Elimination of carbon catabolite repression through gene-modifying a solventogenic Clostridium sp. strain WK to enhance butanol production from the galactose-rich red seaweed

Sci Total Environ. 2023 Feb 25:861:160559. doi: 10.1016/j.scitotenv.2022.160559. Epub 2022 Nov 28.

Abstract

With the determination of the Leloir pathway in a solventogenic wild-type strain WK through the transcriptional analysis, two pivotal genes (galK and galT) were systematically co-expressed to demonstrate a significantly enhanced galactose utilization for butanol production with the elimination of carbon catabolite repression (CCR). The gene-modified strain WK-Gal-4 could effectively co-utilize galactose and glucose by directly using an ultrasonication-assisted butyric acid-pretreated Gelidium amansii hydrolysate (BAU) as the substrate, exhibiting the optimal sugar consumption and butanol production from BAU of 20.31 g/L and 7.8 g/L with an increment by 62.35 % and 61.49 % over that by strain WK, respectively. This work for the first time develops a feasible approach to utilizing red algal biomass for butanol fermentation through exploring the metabolic regulation of carbohydrate catabolism, also offering a novel route to develop the future biorefinery using the cost-effective and sustainable marine feedstocks.

Keywords: Carbon catabolite repression; Galactose uptake; Leloir pathway; Solventogenic clostridia; Transcriptional analysis.

MeSH terms

  • 1-Butanol / metabolism
  • Butanols / metabolism
  • Catabolite Repression*
  • Clostridium
  • Fermentation
  • Galactose
  • Glucose / metabolism
  • Seaweed* / metabolism

Substances

  • Butanols
  • Galactose
  • 1-Butanol
  • Glucose