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Corncob hydrolysate, an efficient substrate for Monascus pigment production through submerged fermentation

机译:玉米芯水解物,通过深层发酵生产红曲色素的有效底物

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Monascus pigment has traditionally been produced by the fermentation of Monascus using rice powder or glucose as a culture substrate. Submerged fermentation can produce stable Monascus pigment yield and control the accumulation of the by-product, citrinin, which can then be more easily removed. To reduce the cost of Monascus submerged fermentation, the feasibility of corncob hydrolysate as an alternative substrate was investigated. Results showed that, when compared with a conventional glucose medium, the corncob hydrolysate medium produced an equivalent pigment yield without stimulating citrinin accumulation. Furthermore, the corncob hydrolysate medium and cultivation conditions were optimized to enhance pigment production and decrease citrinin synthesis. When Monascus sp. was cultured under dark conditions in the presence of caprylic acid, pigment production was increased to 25.8 +/- 0.8 UA(500)/mL, which was higher than that achieved in a glucose medium (24.0 +/- 0.9 UA(500)/mL), and those obtained in previously reported Monascus submerged fermentations using the same yield unit; on the other hand, citrinin accumulation was decreased to 26.2 +/- 1.9 mu g/L, which was significantly lower than that generated in the glucose control (44.3 +/- 2.2 mu g/L) and in those previously reported fermentations. Thus, corncob hydrolysate was proved to be an efficient alternative substrate for Monascus pigment production through submerged fermentation, which showed significant advantages over a conventional glucose substrate. (c) 2014 International Union of Biochemistry and Molecular Biology, Inc.
机译:传统上,红曲霉色素是通过使用米粉或葡萄糖作为培养底物发酵红曲霉而产生的。浸没式发酵可以产生稳定的红曲霉色素产量,并控制副产物柠檬素的积累,然后可以更容易地将其去除。为了降低红曲霉深层发酵的成本,研究了玉米芯水解产物作为替代底物的可行性。结果表明,与常规葡萄糖培养基相比,玉米芯水解产物培养基在不刺激柑桔素积累的情况下产生了相等的色素产量。此外,优化了玉米芯水解产物的培养基和培养条件,以提高色素产量并减少柠檬素合成。当红曲菌sp。在辛酸存在下于黑暗条件下培养,色素产量增加至25.8 +/- 0.8 UA(500)/ mL,高于在葡萄糖培养基中的色素产量(24.0 +/- 0.9 UA(500)/毫升),以及先前使用相同产量单位在红曲霉浸没式发酵中获得的那些;另一方面,柑桔素的积累减少到26.2 +/- 1.9μg / L,明显低于葡萄糖对照(44.3 +/- 2.2μg / L)和先前报道的发酵过程中产生的累积量。因此,事实证明,玉米芯水解产物是通过深层发酵生产红曲霉色素的有效替代底物,与常规的葡萄糖底物相比,其表现出显着的优势。 (c)2014国际生物化学与分子生物学联合会。

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