Arid
DOI10.1093/treephys/tpp085
Water deficit affects mesophyll limitation of leaves more strongly in sun than in shade in two contrasting Picea asperata populations
Duan, Baoli1; Li, Yan1,2; Zhang, Xiaolu1; Korpelainen, Helena3; Li, Chunyang1
通讯作者Li, Chunyang
来源期刊TREE PHYSIOLOGY
ISSN0829-318X
EISSN1758-4469
出版年2009
卷号29期号:12页码:1551-1561
英文摘要

The aim of this study was to examine the response of internal conductance to CO2 (g(i)) to soil water deficit and contrasting light conditions, and their consequences on photosynthetic physiology in two Picea asperata Mast. populations originating from wet and dry climate regions of China. Four-year-old trees were subjected to two light treatments (30% and 100% of full sunlight) and two watering regimes (well watered, drought) for 2years. In both tested populations, drought significantly decreased g(i) and the net photosynthesis rate (A) and increased carbon isotope composition (C-13) values in both light treatments, in particular in the sun. Moreover, drought resulted in a significantly higher relative limitation due to stomatal conductance (L-s) in both light treatments and higher relative limitation due to internal conductance (L-i) and abscisic acid (ABA) in the sun plants. The results also showed that L-i (0.260.47) was always greater than L-s (0.120.28). On the other hand, drought significantly decreased the ratio of chloroplastic to internal CO2 concentration (C-c/C-i), photosynthetic nitrogen utilization efficiency (PNUE) and total biomass in the sun plants of the wet climate population, whereas there were no significant changes in these parameters in the dry climate population. Our results also showed that the dry climate population possessed higher C-13 values with higher ratio of internal conductance to stomatal conductance (g(i)/g(s)), suggesting that increasing the g(i)/g(s) ratio enhances water-use efficiency (WUE) in plants evolved in arid environments. Thus, we propose that the use of the g(i)/g(s) parameter to screen P. asperata plants with higher water deficit tolerance is certainly worthy of consideration. Furthermore, g(i) is an important variable, which reflects the population differences in PNUE, and it should thus be included in plant physiological investigations related to leaf economics.


英文关键词carbon isotope discrimination internal conductance limitation analysis photosynthesis stomatal conductance
类型Article
语种英语
国家Peoples R China ; Finland
收录类别SCI-E
WOS记录号WOS:000271825500007
WOS关键词CARBON-ISOTOPE DISCRIMINATION ; CO2 TRANSFER CONDUCTANCE ; INTERNAL CONDUCTANCE ; PHOTOSYNTHETIC CAPACITY ; STOMATAL CONDUCTANCE ; IN-VIVO ; LEAF ; DROUGHT ; PROVENANCES ; TEMPERATURE
WOS类目Forestry
WOS研究方向Forestry
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/162743
作者单位1.Chinese Acad Sci, Chengdu Inst Biol, Chengdu 610041, Peoples R China;
2.Chinese Acad Sci, Grad Sch, Beijing 100039, Peoples R China;
3.Univ Helsinki, Dept Appl Biol, FI-00014 Helsinki, Finland
推荐引用方式
GB/T 7714
Duan, Baoli,Li, Yan,Zhang, Xiaolu,et al. Water deficit affects mesophyll limitation of leaves more strongly in sun than in shade in two contrasting Picea asperata populations[J],2009,29(12):1551-1561.
APA Duan, Baoli,Li, Yan,Zhang, Xiaolu,Korpelainen, Helena,&Li, Chunyang.(2009).Water deficit affects mesophyll limitation of leaves more strongly in sun than in shade in two contrasting Picea asperata populations.TREE PHYSIOLOGY,29(12),1551-1561.
MLA Duan, Baoli,et al."Water deficit affects mesophyll limitation of leaves more strongly in sun than in shade in two contrasting Picea asperata populations".TREE PHYSIOLOGY 29.12(2009):1551-1561.
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