中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Effects of elevated CO2 and temperature on photosynthesis and leaf traits of an understory dwarf bamboo in subalpine forest zone, China

文献类型:期刊论文

作者Li, Yongping ; Zhang, Yuanbin ; Zhang, Xiaolu ; Korpelainen, Helena ; Berninger, Frank ; Li, Chunyang
刊名PHYSIOLOGIA PLANTARUM
出版日期2013
卷号148期号:2页码:261-272
ISSN号0031-9317
产权排序1
通讯作者Li, CY (reprint author), Chinese Acad Sci, Chengdu Inst Biol, Chengdu 610041, Peoples R China.
英文摘要The dwarf bamboo (Fargesia rufa Yi), growing understory in subalpine dark coniferous forest, is one of the main foods for giant panda, and it influences the regeneration of subalpine coniferous forests in southwestern China. To investigate the effects of elevated CO2, temperature and their combination, the dwarf bamboo plantlets were exposed to two CO2 regimes (ambient and double ambient CO2 concentration) and two temperatures (ambient and +2.2 degrees C) in growth chambers. Gas exchange, leaf traits and carbohydrates concentration were measured after the 150-day experiment. Elevated CO2 significantly increased the net photosynthetic rate (Anet), intrinsic water-use efficiency (WUEi) and carbon isotope composition (13C) and decreased stomatal conductance (gs) and total chlorophyll concentration based on mass (Chlm) and area (Chla). On the other hand, elevated CO2 decreased specific leaf area (SLA), which was increased by elevated temperature. Elevated CO2 also increased foliar carbon concentration based on mass (Cm) and area (Ca), nitrogen concentration based on area (Na), carbohydrates concentration (i.e. sucrose, sugar, starch and non-structural carbohydrates) and the slope of the AnetNa relationship. However, elevated temperature decreased Cm, Ca and Na. The combination of elevated CO2 and temperature hardly affected SLA, Cm, Ca, Nm, Na, Chlm and Chla. Variables Anet and Na had positive linear relationships in all treatments. Our results showed that photosynthetic acclimation did not occur in dwarf bamboo at elevated CO2 and it could adjust physiology and morphology to enable the capture of more light, to increase WUE and improve nutritional conditions.
学科主题Plant Sciences
收录类别SCI
语种英语
WOS记录号WOS:000318808100008
公开日期2014-11-21
源URL[http://210.75.237.14/handle/351003/24230]  
专题成都生物研究所_生态研究
推荐引用方式
GB/T 7714
Li, Yongping,Zhang, Yuanbin,Zhang, Xiaolu,et al. Effects of elevated CO2 and temperature on photosynthesis and leaf traits of an understory dwarf bamboo in subalpine forest zone, China[J]. PHYSIOLOGIA PLANTARUM,2013,148(2):261-272.
APA Li, Yongping,Zhang, Yuanbin,Zhang, Xiaolu,Korpelainen, Helena,Berninger, Frank,&Li, Chunyang.(2013).Effects of elevated CO2 and temperature on photosynthesis and leaf traits of an understory dwarf bamboo in subalpine forest zone, China.PHYSIOLOGIA PLANTARUM,148(2),261-272.
MLA Li, Yongping,et al."Effects of elevated CO2 and temperature on photosynthesis and leaf traits of an understory dwarf bamboo in subalpine forest zone, China".PHYSIOLOGIA PLANTARUM 148.2(2013):261-272.

入库方式: OAI收割

来源:成都生物研究所

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