Ghezelbash G R, Nahvi I, Malekpour A
Prikl Biokhim Mikrobiol. 2014 May-Jun;50(3):324-8.
In order to enhance erythritol production, mutants of Candida magnoliae DSM70638 were generated by ultraviolet and chemical mutagenesis. Erythritol productivity of samples was analyzed by TLC and HPLC with the refractive index detector. One of the mutants named mutant 12-2 gave a 2.4-fold increase in erythritol (20.32 g/L) and a 5.5-fold decrease in glycerol production compared to the wild strain. A sequence-based map of erythrose reductase gene in this mutant showed a replacement of the A321 by G321 that did not cause any amino acid exchange in protein structure. Therefore, the reason of higher erythritol production in C. magnoliae mutant 12-2 is probably the increase in expression of the open reading frame gene. This study revealed that a mutation or minor change in the sequence of genes involved in a production pathway can lead to a significant increase in protein translation.
为提高赤藓糖醇产量,通过紫外线和化学诱变产生了大花假丝酵母DSM70638的突变体。通过薄层层析(TLC)和配备折光率检测器的高效液相色谱(HPLC)分析样品的赤藓糖醇生产力。其中一个名为突变体12 - 2的突变体与野生菌株相比,赤藓糖醇产量增加了2.4倍(20.32 g/L),甘油产量降低了5.5倍。该突变体中赤藓糖还原酶基因的序列图谱显示,A321被G321取代,这在蛋白质结构中未引起任何氨基酸交换。因此,大花假丝酵母突变体12 - 2中赤藓糖醇产量较高的原因可能是开放阅读框基因表达的增加。这项研究表明,生产途径中相关基因序列的突变或微小变化可导致蛋白质翻译显著增加。