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首页> 外文期刊>FEMS Microbiology Letters >Random transposon mutagenesis of the Saccharopolyspora erythraea genome reveals additional genes influencing erythromycin biosynthesis
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Random transposon mutagenesis of the Saccharopolyspora erythraea genome reveals additional genes influencing erythromycin biosynthesis

机译:Saccharopopypora erythraea基因组的随机转座诱变揭示了影响红霉素生物合成的额外基因

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摘要

A single cycle of strain improvement was performed in Saccharopolyspora erythraea mutB and 15 genotypes influencing erythromycin production were found. Genotypes generated by transposon mutagenesis appeared in the screen at a frequency of similar to 3%. Mutations affecting central metabolism and regulatory genes were found, as well as hydrolases, peptidases, glycosyl transferases and unknown genes. Only one mutant retained high erythromycin production when scaled-up from micro-agar plug fermentations to shake flasks. This mutant had a knockout of the cwh1 gene ( SACE_598), encoding a cell-wall-associated hydrolase. The cwh1 knockout produced visible growth and morphological defects on solid medium. This study demonstrated that random transposon mutagenesis uncovers strain improvement-related genes potentially useful for strain engineering.
机译:在Saccharopopyspora红斑狼疮中进行单一的应变改善循环,并发现了影响红霉素产生的15种基因型。 通过转座子诱变产生的基因型出现在筛选中,其频率类似于3%。 发现影响中枢代谢和调节基因的突变,以及水解酶,肽酶,糖基转移酶和未知基因。 当从微琼脂塞发酵中缩小以摇动烧瓶时,只有一个突变体保留高红霉素产生。 该突变体具有CWH1基因(SACE_598)的敲除,编码细胞壁相关的水解酶。 CWH1敲除在固体培养基上产生可见的生长和形态缺陷。 本研究表明,随机转座诱变突出潜在可用于应变工程的应变改善相关基因。

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