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Effect of CO_2 Increase in Atmosphere and UV-B Intensification on Nostoc commune Photosynthetic Pigment and UV-B Masking Materials

Effect of CO_2 Increase in Atmosphere and UV-B Intensification on Nostoc commune Photosynthetic Pigment and UV-B Masking Materials
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摘要 Using Nostoc commune as experiment target,the effect of CO 2 with different concentrations in atmosphere and dosage of UV-B on photosynthetic pigment chlorophyll a (Chl a),carotenoids,phycoerythrin,phycocyanin,allophycocyanin and UV-B masking materials was studied.The results showed that high dosage of UV-B radiation inhibited the synthesis process of Chl a,phycoerythrin,phycocyanin and allophycocyanin,but promoted the synthesis of carotenoids,MAAs and scytonemin,thus the negative effect produced by UV-B radiation was reduced and the resistance of Nostoc commune against UV-B radiation was enhanced. Using Nostoc commune as experiment target,the effect of CO 2 with different concentrations in atmosphere and dosage of UV-B on photosynthetic pigment chlorophyll a (Chl a),carotenoids,phycoerythrin,phycocyanin,allophycocyanin and UV-B masking materials was studied.The results showed that high dosage of UV-B radiation inhibited the synthesis process of Chl a,phycoerythrin,phycocyanin and allophycocyanin,but promoted the synthesis of carotenoids,MAAs and scytonemin,thus the negative effect produced by UV-B radiation was reduced and the resistance of Nostoc commune against UV-B radiation was enhanced.
出处 《Wuhan University Journal of Natural Sciences》 CAS 2012年第3期255-260,共6页 武汉大学学报(自然科学英文版)
基金 Supported by the National Natural Science Foundation of China(30700084)
关键词 Nostoc commune UV-B CO2 photosynthetic pigments Mycosporine-like amino acids (MAAs) SCYTONEMIN Nostoc commune UV-B CO2, photosynthetic pigments Mycosporine-like amino acids (MAAs) scytonemin
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  • 1Xu Juntian, Gao Kunshan. The influence of carbon dioxide and solar UVR on the growth, photosynthesis and pigments contents of Gracilaria lemaneiformis [J]. Acta Hydrobi- ologica Sinica, 2010, 32(5): 144-150(Ch).
  • 2Thomas D C, Benson S. Carbon dioxide capture for storage in deep geologic formations:results from the C02 capture project [M]. First Edition. San Diego: Elsevier Science Ltd, 2005.
  • 3Li Kunlan. The destruction of the ozone layer and its protec- tion [J]. Environmental Technology, 2000, (2): 21-23(Ch).
  • 4Zhai Xingli, Shi Benlin.The effects of ultraviolet radiation on organism [J]. Agriculture and Technology, 2000, 20 (1): 44-45(Ch).
  • 5李敦海,刘永定.近十年中国地木耳研究概况[J].水生生物学报,2003,27(4):408-412. 被引量:58
  • 6Whitton B A, Malcolm Potts. The Ecology of Cyanobacteria [M]. First Edition. The Netherlands: Kluwer Academic Pub- lishers, 2000.
  • 7Rai L C, Nirupama M. Algal responses to enchanced ultravio- let-B radiation [J]. PINSA,1998, 1364(2): 125-146.
  • 8Schulz M E, Bilger W, Scherer S. UV-B-induced synthesis of photoprotective pigments and extracellular polysaccharides in the terrestrial cyanobacterium Nostoc [J]. Journal of Bac- teriology, 1997, 179(6): 1940-1945.
  • 9Hein M, Sand-Jensen K, CO2 increases oceanic primary production [J]. Nature, 1997, 388: 526-527.
  • 10夏建荣,高坤山,叶海波.水华鱼腥藻生长与光合作用对大气CO_2浓度升高的响应[J].植物生态学报,2002,26(6):652-655. 被引量:14

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