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Coupling of Solar Energy to Hydrogen Peroxide Production in the Cyanobacterium Anacystis nidulans

机译:蓝藻蓝藻中太阳能与过氧化氢生产的耦合

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摘要

Hydrogen peroxide production by blue-green algae (cyanobacteria) under photoautotrophic conditions is of great interest as a model system for the bioconversion of solar energy. Our experimental system was based on the photosynthetic reduction of molecular oxygen with electrons from water by Anacystis nidulans 1402-1 as the biophotocatalyst and methyl viologen as a redox intermediate. It has been demonstrated that the metabolic conditions of the algae in their different growth stages strongly influence the capacity for hydrogen peroxide photoproduction, and so the initial formation rate and net peroxide yield became maximum in the mid-log phase of growth. The overall process can be optimized in the presence of certain metabolic inhibitors such as iodoacetamide and p-hydroxymercuribenzoate, as well as by permeabilization of the cellular membrane after drastic temperature changes and by immobilization of the cells in inert supports such as agar and alginate.
机译:蓝绿藻(蓝细菌)在光养养条件下生产过氧化氢作为太阳能生物转化的模型系统引起了极大的兴趣。我们的实验系统是基于Anacystis nidulans 1402-1作为生物光催化剂和甲基紫精作为氧化还原中间体,利用来自水中的电子对分子氧进行光合作用还原的。已经证明,藻类在其不同生长阶段的代谢条件强烈影响过氧化氢光生产的能力,因此,在生长的对数生长期,初始形成速率和净过氧化物产量变为最大。整个过程可以在某些代谢抑制剂(如碘乙酰胺和对羟基巯基苯甲酸酯)的存在下进行优化,也可以通过在温度急剧变化后透化细胞膜,以及将细胞固定在惰性载体(如琼脂和藻酸盐)中进行优化。

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