Water‐use efficiency in response to climate change: from leaf to ecosystem in a temperate steppe

用水效率 蒸散量 蒸腾作用 天蓬 环境科学 生态系统 水循环 草原 农学 大气科学 生物 生态学 植物 光合作用 灌溉 地质学
作者
Shuli Niu,Xuerong Xing,Zhe Zhang,Jianyang Xia,Xuhui Zhou,Bing Song,Linghao Li,Shiqiang Wan
出处
期刊:Global Change Biology [Wiley]
卷期号:17 (2): 1073-1082 被引量:372
标识
DOI:10.1111/j.1365-2486.2010.02280.x
摘要

Abstract Water‐use efficiency (WUE) has been recognized as an important characteristic of ecosystem productivity, which links carbon (C) and water cycling. However, little is known about how WUE responds to climate change at different scales. Here, we investigated WUE at leaf, canopy, and ecosystem levels under increased precipitation and warming from 2005 to 2008 in a temperate steppe in Northern China. We measured gross ecosystem productivity (GEP), net ecosystem CO 2 exchange (NEE), evapotranspiration (ET), evaporation (E), canopy transpiration ( T c ), as well as leaf photosynthesis ( P max ) and transpiration ( T l ) of a dominant species to calculate canopy WUE (WUE c =GEP/T), ecosystem WUE (WUE gep =GEP/ET or WUE nee =NEE/ET) and leaf WUE (WUE l = P max / T l ). The results showed that increased precipitation stimulated WUE c , WUE gep and WUE nee by 17.1%, 10.2% and 12.6%, respectively, but decreased WUE l by 27.4%. Climate warming reduced canopy and ecosystem WUE over the 4 years but did not affect leaf level WUE. Across the 4 years and the measured plots, canopy and ecosystem WUE linearly increased, but leaf level WUE of the dominant species linearly decreased with increasing precipitation. The differential responses of canopy/ecosystem WUE and leaf WUE to climate change suggest that caution should be taken when upscaling WUE from leaf to larger scales. Our findings will also facilitate mechanistic understanding of the C–water relationships across different organism levels and in projecting the effects of climate warming and shifting precipitation regimes on productivity in arid and semiarid ecosystems.
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