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Improved production of kojic acid by mutagenesis of Aspergillus flavus HAk1 and Aspergillus oryzae HAk2 and their potential antioxidant activity

机译:通过诱变黄曲霉HAk1和米曲霉HAk2改善曲酸的生产及其潜在的抗氧化活性

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摘要

Two wild-type (WT) Aspergillus strains, A. flavus HAk1 and A. oryzae HAk2, were selected for kojic acid (KA) biosynthesis. Malt extract sucrose culture medium (MES) was the best culture medium for maximum production of KA. The maximum production of KA has been estimated at pH 4 after 7 days of incubation at 30 °C. Overproduction of KA was attained by mutagenesis of both A. flavus HAk1 and A. oryzae HAk2 through their exposer to different doses of gamma irradiation. The mutant strains (MT) A. flavus HAk1-M2 and A. oryzae HAk2-M26 were the most stable mutants for maximum production of KA through four generations. Yield of KA by A. oryzae HAk2-M26 and A. flavus HAk1-M2 has been 2.03-fold and 1.9-fold, respectively, higher than their wild-type strains. All WT and MT strains were used for KA production from different agricultural raw materials. Apple peel was the best waste for KA production by WT strains of A. flavus and A. oryzae, while orange peel and rice stalk are best material for KA production by MT strains, A. flavus HAk1-M2 and A. oryzae HAk2-M26, respectively. All experimental strains have the ability to produce considerable amounts of KA from sugarcane molasse (SCM) and sugar-beet molasse (SBM). SBM was better than SCM for KA production by all strains. The antioxidant activity of biosynthesizing KA was strongly affected with production conditions, where the highest antioxidant activity of all strains was recorded at the optimum environmental and nutritional conditions for KA production.
机译:选择了两个野生型(WT)曲霉菌株,A。flavus HAk1和A. oryzae HAk2,用于曲酸(KA)的生物合成。麦芽提取物蔗糖培养基(MES)是使KA产量最高的最佳培养基。在30°C下孵育7天后,估计pH为4时,KA的最大产量。通过诱变黄曲霉HAk1和米曲霉HAk2使其暴露于不同剂量的γ射线,可以实现KA的过量生产。突变菌株(MT)黄曲霉HAk1-M2和米曲霉HAk2-M26是最稳定的突变株,可在四代中最大化KA的产量。米曲霉HAk2-M26和黄曲霉HAk1-M2的KA产量分别比其野生型菌株高2.03倍和1.9倍。所有WT和MT菌株均用于从不同农业原料生产KA。苹果皮是黄曲霉和米曲霉WT菌株生产KA的最佳废物,橘皮和稻秆是MT菌株黄曲霉HAk1-M2和米曲霉HAk2-M26产生KA的最佳材料。 , 分别。所有实验菌株均具有从甘蔗糖蜜(SCM)和甜菜糖蜜(SBM)产生大量KA的能力。在所有菌株的KA生产中,SBM均优于SCM。生物合成KA的抗氧化活性受生产条件的影响很大,其中所有菌株的最高抗氧化活性均在生产KA的最佳环境和营养条件下记录下来。

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