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首页> 外文期刊>Bioprocess Engineering: Bioreactors Upstream and Downstream Processes Measurement and Control >Optimization of monascus red pigment fermentation by regulating chitinase activity level in fermentor
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Optimization of monascus red pigment fermentation by regulating chitinase activity level in fermentor

机译:调节发酵罐中几丁质酶活性水平优化红曲红素发酵

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摘要

Enhancement of monascus pigment production in a co-culture of Monascus sp. J101 with Saccharomyces cerevisiae was accomplished using chitinase in the feeding of a S. cerevisiae culture filtrate. Batch fermentations were carried out at constant chitinase activity levels of 0.8 U and 0.5 U after 24 h of cultivation. Monascus red pigment concentrations obtained at the end of fermentation were 182.4 OD units and 147.3 OD units, respectively, for chitinase activity levels of 0.8 U and 0.5 U. The cell mass was higher at 0.8 U than at 0.5 U, whereas pigment production per unit cell mass was higher at 0.5 U than at 0.8 U. Kinetic equations involving cell growth rate, cell activity and chitinase activity levels were analyzed. Cell activity was expressed as a function of mean cell age. The optimum time for reduction of the chitinase activity level from 0.8 U to 0.5 U for maximization of monascus pigment production was numerically estimated to be 60 h. Based o this result, a batch fermentation was performed where the chitinase activity level was maintained at 0.8 U from 24 h to 60 h, then the level was lowered to 0.5 U after 60 h. This scheme resulted in a monascus pigment production of 198.3 OD units.
机译:在红曲菌共培养中提高红曲色素的产量。用几丁质酶在酿酒酵母培养滤液的进料中完成了带有酿酒酵母的J101。培养24小时后,以恒定的几丁质酶活性水平0.8U和0.5U进行分批发酵。发酵结束时获得的红曲红素红色素浓度分别为182.4 OD单位和147.3 OD单位,几丁质酶活性水平为0.8 U和0.5U。细胞量在0.8 U时比在0.5 U时高,而每单位色素产量0.5 U时的细胞质量高于0.8 U时的细胞质量。分析了涉及细胞生长速率,细胞活性和几丁质酶活性水平的动力学方程。细胞活性表示为平均细胞年龄的函数。为了最大程度地增加红曲霉色素的产生,将几丁质酶活性水平从0.8 U降低至0.5 U的最佳时间估计为60 h。基于此结果,进行了分批发酵,其中几丁质酶活性水平从24小时到60小时保持在0.8 U,然后在60小时后降低到0.5U。该方案产生了198.3OD单位的红曲色素。

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