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《Journal of Beijing Forestry University》 2009-02
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Combined effects of high-N and low-light on photosynthesis and energy transduction of successional tree species under moderate high-temperature.

SUN Gu-chou;ZHAO Ping;ZENG Xiao-ping;CAI Xi-an.South China Institute of Botany,Chinese Academy of Sciences,Guangzhou,510650, P.R.China.  
CO_2 gas exchange and chlorophyll fluorescence measurement systems were used to investigate the potential effects of high nitrogen(HN) and low light(LL) on photosynthetic processes and forest succession of the saplings of early-successional species Schima superba,intermediate-sucessional species Castanopsis hytrix,and late-successional species Cryptocarya concinna under moderate high-temperature(38℃).The results showed that moderate high-temperature increased net photosynthetic rates(P_n) of high nitrogen and high light(HNHL) plants of S.superb and C.hytrix.High light(500 μmol/(m~2·s)) restricted P_n-responses of low nitrogen and high light(LNHL) and high nitrogen and low light(HNLL) plants of all examined species to moderate high-temperature.Increases of the maximum quantum yield of PSII(F_v′/F_m′),quantum efficiency(F_q′/F_m′),fraction of opened PSII centers(q_L),non-cycle photosynthetic electron transfer rate(ETR) and absorbed light energy used in photochemical reaction of PSII(Φ_(PSII)) in LNHL plants of S.superb and C.hystrix under moderate high-temperature were observed at the light level 500 μmol/(m~2·s),but similar response was not found in HNLL plants of C.concinna.C.concinna plants dissipated more absorbed energy in thermal form and showed low photochemical efficiency.The results imply that increasing N deposition and frequent haze in Pearl River Delta area in southern China would defer the succession of forest community.
【Fund】: 中国科学院知识创新工程重要方向项目(KSCX2-SW-133);; 国家自然科学基金项目(30428022、30770328);; 广东省自然科学基金项目(07006917)
【CateGory Index】: S718.5
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