[1] 周秀骥,罗超,李维亮.中国地区臭氧总量变化与青藏高原低值 中心[J].科学通报,1995,40(15):1396-1398 [2] 周秀骥,李维亮,陈隆勋,等、青藏高原地区大气臭氧变化的研 究[J].气象学报,2004,62(5):513-527 [3] Sicora C,Szilárd A,Sass L,et al.UV-B and UV-A radiation effects on photosynthesis at the molecular level[A]. In:Ghetti F,Checcucci G,Bornman J F,eds.Environmental UV radiation:Impact on ecosystem and human health and predictive model[C].The Netherlands:Springer Press,2006.121-135 [4] van Rensen J J,Vredenberg W J,Rodrigues G C.Time sequence damage to the acceptor and donor aidea of photosystem Ⅱ by UV-B radiation as evaluated by chlorophyll a fluorescence[J].Photosynthesis Research,2007,94:219-297 [5] 师生波,尚艳霞,朱鹏锦,等.增补UV-B辐射对高山植物美丽风毛菊光合作用和色素含量的影响[J].草地学报,2010,18(5):607-614 [6] 师生波,尚艳霞,朱鹏锦,等.滤除自然光中UV-B辐射成分对高山植物美丽风毛菊光合生理的影响[J].植物生态学报,2011,35(2):176-186 [7] Flint S D,Ryel R J,Caldwell M M.Ecosystem UV-B experiments in terrestrial communities:a review of recent findings and methodologies[J].Agricultural and Forest Meteorology,2003,120(3):177-189 [8] Björn L O,Teramura A H.Simulation of daylight ultraviolet radiation and effects of ozone depiction[A].In:Young A R,Björn L O,Moan J,et al.eds.Environmental UV photobiology[C].New York:Plenum Press,1993.41-71 [9] Genty B,Briantais J M,Baker N R.The relationship between the quantum yield of photosynthetic electron transport and quenching of chlorophyll fluorescence[J].Biochimica et Biophysica Acta,1989,990(1):87-92 [10] Bilger W,Björkman O.Role of the xanthophyll cycle protoprotection elucidated by measurements of light-induced absorbance changes,fluorescence and photosynthesis in leavea of Hedera canariensis[J].Photosynthesis Research,1990,25:173-185 [11] 师生波,贲桂英,韩发.不同海拔地区紫外线B辐射状况及植物叶片紫外线吸收物质含量的分析[J].植物生态学报,1999,23(6):529-535 [12] 朱广廉,钟诲文,张爱琴.植物生理学实验[M].北京:北京大学出版社,1990.51-54 [13] Allen D J,Nogués S,Baker N R.Ozone depletion and increased UV-B radiation:is there a real threat to photosynthe sisö[J].Journal Experimental Botany,1998,49:1775-1788 [14] (S)prtová M,(S)punda V,Kalina J,et al.Photosynthetic UV-Bresponse of beach (Fagus sylvatica L.) saplings[J].Photosynthetica,2003,41(4):533-543 [15] Baker N R.Chlorophyll fluorescence:a probe of photosynthesis in vivo[J].Annual Review of Plant Biology,2008,59:89-113 [16] Baker N R,Oxborough K.Chlorophyll fluorescence as a probe of photosynthetic productivity[A].In:Papageorgiou G C,Govindjee,eds.Chlorophyll a fluorescence:A signature of photosynthesis[C].The Netherlands:Springer Press,2004.65-82 [17] Lizana X C,Hess S,Calderini D F.Crop phenology modifies wheat responses to increased UV-B radiation[J].Agricultural and Forest Meteorology,2009,149(11):1964-1974 [18] Jansen M A K,Gaba V,Greenberg B M.Higher plants and UV-B radiation:balancing damage,repair and acclimation[J].Trends in Plant science,1998,3(4):131-135 [19] Fedina I,Georgieva K,Velitchkova M,et al.Effect of pretreatment of barley seedlings with different salts on the level of UV-B induced and UV-B absorbing compounds[J].Environmental and Experimental Botany,2006,56(3):225-230 [20] Lau T S L,Eno E,Goldstein G,et al.Ambient levels of UVB in Hawaii combined with nutrient deficiency decrease photosynthesis in near-isogenic maize lines varying in leaf flavonoids:Flavonoids decrease photoinhibition in plants exposed to UV-B[J].Photosynthetica,2006,44(3):394-403 [21] Ziska L H,Teramura A H,Sullivan J H,et al.Influence of ultraviolet-B (UV-B) radiation on photosynthetic and growth characteristics in field-grown cassava (Manihot esculentum Crantz.)[J].Plant,Cell and Environment,1993,16(1):73-79 |