首页> 外文期刊>European food research and technology =: Zeitschrift fur Lebensmittel-Untersuchung und -Forschung. A >Effects of glycerol on pigments and monacolin K production by the high-monacolin K-producing but citrinin-free strain, Monascus pilosus MS-1
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Effects of glycerol on pigments and monacolin K production by the high-monacolin K-producing but citrinin-free strain, Monascus pilosus MS-1

机译:甘油对高产产生莫纳可林钾但无citrinin菌株的红曲霉MS-1色素和莫纳可林K产生的影响

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Glycerol is the principal by-product of bio-diesel production which can be utilized by fungi for beneficial metabolites production. In this study, effects of glycerol on main metabolites production and gene expression of pigment and monacolin K (MK) synthesis-related genes of Monascus pilosus MS-1, a high-MK-producing but citrinin-free strain, were investigated. The results indicated that addition of glycerol could increase the dry cell weight but decrease the fermentation broth pH value. Pigments production could be enhanced significantly after adding 2 g/L glycerol and the maximum pigments yield (13.78 U/mL) of fermentation broth was obtained when the glycerol content was up to 40 g/L (p < 0.05). Effect of glycerol on MK production was different from that of Monascus pigment. MK yield of fermentation broth was decreased significantly when the glycerol addition was up to 10 g/L while that of mycelia could be improved as glycerol addition increased (p < 0.05). Results of real-time PCR revealed that when the glycerol additions were up to 40 and 300 g/L, respectively, the gene expressions of regulatory gene (ctnR) for pigment synthesis were 17.31- and 22.22-folds of ctnR in the control; the gene expressions of structural gene (PKS5) for pigment synthesis were 33.27- and 60.07-folds of PKS5 in the control; respectively. However, the gene expressions of regulatory (mkH) and structural (mkA) genes of MS-1 for MK production were decreased after adding glycerol. All this suggesting that glycerol can be used for improving production of citrinin-free Monascus pigments and MK.
机译:甘油是生物柴油生产的主要副产品,真菌可将其用于有益代谢产物的生产。在这项研究中,研究了甘油对红曲霉MS-1的主要代谢产物产生以及色素和莫纳可林K(MK)合成相关基因的表达的影响。结果表明,添加甘油可以增加干细胞重量,但降低发酵液的pH值。加入2 g / L甘油后,颜料的产量可显着提高,当甘油含量高达40 g / L时,发酵液的色素最大产量(13.78 U / mL)(p <0.05)。甘油对MK产生的影响与红曲色素的影响不同。当甘油添加量高达10 g / L时,发酵液的MK产量显着降低,而随着甘油添加量的增加,菌丝体的MK产量会提高(p <0.05)。实时荧光定量PCR结果表明,当甘油添加量分别达到40 g / L和300 g / L时,用于色素合成的调节基因(ctnR)的基因表达在对照组中为ctnR的17.31-和22.22-倍。在对照中,用于色素合成的结构基因(PKS5)的基因表达为PKS5的33.27-和60.07-倍。分别。但是,添加甘油后,MS-1的调节性基因(mkH)和结构性基因(mkA)的基因表达下降。所有这些表明,甘油可以用于改善无桔霉素的红曲霉色素和MK的生产。

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