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Mechanism of Photosynthetic Carbon Dioxide Uptake by the Red Macroalga Chondrus crispus

机译:红色MacroalgaChondrus crispus吸收光合作用二氧化碳的机理

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摘要

The aim of this study was to determine how Chondrus crispus, a marine red macroalga, acquires the inorganic carbon (Ci) it utilizes for photosynthetic carbon fixation. Analyses of Ci uptake were done using silicone oil centrifugation (using multicellular fragments of thallus), infrared gas analysis, and gas chromatography. Inhibitors of carbonic anhydrase (CA), the band 3 anion exchange protein and Na+/K+ exchange were used in the study. It was found that: (a) C. crispus does not accumulate Ci internally above the concentration attainable by diffusion; (b) the initial Ci fixtion rate of C. crispus fragments saturates at approximately 3 to 4 millimolar Ci; (c) CA is involved in carbon uptake; its involvement is greatest at high HCO3 and low CO2 concentration, suggesting its participation in the dehydration of HCO3 to CO2; (d) C. crispus has an intermediate Ci compensation point; and (e) no evidence of any active or facilitated mechanism for the transport of HCO3 was detected. These data support the view that photosynthetic Ci uptake does not involve active transport. Rather, CO2, derived from HCO3 catalyzed by external CA, passively diffuses across the plasma membrane of C. crispus. Intracellular CA also enhances the fixation of carbon in C. crispus.
机译:这项研究的目的是确定海洋红巨球藻Chondrus crispus如何获取其用于光合作用固碳的无机碳(Ci)。使用硅油离心(使用thallus的多细胞片段),红外气体分析和气相色谱仪进行Ci吸收分析。研究中使用了碳酸酐酶(CA),3带阴离子交换蛋白和Na + / K + 交换抑制剂。发现:(a)脆皮梭菌在扩散所不能达到的浓度内不会在内部积聚Ci; (b)C.crispus片段的初始Ci固定率饱和在约3-4毫摩尔Ci; (c)CA参与碳吸收;在高HCO3 -和低CO2浓度下其参与最大,表明它参与了HCO3 -脱水为CO2的过程。 (d)脆皮梭菌具有中等的Ci补偿点; (e)没有发现任何有效或便利的HCO3 -转运机制的证据。这些数据支持这样的观点,即光合作用Ci的吸收不涉及主动转运。而是由外部CA催化源自HCO3 -的CO2被动地扩散到C. crispus的质膜上。细胞内CA还增强了C.crispus中碳的固定。

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