4.6 Article

LC-MS and Transcriptome Analysis of Lipopeptide Biosynthesis by Bacillus velezensis CMT-6 Responding to Dissolved Oxygen

期刊

MOLECULES
卷 27, 期 20, 页码 -

出版社

MDPI
DOI: 10.3390/molecules27206822

关键词

surfactin and iturin; dissolved oxygen; transcriptomic; LC-MS

资金

  1. Characteristic Innovation Project of University Colleges in Guangdong Province [2020KQNCX025]
  2. Zhanjiang Competitive Allocation Project of Science and Technology Development Special Fund [200915134541577]
  3. Innovative Team Program of High Education of Guangdong Province [2021KCXTD021]

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This study investigated the influence of dissolved oxygen (DO) on the synthesis of antimicrobial lipopeptides by Bacillus velezensis CMT-6. Higher DO levels were found to result in increased surfactin production, while iturin production was not affected. Transcriptome analysis revealed that genes involved in the oxidation-reduction process were enriched. Additionally, the expression levels of surfactin synthetase genes were positively correlated with DO levels.
Dissolved oxygen (DO) is an key factor for lipopeptide fermentation. To better understand the link between oxygen supply and lipopeptide productivity in Bacillus velezensis CMT-6, the mechanism of DO on the synthesis of antimicrobial lipopeptides by Bacillus velezensis CMT-6 was examined. The production of surfactin and iturin of CMT-6 was detected by liquid chromatography-mass spectrometer (LC-MS) under different DO conditions and transcriptome analysis was performed. At 100 and 200 rpm, the lipopeptides productions were 2753.62 mg/L and 3452.90 mg/L, respectively. There was no significant change in the yield of iturin but that of surfactin increased by 64.14%. Transcriptome analysis revealed that the enriched differential genes were concentrated in the GO term of oxidation-reduction process. The marked enrichment of the lipopeptides synthesis pathway, including microbial metabolism in diverse environments and carbon metabolism in the two-component system, were observed. More importantly, the expression levels of the four surfactin synthetase genes increased at higher DO, however, the iturin synthetase gene expression did not. Furthermore, modular surfactin synthetase was overexpressed (between 9- and 49-fold) at 200 rpm but not at 100 rpm, which is suggestive of efficient surfactin assembly resulting in surfactin overproduction. This study provides a theoretical basis for constructing engineering strains with high lipopeptide production to adapt to different DO.

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