Literature DB >> 34716970

Effect of metal ions on lipopeptide secretion from Bacillus subtilis strain FJAT-4: Negative regulation by Ca2.

Meichun Chen1, Meixia Zheng1, Yanping Chen1, Rongfeng Xiao1, Xuefang Zheng1, Bo Liu1, Jieping Wang1, Yujing Zhu1.   

Abstract

AIMS: This study aimed to investigate the effect of metal ions on lipopeptide production by Bacillus subtilis strain FJAT-4 and the mechanism of negative regulation by Ca2+ . METHODS AND
RESULTS: The quantitative measurement of lipopeptides in response to K+ , Na+ , Mg2+ and Ca2+ addition was carried out by LC-MS. The contents of fengycin and surfactin varied within the range of 116.24-129.80 mg/L and 34.03-63.11 mg/L in the culture media containing K+ , Na+ and Mg2+ , while the levels were 0.86 and 0.63 mg/L in the media containing Ca2+ . Ca2+ at a high concentration (45 mM) did not adversely affect the growth of strain FJAT-4, but caused significant downregulation of lipopeptide synthesis-related gene expression, corresponding to a decrease in lipopeptide production. This inhibition by Ca2+ was further investigated by proteomic analysis. In total, 112 proteins were upregulated and 524 proteins were downregulated in the presence of additional Ca2+ (45 mM). Among these differentially expressed proteins (DEPs), 28 were related to phosphotransferase activity, and 42 were related to kinase activity. The proteomics results suggested that altered levels of three two-component signal-transduction systems (ResD/ResE, PhoP/PhoR and DegU/DegS) might be involved in the control of expression of the fen and srfA operons of FJAT-4 under high calcium stress.
CONCLUSIONS: The Ca2+ at the high concentration (45 mM) triggers a decrease in lipopeptide production, which might be attributed to the regulation of three two-component signal-transduction systems ResD/ResE, PhoP/PhoR and DegU/DegS. SIGNIFICANCE AND IMPACT OF THE STUDY: The regulatory effect of calcium on the expression of genes encoding lipopeptide synthetases can be applied to optimize the production of lipopeptides.
© 2021 The Society for Applied Microbiology.

Entities:  

Keywords:  Bacillus strains; Ca2+-regulation; antifungal activity; lipopeptide; two-component signal-transduction systems

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Year:  2021        PMID: 34716970     DOI: 10.1111/jam.15347

Source DB:  PubMed          Journal:  J Appl Microbiol        ISSN: 1364-5072            Impact factor:   3.772


  1 in total

1.  Transcriptome Analysis of Bacillus amyloliquefaciens Reveals Fructose Addition Effects on Fengycin Synthesis.

Authors:  Hedong Lu; Hai Xu; Panping Yang; Muhammad Bilal; Shaohui Zhu; Mengyuan Zhong; Li Zhao; Chengyuan Gu; Shuai Liu; Yuping Zhao; Chengxin Geng
Journal:  Genes (Basel)       Date:  2022-05-31       Impact factor: 4.141

  1 in total

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