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首页> 外文期刊>Journal of Biotechnology >Improved mannitol production by a random mutant of Leuconostoc pseudomesenteroides
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Improved mannitol production by a random mutant of Leuconostoc pseudomesenteroides

机译:Leuconostoc pseudomesenteroides的随机突变体改善了甘露醇的生产

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摘要

A mutant of Leuconostoc pseudomesenteroides ATCC12291 that was unable to grow on fructose was constructed by chemical mutagenesis. The fructose uptake of this mutant, designated as BPT143, was unaltered and allowed fructose still to be converted into mannitol when glucose was present in the growth medium. The mutant grew and consumed fructose faster than the parent strain when grown in a medium containing both glucose and fructose. The specific activity of fructokinase, the enzyme involved in phosphorylation of fructose to fructose-6-phosphate, was decreased to about 10% of that of the parent strain, and resulted in a reduced leakage of fructose into the phosphoketolase (PK) pathway. The yield of mannitol from fructose was improved from 74 to 86 mol%. The increased fructose consumption rate and higher mannitol yield of the mutant also resulted in improvement of volumetric mannitol productivity. In addition, isolation and characterization of the wild type L. pseudomesenteroides fructokinase gene (fruK) was performed. DNA sequence analysis of the fruK gene region of BPT143 revealed only one silent mutation which does not explain the highly reduced fructokinase activity of the mutant. The genetic characterization of fruK was completed by analyzing the expression, size and 5' end of fruK transcripts. Expression data with BPT143, revealing absence of fruK transcripts, was in accordance with the reduced fructokinase activity of the mutant.
机译:通过化学诱变构建了不能在果糖上生长的假菜青色隐球菌ATCC12291的突变体。当突变体中存在葡萄糖时,该突变体的果糖摄取(称为BPT143)未发生改变,并允许果糖仍转化为甘露醇。当在同时含有葡萄糖和果糖的培养基中生长时,该突变体的生长和消耗果糖的速度要比亲本菌株快。果糖激酶(果糖磷酸化为6-磷酸果糖的酶)的比活性降低至亲本菌株的约10%,并导致果糖向磷酸酮醇酶(PK)途径的泄漏减少。来自果糖的甘露醇的产率从74摩尔%提高到86摩尔%。果糖消耗率的提高和突变体甘露醇产量的提高也导致了甘露醇体积生产率的提高。此外,进行了野生型假性肠球菌果糖激酶基因(fruK)的分离和鉴定。 BPT143的fruK基因区域的DNA序列分析显示只有一个沉默突变,不能解释该突变体果糖激酶活性的高度降低。通过分析fruK转录本的表达,大小和5'末端来完成fruK的遗传表征。 BPT143的表达数据表明不存在fruK转录本,与突变体的果糖激酶活性降低一致。

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