Unraveling the role of intra-cellular metabolites in the lactic acid production by novel Bacillus amyloliquefaciens using sugarcane molasses as a substratum

Lactic acid is a versatile, multi-functional organic monomer in various industries, creating worldwide demand. High titer lactic acid production was achieved by novel J2V2AA through sugarcane molasses fermentation up to 178 mg mL . A metabolomics approach such as combined GC-MS and LC-MS was applied...

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Veröffentlicht in:Molecular omics 2024-01, Vol.20 (1), p.19-26
Hauptverfasser: Vignesh Kumar, Balasubramanian, Muthumari, Balakrishnan, Kavitha, Murugan, John Praveen Kumar, John Kennedy, Jothi Basu, Muthuramalingam
Format: Artikel
Sprache:eng
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Zusammenfassung:Lactic acid is a versatile, multi-functional organic monomer in various industries, creating worldwide demand. High titer lactic acid production was achieved by novel J2V2AA through sugarcane molasses fermentation up to 178 mg mL . A metabolomics approach such as combined GC-MS and LC-MS was applied to elucidate the involvement of key metabolites in lactic acid production. The results revealed the participation of 58 known intra-cellular metabolites at various pathways in lactic acid production. Twenty-eight highly up-regulated and down-regulated metabolites were analyzed, and a schematic diagram of a possible lactic acid production pathway was proposed. The produced lactic acid was analyzed through FTIR, UV-Spectrum, and HPLC analysis.
ISSN:2515-4184
2515-4184
DOI:10.1039/d3mo00141e