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陈雄文, 高坤山. 赤潮藻中肋骨条藻的光合作用对海水pH和N变化的响应[J]. 水生生物学报, 2004, 28(6): 635-639.
引用本文: 陈雄文, 高坤山. 赤潮藻中肋骨条藻的光合作用对海水pH和N变化的响应[J]. 水生生物学报, 2004, 28(6): 635-639.
CHEN Xiong-Wen, GAO Kun-Shan. RESPONSE OF PHOTOSYNTHESIS OF THE BLOOM-FORMING MARINE DIATOM SKELETONEMA COSTATUM TO CHANGES IN pH AND INORGANIC NITROGEN CONCENTRATIONS IN SEAWATER[J]. ACTA HYDROBIOLOGICA SINICA, 2004, 28(6): 635-639.
Citation: CHEN Xiong-Wen, GAO Kun-Shan. RESPONSE OF PHOTOSYNTHESIS OF THE BLOOM-FORMING MARINE DIATOM SKELETONEMA COSTATUM TO CHANGES IN pH AND INORGANIC NITROGEN CONCENTRATIONS IN SEAWATER[J]. ACTA HYDROBIOLOGICA SINICA, 2004, 28(6): 635-639.

赤潮藻中肋骨条藻的光合作用对海水pH和N变化的响应

RESPONSE OF PHOTOSYNTHESIS OF THE BLOOM-FORMING MARINE DIATOM SKELETONEMA COSTATUM TO CHANGES IN pH AND INORGANIC NITROGEN CONCENTRATIONS IN SEAWATER

  • 摘要: 为探讨赤潮发生时中肋骨条藻(Skeletonema coatatum)的光合作用生理变化,研究了不同无机氮(N)水平上,海水pH值升高对其胞外碳酸酐酶(CA)和光合生理特性的影响.海水pH从8.2升至8.7时,中肋骨条藻胞外CA被诱导,细胞对无机碳的亲和力(1/Km)提高;在pH 8.7时,高N条件下的胞外CA活性是低N条件下的3倍,1/Km值也提高了80%.单位叶绿素a的最大净光合能力(Pma)在不同pH和N水平上没有显著差异;但单位细胞的最大净光合能力(Pmc)提高了100%.这些结果表明,赤潮发生时,中肋骨条藻通过启动无机碳浓缩机制(CCM),提高细胞对无机碳利用效率,使其在低CO2(高pH)环境下维持光合机构正常运行;充足的N源有利于提高CCM的效率,从而提高CO2环境下的光合固碳能力.

     

    Abstract: The bloom-forming marine diatom Skeletonema costatum (Greville)Cleve (strain No.2042)was cultured under different levels of pH and inorganic nitrogen(N)at 20℃ and 210 μmolm-2s-1 (12:12/L:D)and its extracellular carbonic anhydrase(CA)and photosynthetic O2 evolution were investigated in order to see its physiological response to changes in pH under high N(300μmol/L)and low N(10μmol/L)levels during S.costatum bloom.The extracellular CA activity was assayed by the potentiometerical method,and the photosynthetic O2 evolution was determined by a Clark-type Oxygen Electrode.When pH in seawater rose from 8.2 to 8.7,the extracellular CA activity was induced and photosynthetic CO2 affinity(1/Km) increased,and,at pH8.7,the extracellular CA activity and photosynthetic CO2 affinity at the high N level were 2-times and 80% higher than those at the low N level,respectively.The chla-specific light-saturated photosynthetic rates(Pma)were no significant differences under different pH and N levels,but the cell-specific light-saturated photosynthetic rates(Pmc) was 100% higher at the high N level than at the low N level;By contrast,the cell-specific dark respiratory rates (Rdc) were insignificant differences among the different pH and N levels,but the chla-specific dark respiratory rates (Rdc) were l-fold higher at the low N level than at the high N level.The apparent photosynthetic efficiencies (α) were not significantly different for the alga grown among the different pH and N levels.The cellular chla content was l-fold higher at high-N-grown cells than at low-N-grown cells,but it was not affected by the pH changes.It was concluded that the alga increased the activities of extracellular CA and photosynthetic CO2 affinity with the rise of pH in seawater (or the decrease of CO2 in seawater),but their activites were higher at high N level than at low N level,suggesting that,during occurance of the bloom, S.costatum could develop the inorganic carbon concentration mechanism (CCM) to elevate the efficiency of inorganic carbon utilization,and to maintain the photosynthetic activity under low CO2 condition.The repleted N was benefited to improve the efficiency of CCM and then enhance the capacity of photosynthetic CO2 fixation under low CO2 (high pH) condition.

     

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