首页> 外文期刊>Journal of microbiology and biotechnology >Effect of gcl, glcB, and aceA disruption on glyoxylate conversion by Pseudomonas putida JM37
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Effect of gcl, glcB, and aceA disruption on glyoxylate conversion by Pseudomonas putida JM37

机译:gcl,glcB和aceA破坏对恶臭假单胞菌JM37乙醛酸转化的影响

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摘要

Pseudomonas putida JM37 metabolized glyoxylate at a specific rate of 55 g/g dry biomass/day. In order to investigate their role, three genes encoding enzymes that are potentially involved in the conversion of glyoxylate were disrupted; namely, tartronate semialdehyde synthase (gcl), malate synthase (glcB), and isocitrate lyase (aceA). Strains with transposon insertion in either of these genes were isolated from a 50,000 clone library employing a PCR-guided enrichment strategy. In addition, all three double mutants were constructed via targeted insertion of a knock-out plasmid. Neither mutation of gcl, glcB, and aceA nor any of the respective double mutations influenced glyoxylic acid conversion, indicating that P. putida JM37 may possess other enzymes and pathways for glyoxylate metabolism.
机译:恶臭假单胞菌JM37以55 g / g干生物量/天的特定速率代谢乙醛酸。为了研究它们的作用,破坏了编码可能参与乙醛酸酯转化的酶的三个基因。即,酒石酸半醛合酶(gcl),苹果酸合酶(glcB)和异柠檬酸裂合酶(aceA)。使用PCR引导的富集策略从50,000个克隆文库中分离出在这两个基因中都插入了转座子的菌株。另外,通过靶向插入敲除质粒来构建所有三个双重突变体。 gcl,glcB和aceA的突变或任何相应的双突变均未影响乙醛酸的转化,表明恶臭假单胞菌JM37可能具有乙醛酸代谢的其他酶和途径。

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