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Effect of CO2 concentrations on the activity of photosyn-thetic CO2 fixation and extra-celluar carbonic anhydrase in the marine diatom Skeletonema costatum 被引量:8

Effect of CO2 concentrations on the activity of photosyn-thetic CO_2 fixation and extra-celluar carbonic anhydrase in the marine diatom Skeletonema costatum
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摘要 The growth and activity of photosynthetic CO2 uptake and extracellular carbonic anhydrase (CAext) of the marine diatom Skeletonema costatum were investigated while cultured at different levels of CO2 in order to see its physio-logical response to different CO2 concentrations under either a low (30 靘ol·m-2·s-1) or high (210 靘ol·m-2·s-1) irradiance. The changes in CO2 concentrations (4—31 靘ol/L) affected the growth and net photosynthesis to a greater extent under the low than under the high light re-gime. CAext was detected in the cells grown at 4 mol/L CO2 but not at 31 and 12 靘ol/L CO2, with its activity being about 2.5-fold higher at the high than at the low irradiance. Photo- synthetic CO2 affinity (1/ K1/2(CO2)) of the cells de-creased with increased CO2 concentrations in culture. The cells cultured under the high-light show significantly higher photosynthetic CO2 affinity than those grown at the low-light level. It is concluded that the regulations of CAext activity and photosynthetic CO2 affinity are dependent not only on CO2 concentration but also on light availability, and that the de-velopment of higher CAext activity and CO2 affinity under higher light level could sufficiently support the photosyn-thetic demand for CO2 even at low level of CO2. The growth and activity of photosynthetic CO2 uptake and extracellular carbonic anhydrase (CAext) of the marine diatom Skeletonema costatum were investigated while cultured at different levels of CO2 in order to see its physio-logical response to different CO2 concentrations under either a low (30 靘ol·m-2·s-1) or high (210 靘ol·m-2·s-1) irradiance. The changes in CO2 concentrations (4—31 靘ol/L) affected the growth and net photosynthesis to a greater extent under the low than under the high light re-gime. CAext was detected in the cells grown at 4 mol/L CO2 but not at 31 and 12 靘ol/L CO2, with its activity being about 2.5-fold higher at the high than at the low irradiance. Photo- synthetic CO2 affinity (1/ K1/2(CO2)) of the cells de-creased with increased CO2 concentrations in culture. The cells cultured under the high-light show significantly higher photosynthetic CO2 affinity than those grown at the low-light level. It is concluded that the regulations of CAext activity and photosynthetic CO2 affinity are dependent not only on CO2 concentration but also on light availability, and that the de-velopment of higher CAext activity and CO2 affinity under higher light level could sufficiently support the photosyn-thetic demand for CO2 even at low level of CO2.
出处 《Chinese Science Bulletin》 SCIE EI CAS 2003年第23期2616-2620,共5页
基金 supported by the National Natural Science Foundation of China(Grant Nos.39830060 and 30070582) the Natural Science Foundation and Higher Education Ofice of Guangdong Province.
关键词 CO2 二氧化碳 光合作用 脱水酶 海洋 acetazolamide (AZ), carbonic anhydrase, CO2 affinity, dissolved inorganic carbon (DIC), light, photosynthesis.
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  • 1Raven, J.A,Johnston, A.M.Mechanisms of inorganic-carbon acquisition in marine phytoplankton and their implications for the use of others resources[].Limnology and Oceanography.1991
  • 2U. Riebesell,D. A. Wolf-Gladrow,V. Smetacek.Carbon dioxide limitation of marine phytoplankton growth rates[].Nature.1993
  • 3Hein M,Jensen K S.CO2 increases oceanic primary production[].Nature.1997
  • 4Mitchell B G,Brody E A,Holm-Hansen O,et al.Light limitation of phytoplankton biomass and macronutrient utilization in the southern Ocean[].Limnology and Oceanography.1991
  • 5Coleman,J.R.ThemolecularandbiochemicalanalysesofCO2-concentratingmechanismsincyanobateriaandmicroalgae[].PlantCellandEnvironment.1991
  • 6BADGER M R,PRICE G D.The role of carbonic anhydrase in photosynthesis[].Annual Review of Plant Physiology.1994
  • 7Yin K,Harrison P J,Dortch Q.Lack of ammonium inhibition of nitrate uptake for a diatom grown under low light conditions[].Journal of Experimental Marine Biology and Ecology.1998
  • 8Wilbur,K. M. N. G.Anderson, 1948[].Journal of Biological Chemistry.
  • 9K Gao,Y Aruga,K Asada,T Ishihara,T Akano,M Kiyohara.Calcification in the articulated coralline algaCorallina pilulifera, with special reference to the effect of elevated atmospheric CO2[].Marine Biology.1993
  • 10JeffreyS.W.andG.P.Humphrey[1975]Newspectrophotometricequationsfordeterminingchlorophyllsa.b.c1andc2inhigherplantsalgalnaturalphytoplankton[].BiochemPhysiolPflanzen.

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