使用几种技术来估算,包括叶片气体交换、稳定同位素分馏和涡度协方差。在这里,我们比较了这三种技术的全球数据集。我们表明,WUE 在植物功能类型(PFT)之间的变化模式在三个数据集之间并不一致。主要差异包括以下几点:叶片尺度数据表明针叶林和阔叶林之间存在差异,但生态系统尺度数据没有;叶片尺度数据表明 C 和 C 种之间存在差异,而在生态系统尺度上,C 和 C 作物之间存在差异,但草原没有;基于同位素的 WUE 估计值高于基于气体交换的估计值,对于大多数 PFT 而言。我们的研究量化了测量 WUE 的不同方法的不确定性,表明在使用 WUE 测量值来参数化或验证模型时存在潜在的偏差,并指出了需要解决 WUE 替代测量方法的关键研究方向。

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