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Linoleic acid functions as a quorum sensing molecule in Monascus purpureus-Saccharomyces cerevisiae co-culture.

Ruoyu ShiPengfei GongYutong LiuQiaoqiao LuoWei ChenChengtao Wang
Published in: Yeast (Chichester, England) (2022)
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 Monascus purpureus and suggested linoleic acid as a specific quorum sensing molecule in Saccharomyces-Monascus co-culture. This article is protected by copyright. All rights reserved.
Keyphrases
  • saccharomyces cerevisiae
  • poor prognosis
  • dna methylation
  • wastewater treatment
  • binding protein