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《Journal of Beijing Forestry University》 2009-01
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Relationship between photosynthetic physiological characteristics of several common shrub species and soil water content in Hobq Desert of Inner Mongolia,northern China

QIN Jing;HE Kang-ning;ZHU Yan-yan.Key Laboratory of Soil and Water Conservation & Desertification Combating of Ministry of Education,School of Soil and Water Conservation,Beijing Forestry University,100083,P.R.China.  
The Licor-6400 portable photosynthesis system was used to measure photosynthetic physiological parameters of three-year-old ramosest tamarisk(Tamarix ramosissima Ledeb.),small-leaved pea-shrub(Caragana microphylla Lam.) and Mongolian sweet vetch(Hedysarum mongolicum Turcz.) under different soil water content(SWC) and simulated photosynthetic conditions in Hobq Desert of Inner Mongolia,northern China from July to September in 2006.Measured variables included light saturation point(LSP),light compensate point(LCP),apparent quantum yield(AQY),net photosynthetic rate(P_n),stomatal conductance(G_s),transpiration rate(T_r),CO_2 concentration(C_i) and carboxylation efficiency(CE).The SPSS software was used to develop the quantitative relations between photosynthetic physiological parameters and SWC.The results indicated that photosynthetic physiological parameters had a clear threshold-response to the variations of SWC.Under different SWC,the increasing extent of the maximum P_n(P_(nmax)) of T.amosissima,C.microphylla and H.mongolicum was 5.21,6.48 and 14.31 μmol/(m~2·s),respectively.Variations of LSP in different SWC were not apparent and varied from 1 000 to 1 400 μmol/(m~2·s).The LCP decreased with the increase of SWC and varied from 21.7 to 74.1 μmol/(m~2·s).The AQY increased with the increase of SWC and varied from 0.01 to 0.04.The optimum SWC to maintain P_(nmax) for T.amosissima,C.microphylla and H.mongolicum was 13.8%,13.3% and 15.2%,respectively.The optimum SWC to achieve the maximum water use efficiency(WUE) of the three shrub species was 10.0%,11.0% and 8.5%,respectively.Soil water compensation point for hydration of the three shrub species was 1.1%,0.8% and 0.9%,respectively.It is concluded that the optimum SWC for T. amosissima,C.microphylla and H.mongolicum should be 10.0%-13.8%,11.0%-13.3% and 8.5%-15.2%,respectively.
【Fund】: 教育部科学技术研究重大项目(10407);; 国家自然科学基金项目(30371172)
【CateGory Index】: S793
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