Leaf stomatal configuration and photosynthetic traits jointly affect leaf water use efficiency in forests along climate gradients

用水效率 气孔导度 光合作用 比叶面积 生物 光合能力 温带气候 农学 蒸腾作用 生长季节 温带雨林 生态系统 蒸汽压差 植物 环境科学 生态学
作者
Shengnan Pan,Xin Wang,Zhengbing Yan,Jin Wu,Lulu Guo,Ziyang Peng,Yuntao Wu,Jing Li,Bin Wang,Yanjun Su,Lingli Liu
出处
期刊:New Phytologist [Wiley]
卷期号:244 (4): 1250-1262 被引量:4
标识
DOI:10.1111/nph.20100
摘要

Summary Water use efficiency (WUE) represents the trade‐off between carbon assimilation and water loss in plants. It remains unclear how leaf stomatal and photosynthetic traits regulate the spatial variation of leaf WUE in different natural forest ecosystems. We investigated 43 broad‐leaf tree species spanning from cold‐temperate to tropical forests in China. We quantified leaf WUE using leaf δ 13 C and measured stomatal traits, photosynthetic traits as well as maximum stomatal conductance () and maximum carboxylation capacity (). We found that leaves in cold‐temperate forests displayed ‘fast’ carbon economics, characterized by higher leaf nitrogen, Chl, specific leaf area, and , as an adaptation to the shorter growing season. However, these leaves exhibited ‘slow’ hydraulic traits, with larger but fewer stomata and similar , resulting in higher leaf WUE. By contrast, leaves in tropical forests had smaller and denser stomata, enabling swift response to heterogeneous light conditions. However, this stomatal configuration increased potential water loss, and coupled with their low photosynthetic capacity, led to lower WUE. Our findings contribute to understanding how plant photosynthetic and stomatal traits regulate carbon–water trade‐offs across climatic gradients, advancing our ability to predict the impacts of climate changes on forest carbon and water cycles.
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