Arid
DOI10.1016/j.foreco.2012.02.027
Increased intrinsic water-use efficiency during a period with persistent decreased tree radial growth in northwestern China: Causes and implications
Wang, Wenzhi1,2; Liu, Xiaohong1; An, Wenling1,2; Xu, Guobao1,2; Zeng, Xiaomin1,2
通讯作者Liu, Xiaohong
来源期刊FOREST ECOLOGY AND MANAGEMENT
ISSN0378-1127
EISSN1872-7042
出版年2012
卷号275页码:14-22
英文摘要

To understand how tree growth responds to rising atmospheric CO2 concentration ([CO2]) and climate change in arid and semi-arid regions, it is important to determine how trees in natural forests adjust physiologically to the changing atmospheric environment. Here, we developed an annual-resolution tree-ring stable carbon isotope (delta C-13) chronology from the dominant natural spruce (Picea crassifolia) trees in the Xinglong Mountains, in the eastern part of northwestern China, from 1800 to 2009. The climate response recorded in the tree-ring delta C-13 residuals indicated that insufficient moisture during the previous autumn and the current growing season was the dominant climatic factor that controlled tree-ring carbon isotope discrimination in the semi-arid Xinglong Mountains. By combining the tree-ring delta C-13, the atmospheric [CO2] (C-a), and ring width data, and by calculating the variations in leaf intercellular [CO2] (C-i), their ratio (C-i/C-a), intrinsic water-use efficiency (iWUE), and basal area increment (BAI), we found that the C-i/C-a remained mostly constant during the last century whereas C-i and iWUE increased significantly. The increase in iWUE totaled about 40% by the end of the study period. However, after 1998, the trees switched from an active to a passive response to elevated atmospheric [CO2], leading to relatively stable iWUE. Since 1800, tree radial growth did not always parallel the increase in iWUE; the tree growth rate declined during drought periods, and especially during the severe droughts that occurred from 1923 to 1934 and recent decade. This response is a concern for future forest management and conservation under the current climate change scenario. (C) 2012 Elsevier B.V. All rights reserved.


英文关键词Tree-ring delta C-13 Intrinsic water-use efficiency Elevated CO2 concentration Drought Arid northwestern China
类型Article
语种英语
国家Peoples R China
收录类别SCI-E
WOS记录号WOS:000304898200002
WOS关键词CARBON-ISOTOPE DISCRIMINATION ; ATMOSPHERIC CO2 ; CLIMATE-CHANGE ; STOMATAL CONDUCTANCE ; STEM-GROWTH ; RESPONSES ; DROUGHT ; DIOXIDE ; FOREST ; RINGS
WOS类目Forestry
WOS研究方向Forestry
来源机构中国科学院西北生态环境资源研究院
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/172401
作者单位1.Chinese Acad Sci, State Key Lab Cryospher Sci, Cold & Arid Reg Environm & Engn Res Inst, Lanzhou 730000, Peoples R China;
2.Chinese Acad Sci, Grad Sch, Beijing 100049, Peoples R China
推荐引用方式
GB/T 7714
Wang, Wenzhi,Liu, Xiaohong,An, Wenling,et al. Increased intrinsic water-use efficiency during a period with persistent decreased tree radial growth in northwestern China: Causes and implications[J]. 中国科学院西北生态环境资源研究院,2012,275:14-22.
APA Wang, Wenzhi,Liu, Xiaohong,An, Wenling,Xu, Guobao,&Zeng, Xiaomin.(2012).Increased intrinsic water-use efficiency during a period with persistent decreased tree radial growth in northwestern China: Causes and implications.FOREST ECOLOGY AND MANAGEMENT,275,14-22.
MLA Wang, Wenzhi,et al."Increased intrinsic water-use efficiency during a period with persistent decreased tree radial growth in northwestern China: Causes and implications".FOREST ECOLOGY AND MANAGEMENT 275(2012):14-22.
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