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《Journal of Arid Land Resources and Environment》 2015-01
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Response of photosynthetic fluorescence characteristics to the soil drought stress of Pistacia weinmannifolia leaf

ZHAO Xiangjiang;WANG Yan;TIAN Kun;College of Environmental Science and Engineering,Southwest Forestry University;National Plateau Wetlands Research Center;Chongqing University;  
Pistacia weinmannifolia seedlings were potted to take water moisture control tests; six different soil moisture treatments( W1,W2,W3,W4,W5 and W6) were set up. To clarify the change mechanisms of Pistacia weinmannifolia leaves' photosynthetic fluorescence characteristics under different soil moistures and the quantitative relationship between photosynthetic fluorescence characteristics and soil water content,photosynthetic and chlorophyll fluorescence parameters of Pistacia weinmannifolia leaves were measured with Li- 6400 Portable Photosynthesis System. The results indicated that with the soil moisture content from high to low( W1- W6),the net photosynthetic rate( Pn),transpiration rate( Tr),stomata conductance( Gs),maximal photochemical efficiency( Fv /Fm),quantum yield( Yield),electron transport rate( ETR),photochemical quenching( qP) increased and then decreased,but non- photochemical quenching( NPQ) was opposite. Water use efficiency( WUE) and intercellular CO2concentration( Ci) fluctuated frequently. Non- stomatal limitation was responsible for reduction in photosynthesis when soil moisture content was too high or extreme drought; stomatal limitation limited photosynthesis when soil moisture content was suitable. Pn,Tr,Gs,yield,ETR and NPQ decreased significantly under the extreme drought( W6),in this situation photosynthesis structure of PS Ⅱ had been destroyed.
【Fund】: 国家自然科学基金项目(31100520);; 云南省优势重点学科(生态学)资助
【CateGory Index】: S792.99;Q945
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