Impacts of CO2 enrichment on growth and photosynthesis in freshwater and marine diatoms

被引:0
作者
Hanhua Hu
Kunshan Gao
机构
[1] Chinese Academy of Sciences,State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology
[2] Shantou University,Marine Biology Institute
来源
Chinese Journal of Oceanology and Limnology | 2008年 / 26卷
关键词
carbon dioxide; elevated CO; growth; photosynthesis;
D O I
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中图分类号
学科分类号
摘要
The physiological responses of Nitzschia palea Kützing, a freshwater diatom, to elevated CO2 were investigated and compared with those of a marine diatom, Chaetoceros muelleri Lemmermann previously reported. Elevated CO2 concentration to 700 μl/L increased the dissolved inorganic carbon (DIC) and lowered the pH in the cultures of N. palea, thus enhancing the growth by 4%–20% during the whole growth period. High CO2-grown N. palea cells showed lower levels of dark respiration rates and higher Ik values. Light-saturated photosynthetic rates and photosynthetic efficiencies decreased in N. palea with the doubling CO2 concentration in airflow to the bottom of cultures, although the doubling CO2 concentration in airflow to the surface cultures had few effects on these two photosynthetic parameters. N. palea cells were found to be capable of using HCO3− in addition to gaseous CO2, and the CO2 enrichment decreased their affinity for HCO3− and CO2. Although doubled CO2 level would enhance the biomass of N. palea and C. muelleri to different extents, compared with the marine diatom, it had a significant effect on the specific growth rates of N. palea. In addition, the responses of photosynthetic parameters of N. palea to doubled CO2 concentration were almost opposite to those of C. muelleri.
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页码:407 / 414
页数:7
相关论文
共 75 条
[1]  
Badger M. R.(1998)The diversity and coevolution of Rubisco, plastids, pyrenoids, and chloroplast-based CO Can. J. Bot. 76 1 052-1 071
[2]  
Andrews T. J.(1988)-concentrating mechanisms in algae Can. J. Bot. 66 1 054-1 067
[3]  
Whitney S. M.(2001)Zoospore ultrastructure of Limnol. Oceanogr. 46 1 378-1 391
[4]  
Ludwig M.(2003) and Chin. Sci. Bull. 48 2 616-2 620
[5]  
Yellowlees D. C.(1994), two chytrids parasitizing the diatom Science 265 1 568-1 570
[6]  
Leggat W.(1998)CO Science 281 200-206
[7]  
Price G. D.(2005) and HCO Annu. Rev. Plant Biol. 56 99-131
[8]  
Beakes G. W.(1997) uptake in marine diatoms acclimated to different CO Nature 388 526-527
[9]  
Canter H. M.(1997) concentrations Freshw. Biol. 37 545-552
[10]  
Jaworski G. H. M.(1993)Effect of CO J. Phycol. 29 729-739