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Glutamic acid promotes monacolin K production and monacolin K biosynthetic gene cluster expression in Monascus

机译:谷氨酸促进红曲菌中莫纳可林K的产生和莫纳可林K生物合成基因簇的表达。

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This study investigated the effects of glutamic acid on production of monacolin K and expression of the monacolin K biosynthetic gene cluster. When Monascus M1 was grown in glutamic medium instead of in the original medium, monacolin K production increased from 48.4 to 215.4?mg?l?1, monacolin K production increased by 3.5 times. Glutamic acid enhanced monacolin K production by upregulating the expression of mokB-mokI; on day 8, the expression level of mokA tended to decrease by Reverse Transcription-polymerase Chain Reaction. Our findings demonstrated that mokA was not a key gene responsible for the quantity of monacolin K production in the presence of glutamic acid. Observation of Monascus mycelium morphology using Scanning Electron Microscope showed glutamic acid significantly increased the content of Monascus mycelium, altered the permeability of Monascus mycelium, enhanced secretion of monacolin K from the cell, and reduced the monacolin K content in Monascus mycelium, thereby enhancing monacolin K production.
机译:这项研究调查了谷氨酸对莫纳可林K的生产和莫纳可林K生物合成基因簇的表达的影响。当红曲霉M1在谷氨酸培养基中而不是在原始培养基中生长时,莫纳可林K的产量从48.4增加到215.4mg?l?1,莫纳可林K的产量增加了3.5倍。谷氨酸通过上调mokB-mokI的表达来增强莫纳可林K的产生;在第8天,通过逆转录聚合酶链反应,mokA的表达水平趋于下降。我们的发现表明,在谷氨酸存在下,mokA不是导致莫纳可林K产生量的关键基因。用扫描电子显微镜观察红曲菌菌丝形态,发现谷氨酸显着增加了红曲菌菌丝的含量,改变了红曲菌菌丝的通透性,增加了细胞中monacolin K的分泌,降低了红曲菌菌丝中monacolin K的含量,从而增强了monacolinK。生产。

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