中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Acclimation of Foliar Respiration and Photosynthesis in Response to Experimental Warming in a Temperate Steppe in Northern China

文献类型:SCI/SSCI论文

作者Xu M.
发表日期2013
关键词elevated atmospheric co2 electron-transport rate leaf dark respiration thermal-acclimation mesophyll conductance growth temperature populus-deltoides rubisco-activase carbon-dioxide water-stress
英文摘要Background: Thermal acclimation of foliar respiration and photosynthesis is critical for projection of changes in carbon exchange of terrestrial ecosystems under global warming. Methodology/Principal Findings: A field manipulative experiment was conducted to elevate foliar temperature (T-leaf) by 2.07 degrees C in a temperate steppe in northern China. R-d/T-leaf curves (responses of dark respiration to T-leaf), A(n)/T-leaf curves (responses of light-saturated net CO2 assimilation rates to T-leaf), responses of biochemical limitations and diffusion limitations in gross CO2 assimilation rates (A(g)) to T-leaf, and foliar nitrogen (N) concentration in Stipa krylovii Roshev. were measured in 2010 (a dry year) and 2011 (a wet year). Significant thermal acclimation of R-d to 6-year experimental warming was found. However, A(n) had a limited ability to acclimate to a warmer climate regime. Thermal acclimation of R-d was associated with not only the direct effects of warming, but also the changes in foliar N concentration induced by warming. Conclusions/Significance: Warming decreased the temperature sensitivity (Q(10)) of the response of R-d/A(g) ratio to T-leaf. Our findings may have important implications for improving ecosystem models in simulating carbon cycles and advancing understanding on the interactions between climate change and ecosystem functions.
出处Plos One
8
2
收录类别SCI
语种英语
ISSN号1932-6203
源URL[http://ir.igsnrr.ac.cn/handle/311030/30613]  
专题地理科学与资源研究所_历年回溯文献
推荐引用方式
GB/T 7714
Xu M.. Acclimation of Foliar Respiration and Photosynthesis in Response to Experimental Warming in a Temperate Steppe in Northern China. 2013.

入库方式: OAI收割

来源:地理科学与资源研究所

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