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Changes in transcript levels of starch hydrolysis genes and raising citric acid production via carbon ion irradiation mutagenesis of Aspergillus niger

机译:黑曲霉碳离子辐射诱变淀粉水解基因转录水平的变化并提高柠檬酸的产生

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摘要

The filamentous ascomycete Aspergillus niger is well known for its ability to accumulate citric acid for the hydrolysis of starchy materials. To improve citric acid productivity, heavy ion beam mutagenesis was utilized to produce mutant A.niger strains with enhanced production of citric acid in this work. It was demonstrated that a mutant HW2 with high concentration of citric acid was isolated after carbon ion irradiation with the energy of 80Mev/μ, which was obvious increase higher than the original strain from liquefied corn starch as a feedstock. More importantly, with the evidence from the expression profiles of key genes and enzyme activity involved in the starch hydrolysis process between original strain and various phenotype mutants, our results confirmed that different transcript levels of key genes involving in starch hydrolysis process between original strain and mutants could be a significant contributor to different citric acid concentration in A.niger, such as, amyR and glaA, which therefore opened a new avenue for constructing genetically engineered A.niger mutants for high-yield citric acid accumulation in the future. As such, this work demonstrated that heavy ion beam mutagenesis presented an efficient alternative strategy to be developed to generate various phenotype microbe species mutants for functional genes research.
机译:丝状子囊菌黑曲霉(Aspergillus niger)以其积累柠檬酸用于淀粉材料水解的能​​力而闻名。为了提高柠檬酸的生产率,这项工作利用重离子束诱变来生产突变型黑曲霉菌株,并增强柠檬酸的产量。结果表明,以80Mev /μ的能量进行碳离子辐照后,分离出了柠檬酸含量较高的突变体HW2,其产量明显高于以液化玉米淀粉为原料的菌株。更重要的是,从原始菌株和各种表型突变体之间的淀粉水解过程中关键基因的表达谱和酶活性的证据来看,我们的结果证实了原始菌株和突变体之间涉及淀粉水解过程的关键基因的转录水平不同可能是黑曲霉中不同柠檬酸浓度的重要贡献者,例如amyR和glaA,因此为构建基因工程黑曲霉突变体为将来高产柠檬酸积累开辟了一条新途径。这样,这项工作表明重离子束诱变提供了一种有效的替代策略,可用于生成各种表型微生物物种突变体,以进行功能基因研究。

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