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首页> 外文期刊>Phycologia >Photosynthetic inorganic carbon utilization of gametophytes and sporophytes of Undaria pinnatifida (Phaeophyceae)
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Photosynthetic inorganic carbon utilization of gametophytes and sporophytes of Undaria pinnatifida (Phaeophyceae)

机译:裙带菜(配生植物)配子体和孢子体的光合无机碳利用

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摘要

The characteristics of inorganic carbon assimilation by photosynthesis were investigated in male and female gametophytes and juvenile sporophytes of Undaria pinnatifida. Gametophytes and sporophytes have detectable extracellular and intracellular carbonic anhydrase (CA) activity, and the CA inhibitor, acetazolamide (AZ), significantly inhibited their photosynthesis O2 evolution. In pH-drift experiments, it was found that gametophytes did not raise the final pH of seawater above 9.00 (CO2 concentrations of about 2.2 μM), indicating a low ability to utilize inorganic carbon. In contrast, sporophytes rapidly raised pH to over 9.53 and depleted the free CO2 concentration to less than 0.16 μM. The apparent photosynthetic affinity for CO2 was almost the same for gametophytes and sporophytes, whereas gametophytes had a much lower affinity for HCO3− than sporophytes. Two inhibitors of band 3 anion exchange protein (DIDS and SITS) inhibited the photosynthesis of gametophytes but not that of sporophytes. It was indicated that both gametophytes and sporophytes were capable of using HCO3−, which involved the external CA activity, and a direct HCO3− use also occurred in the former, but the latter showed a greater capacity of HCO3− use than the former. In addition, male and female gametophytes did not show great differences in the inorganic carbon uptake mechanism underlying photosynthesis.
机译:考察了裙带菜(Undaria pinnatifida)的雌雄配子体和幼体孢子体通过光合作用吸收无机碳的特性。配子体和孢子体具有可检测的细胞外和细胞内碳酸酐酶(CA)活性,并且CA抑制剂乙酰唑胺(AZ)显着抑制了它们的光合作用O2的进化。在pH漂移实验中,发现配子体没有将海水的最终pH值提高到9.00以上(CO2浓度约为2.2μM),表明利用无机碳的能力较低。相反,孢子体迅速将pH升高至9.53以上,并使游离CO2浓度降低至小于0.16μM。配子体和孢子体对CO2的表观光合亲和力几乎相同,而配子体对HCO3-的亲和力却低于子体。带3阴离子交换蛋白的两种抑制剂(DIDS和SITS)抑制配子体的光合作用,但不能抑制子孢子的光合作用。研究表明配子体和孢子体都能够使用HCO3-,这涉及外部CA活性,并且前者也直接使用了HCO3-,但是后者显示出比前者更大的HCO3-使用能力。此外,雄配子体和雌配子体在光合作用的无机碳吸收机理上没有显示出很大差异。

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