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Towards a super H_2 producer: Improvements in photofermentative biohydrogen production by genetic manipulations

机译:迈向超级H_2生产商:通过基因操作改善光发酵生物氢的生产

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摘要

Photofermentative hydrogen production by purple non-sulfur bacteria is a potential candidate among biological hydrogen production methods. Hydrogen is produced under anaerobic conditions in light using different organic substrates as carbon source. The hydrogen evolution occurs mainly through the catalytic activity of the nitrogenases under non-repressive concentrations of ammonia. However, total hydrogen production is constrained due to several reasons in purple non-sulfur (PNS) bacteria, such as consumption of hydrogen by uptake hydrogenase, inefficient hydrogen production capacity of nitrogenase, limited electron flow to the nitrogenase, sensitivity of nitrogenase towards ammonia, etc. Hence, PNS bacteria need to be manipulated genetically to overcome these limitations and to make the process practically feasible. This review focuses on various approaches for the genetic improvement of biohydrogen production by PNS bacteria.
机译:紫色非硫细菌的光发酵制氢是生物制氢方法中的潜在候选者。氢气是在厌氧条件下使用不同的有机底物作为碳源在光条件下产生的。氢气的释放主要是通过在非抑制浓度的氨气下硝化酶的催化活性而发生的。但是,由于紫色非硫(PNS)细菌的原因,总氢气产量受到限制,例如摄取氢化酶消耗的氢气,低效率的固氮酶制氢能力,有限的流向固氮酶的电子流,固氮酶对氨的敏感性,因此,需要对PNS细菌进行基因改造,以克服这些限制并使其切实可行。这篇综述着重于各种方法来遗传改良PNS细菌产生的生物氢。

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