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High photobiological hydrogen production activity of a Nostoc sp. PCC 7422 uptake hydrogenase-deficient mutant with high nitrogenase activity

机译:Nostoc sp。的高光生物产氢活性。 PCC 7422摄取具有高固氮酶活性的氢化酶缺陷型突变体

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We describe a strategy to establish cyanobacterial strains with high levels of H(2) production that involves the identification of promising wild-type strains followed by optimization of the selected strains using genetic engineering. Nostoc sp. PCC 7422 was chosen from 12 other heterocystous strains, because it has the highest nitrogenase activity. We sequenced the uptake hydrogenase (Hup) gene cluster as well as the bidirectional hydrogenase gene cluster from the strain, and constructed a mutant (Delta hupL) by insertional disruption of the hupL gene. The Delta hupL mutant produced H(2) at 100 mumoles mg chlorophyll a (-1) h(-1), a rate three times that of the wild-type. The Delta hupL cells could accumulate H(2) to about 29% (v/v) accompanied by O(2) evolution in 6 days, under a starting gas phase of Ar + 5% CO(2). The presence of 20% O(2) in the initial gas phase inhibited H(2) accumulation of the Delta hupL cells by less than 20% until day 7.
机译:我们描述了建立具有高水平的H(2)生产的蓝藻菌株的策略,其中涉及到有前途的野生型菌株的鉴定,然后使用基因工程优化所选菌株。 Nostoc sp。 PCC 7422是从其他12个异囊藻菌株中选出的,因为它具有最高的固氮酶活性。我们对菌株的摄取氢化酶(Hup)基因簇以及双向氢化酶基因簇进行了测序,并通过插入破坏hupL基因构建了一个突变体(Delta hupL)。 Delta hupL突变体产生100摩尔Mg叶绿素a(-1)h(-1)的H(2),其速率是野生型的三倍。在Ar + 5%CO(2)的起始气相下,Delta hupL细胞可以在6天之内将H(2)累积至约29%(v / v),并伴随O(2)的演化。到第7天,初始气相中20%O(2)的存在抑制了Delta hupL细胞的H(2)积累不到20%。

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