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在红曲菌 M7 中参与色素生物合成的 MpigE 基因。

MpigE, a gene involved in pigment biosynthesis in Monascus ruber M7.

机构信息

College of Food Science and Technology, Huazhong Agricultural University, Wuhan, 430070, Hubei Province, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2014 Jan;98(1):285-96. doi: 10.1007/s00253-013-5289-8. Epub 2013 Oct 27.

Abstract

Monascus pigments (MPs) have been used as food colorants for several centuries in Asian countries. However, MP biosynthesis pathway is still a controversy, and only few related genes have been reported. In this study, the function of MpigE, a gene involved in MP biosynthesis in Monascus ruber M7, was analyzed. The results revealed that the disruption, complementation, and overexpression of MpigE in M. ruber M7 had very little effects on the growth and phenotypes except MPs. The MpigE deletion strain (∆MpigE) just yielded four kinds of yellow MPs and very little red pigments, while the wild-type strain M. ruber M7 produced a MP complex mixture including three (orange, red, and yellow) categories of MP compounds. Two of the four yellow MPs produced by ∆MpigE were the same as those yielded by M. ruber M7. The MpigE complementation strain (∆MpigE::MpigE) recovered the ability to generate orange and red MPs as M. ruber M7. The MP types produced by the MpigE overexpression strain (M7::PtrpC-MpigE) were consistent with those of M. ruber M7, while the color value was about 1.3-fold as that of M. ruber M7 (3,129 U/g red kojic). For the production of citrinin, the disruption of MpigE almost had no influence on the strain, whereas the overexpression of MpigE made citrinin decrease drastically in YES fermentation. This work will make a contribution to the study on the biosynthesis pathway of MPs in M. ruber.

摘要

红曲菌色素(MPs)在亚洲国家已经作为食用色素使用了几个世纪。然而,MP 生物合成途径仍然存在争议,只有少数相关基因被报道。在这项研究中,分析了参与红曲菌 M7 中 MP 生物合成的基因 MpigE 的功能。结果表明,M. ruber M7 中 MpigE 的敲除、互补和过表达对生长和表型几乎没有影响,除了 MPs。MpigE 缺失菌株(∆MpigE)仅产生四种黄色 MPs 和很少的红色色素,而野生型菌株 M. ruber M7 产生包括三种(橙色、红色和黄色)类别的 MPs 化合物的 MP 复杂混合物。∆MpigE 产生的四种黄色 MPs 中有两种与 M. ruber M7 产生的相同。MpigE 互补菌株(∆MpigE::MpigE)恢复了产生橙色和红色 MPs 的能力,与 M. ruber M7 相同。MpigE 过表达菌株(M7::PtrpC-MpigE)产生的 MPs 类型与 M. ruber M7 一致,而颜色值约为 M. ruber M7 的 1.3 倍(3,129 U/g 红色曲酸)。对于桔霉素的产生,MpigE 的敲除几乎对菌株没有影响,而过表达 MpigE 使 YES 发酵中的桔霉素急剧减少。这项工作将有助于研究红曲菌中 MPs 的生物合成途径。

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