亚油酸作为群体感应分子在红曲霉与酿酒酵母共培养中的作用。

IF 2.2 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Yeast Pub Date : 2023-01-01 DOI:10.1002/yea.3831
Ruoyu Shi, Pengfei Gong, Yutong Liu, Qiaoqiao Luo, Wei Chen, Chengtao Wang
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引用次数: 2

摘要

当红曲霉与酿酒酵母共培养时,我们注意到红曲霉的次生代谢和形态发育发生了显著变化。在酵母菌共培养中,虽然pH值与对照没有差异,但发酵过程中红曲霉菌丝生物量增加,莫纳可林K产量显著提高(最高可达58.87%)。然而,色素产量没有增加。与酿酒酵母共培养可显著提高莫纳可林产K相关基因(mokA-mokI)的表达水平,尤其是mokE、mokF和mokG。亚油酸被认为在红曲霉的次生代谢和形态中起调节作用,被认为是影响因子。在共培养中检测到亚油酸,其含量在发酵过程中发生变化。添加亚油酸增加了莫纳可林K的产量,并引起了红曲霉孢子和菌丝的形态变化。外源亚油酸还显著上调了莫纳可林K生物合成相关的9个基因的转录水平(最高上调69.50%),与莫纳可林K产量的提高一致。综上所述,我们的研究结果显示了酿酒酵母对紫红色分枝杆菌的影响,并表明亚油酸是酵母与红曲霉共培养中特定的群体感应分子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Linoleic acid functions as a quorum-sensing molecule in Monascus purpureus-Saccharomyces cerevisiae co-culture.

When Monascus purpureus was co-cultured with Saccharomyces cerevisiae, we noted significant changes in the secondary metabolism and morphological development of Monascus. In yeast co-culture, although the pH was not different from that of a control, the Monascus mycelial biomass increased during fermentation, and the Monacolin K yield was significantly enhanced (up to 58.87% higher). However, pigment production did not increase. Co-culture with S. cerevisiae significantly increased the expression levels of genes related to Monacolin K production (mokA-mokI), especially mokE, mokF, and mokG. Linoleic acid, that has been implicated in playing a regulating role in the secondary metabolism and morphology of Monascus, was hypothesized to be the effector. Linoleic acid was detected in the co-culture, and its levels changed during fermentation. Addition of linoleic acid increased Monacolin K production and caused similar morphological changes in Monascus spores and mycelia. Exogenous linoleic acid also significantly upregulated the transcription levels of all nine genes involved in the biosynthesis of Monacolin K (up to 69.50% higher), consistent with the enhanced Monacolin K yield. Taken together, our results showed the effect of S. cerevisiae co-culture on M. purpureus and suggested linoleic acid as a specific quorum-sensing molecule in Saccharomyces-Monascus co-culture.

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来源期刊
Yeast
Yeast 生物-生化与分子生物学
CiteScore
5.30
自引率
3.80%
发文量
55
审稿时长
3 months
期刊介绍: Yeast publishes original articles and reviews on the most significant developments of research with unicellular fungi, including innovative methods of broad applicability. It is essential reading for those wishing to keep up to date with this rapidly moving field of yeast biology. Topics covered include: biochemistry and molecular biology; biodiversity and taxonomy; biotechnology; cell and developmental biology; ecology and evolution; genetics and genomics; metabolism and physiology; pathobiology; synthetic and systems biology; tools and resources
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