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Quantification of the Contribution of CO2, HCO3-, and External Carbonic Anhydrase to Photosynthesis at Low Dissolved Inorganic Carbon in Chlorella saccharophila.

机译:在小球藻中低溶解无机碳下,CO2,HCO3-和外部碳酸酐酶对光合作用的贡献的定量分析。

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摘要

An equation has been developed incorporating whole-cell rate constants for CO2 and HCO3- that describes accurately photosynthesis (Phs) in suspensions of unicellular algae at low dissolved inorganic carbon. At pH 8.0 the concentration of CO2 available to the algal cells depends on the rate of supply from, and the loss to, HCO3- and the rate of use by the cells. At elevated cell densities (>30 mg chlorophyll [Chl] L-1), at which CO2 use by the cells is high, the slope of a graph of absolute Phs versus Chl concentration approaches the rate of Phs on a milligram of Chl basis because of HCO3- use alone. The slope of a graph of Phs versus HCO3- will be the rate constant for HCO3-, and for Chlorella saccharophila it was 0.16 L mg-1 Chl h-1. The difference between the constants for dissolved inorganic carbon (measured in cells with external carbonic anhydrase) and HCO3-1 is the constant for CO2, which was 26 L mg-1 Chl h-1. This difference causes the half-saturation constant for Phs to increase 5- to 6-fold at high cell densities. The increase in CO2 use as a result of external carbonic anhydrase is described mathematically as a function of cell density.
机译:已经开发出包含CO2和HCO3-的全细胞速率常数的方程式,该方程式准确描述了单细胞藻类在低溶解无机碳下的悬浮液中的光合作用(Phs)。在pH值为8.0时,藻类细胞可利用的CO2浓度取决于HCO3-的供给速率和损失,以及细胞的使用速率。在较高的细胞密度(> 30 mg叶绿素[Chl] L-1)下,当细胞对CO2的使用较高时,绝对Phs对Chl浓度的曲线图的斜率接近以mg Chl为基础的Phs速率,因为HCO3-单独使用。 Phs对HCO3-的曲线图的斜率将是HCO3-的速率常数,而小球藻则为0.16 L mg-1 Chl h-1。溶解的无机碳的常数(在带有外部碳酸酐酶的电池中测量)与HCO3-1之间的差异是CO2的常数,为26 L mg-1 Chl h-1。这种差异导致在高细胞密度下,Phs的半饱和常数增加了5到6倍。数学上描述了由于外部碳酸酐酶导致的二氧化碳使用量的增加与细胞密度的关系。

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    Williams, T. G.; Colman, B.;

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  • 年度 1995
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