Ghezelbash Gholam Reza, Nahvi Iraj, Emamzadeh Rahman
Department of Biology, Faculty of Science, Shahid Chamran University of Ahvaz, Ahvaz, Iran,
Curr Microbiol. 2014 Aug;69(2):149-57. doi: 10.1007/s00284-014-0562-3. Epub 2014 Mar 28.
The purpose of the present investigation was to produce erythritol by Yarrowia lipolytica mutant without any by-products. Mutants of Y. lipolytica were generated by ultra-violet for enhancing erythrose reductase (ER) activity and erythritol production. The mutants showing the highest ER activity were screened by triphenyl tetrazolium chloride agar plate assay. Productivity of samples was analyzed by thin-layer chromatography and high-performance liquid chromatography equipped with the refractive index detector. One of the mutants named as mutant 49 gave maximum erythritol production without any other by-products (particularly glycerol). Erythritol production and specific ER activity in mutant 49 increased to 1.65 and 1.47 times, respectively, in comparison with wild-type strain. The ER gene of wild and mutant strains was sequenced and analyzed. A general comparison of wild and mutant gene sequences showed the replacement of Asp(270) with Glu(270) in ER protein. In order to enhance erythritol production, we used a three component-three level-one response Box-Behnken of response surface methodology model. The optimum medium composition for erythritol production was found to be (g/l) glucose 279.49, ammonium sulfate 9.28, and pH 5.41 with 39.76 erythritol production.
本研究的目的是利用解脂耶氏酵母突变体生产赤藓糖醇且不产生任何副产物。通过紫外线照射产生解脂耶氏酵母突变体,以提高赤藓糖还原酶(ER)活性和赤藓糖醇产量。通过氯化三苯基四氮唑琼脂平板试验筛选出ER活性最高的突变体。通过薄层色谱法和配备折光率检测器的高效液相色谱法分析样品的生产率。其中一个名为突变体49的突变体产生了最大量的赤藓糖醇,且没有任何其他副产物(特别是甘油)。与野生型菌株相比,突变体49中的赤藓糖醇产量和比ER活性分别提高到了1.65倍和1.47倍。对野生型和突变型菌株的ER基因进行了测序和分析。野生型和突变型基因序列的总体比较显示,ER蛋白中Asp(270)被Glu(270)取代。为了提高赤藓糖醇产量,我们使用了响应面法模型中的三因素-三水平-一响应Box-Behnken设计。发现赤藓糖醇生产的最佳培养基组成是(g/l)葡萄糖279.49、硫酸铵9.28,pH值为5.41,赤藓糖醇产量为39.76。