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首页> 外文期刊>Plant Biotechnology Journal >Exploiting algal NADPH oxidase for biophotovoltaic energy
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Exploiting algal NADPH oxidase for biophotovoltaic energy

机译:利用藻类NADPH氧化酶生产生物光伏能源

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摘要

Photosynthetic microbes exhibit light?¢????dependent electron export across the cell membrane, which can generate electricity in biological photovoltaic (BPV) devices. How electrons are exported remains to be determined; the identification of mechanisms would help selection or generation of photosynthetic microbes capable of enhanced electrical output. We show that plasma membrane NADPH oxidase activity is a significant component of light?¢????dependent generation of electricity by the unicellular green alga Chlamydomonas reinhardtii . NADPH oxidases export electrons across the plasma membrane to form superoxide anion from oxygen. The C.????reinhardtii mutant lacking the NADPH oxidase encoded by RBO1 is impaired in both extracellular superoxide anion production and current generation in a BPV device. Complementation with the wild?¢????type gene restores both capacities, demonstrating the role of the enzyme in electron export. Monitoring light?¢????dependent extracellular superoxide production with a colorimetric assay is shown to be an effective way of screening for electrogenic potential of candidate algal strains. The results show that algal NADPH oxidases are important for superoxide anion production and open avenues for optimizing the biological component of these devices.
机译:光合微生物在整个细胞膜上表现出依赖光的电子输出,可以在生物光伏(BPV)设备中产生电能。电子如何输出仍有待确定;机制的识别将有助于选择或产生能够增强电输出的光合微生物。我们表明,质膜NADPH氧化酶活性是光的重要组成部分,由单细胞绿藻衣藻衣藻产生电力。 NADPH氧化酶将电子输出穿过质膜,从氧形成超氧阴离子。缺少由RBO1编码的NADPH氧化酶的C.reinhardtii突变体在BPV装置的细胞外超氧阴离子产生和电流产生中均受到损害。与野生型基因的互补恢复了两种能力,证明了酶在电子输出中的作用。用比色法监测光依赖性细胞外超氧化物的产生被证明是筛选候选藻株的潜在电势的有效方法。结果表明,藻类NADPH氧化酶对于产生超氧阴离子非常重要,并为优化这些设备的生物学成分开辟了道路。

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