首页> 外文期刊>International Journal of Medicinal Mushrooms >Production of bioactive exopolysaccharides from bitter medicinal mushroom, Antrodia camphorata (M. Zang et C.H. Su) Sh.H. Wu et al. (Aphyllophoromycetideae) in submerged cultivation.
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Production of bioactive exopolysaccharides from bitter medicinal mushroom, Antrodia camphorata (M. Zang et C.H. Su) Sh.H. Wu et al. (Aphyllophoromycetideae) in submerged cultivation.

机译:由苦药用蘑菇樟芝(Antrodia camphorata)(M. Zang等,C.H。Su)Sh.H.生产生物活性胞外多糖。 Wu等。 (Aphyllophoromycetideae)在水下培养。

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This study examines the effects of various fructose concentrations in media on the production and quality of bioactive exopolysaccharides (EPS) from Bitter medicinal mushroom, Antrodia camphorate in submerged cultures. The fructose in media of submerged cultures of A. camphorate significantly affected the production, average molecular weight (Mn), and antioxidant activity of exopolysaccharides. The specific growth rate decreased monotonically from 0.33 to 0.25 1/day as the fructose concentration increased from 10 to 60 g/L; however, maximum production and productivity for EPS increased from 75.23 to 164.87 mg/L and 6.27 to 9.70 mg/L/day, respectively. In addition, the fed-batch culture used in this study significantly improved the production of EPS (2.43-fold enhancement, from 75.23 to 182.99 mg/L), number average molecular weights of EPS (1.47-fold enhancement, from 5.44x105 to 7.98x105 Da), protein/exopolysaccharide ratios (1.63-fold enhancement, from 16% to 26%), and antioxidant activity of EPS (1.32-fold enhancement, from 60% to 79%), as compared with corresponding properties of batch fermentation at 10 g/L fructose in an air-lift bioreactor. The antioxidant activity of EPS was highly correlated with number average molecular weights (R2=0.90) and protein/exopolysaccharide ratios (R2=0.96). The positive results of this research have successfully verified the promotion efficiency on the production and quality of EPS from the medicinal mushroom A. camphorate.
机译:这项研究探讨了培养基中各种果糖浓度对淹没培养物中苦味樟芝樟脑樟生物蘑菇的生物活性胞外多糖(EPS)的生产和质量的影响。 A淹没培养液中的果糖。樟脑显着影响胞外多糖的生产,平均分子量(Mn)和抗氧化活性。当果糖浓度从10 g / L增加到120 g / L时,比生长速率从0.33下降到0.25 1 /天;但是,EPS的最大产量和生产率分别从75.23毫克/升增加至164.87毫克/升和6.27毫克/升/天/日。此外,本研究中使用的分批补料培养显着提高了EPS的产量(从2.4.3倍增加,从75.23到182.99 mg / L),EPS的数均分子量(1.47倍增加,从5.44x10 > 5 至7.98x10 5 Da),蛋白质/胞外多糖比率(从1.6%增至1.63倍,从16%增至26%)和EPS的抗氧化性(从1.32倍增至1.32倍)与在气提式生物反应器中以10 g / L果糖分批发酵的相应特性相比,其性能介于60%至79%之间。 EPS的抗氧化活性与数均分子量( R 2 = 0.90)和蛋白质/胞外多糖比率( R 2 = 0.96)。这项研究的积极结果已经成功地验证了药用蘑菇 A对EPS的生产和质量的促进效率。樟脑

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