Assessment of the contribution of cocoa-derived strains of Acetobacter ghanensis and Acetobacter senegalensis to the cocoa bean fermentation process through a genomic approach

Food Microbiol. 2016 Sep:58:68-78. doi: 10.1016/j.fm.2016.03.013. Epub 2016 Mar 29.

Abstract

Acetobacter ghanensis LMG 23848(T) and Acetobacter senegalensis 108B are acetic acid bacteria that originate from a spontaneous cocoa bean heap fermentation process and that have been characterised as strains with interesting functionalities through metabolic and kinetic studies. As there is currently little genetic information available for these species, whole-genome sequencing of A. ghanensis LMG 23848(T) and A. senegalensis 108B and subsequent data analysis was performed. This approach not only revealed characteristics such as the metabolic potential and genomic architecture, but also allowed to indicate the genetic adaptations related to the cocoa bean fermentation process. Indeed, evidence was found that both species possessed the genetic ability to be involved in citrate assimilation and displayed adaptations in their respiratory chain that might improve their competitiveness during the cocoa bean fermentation process. In contrast, other properties such as the dependence on glycerol or mannitol and lactate as energy sources or a less efficient acid stress response may explain their low competitiveness. The presence of a gene coding for a proton-translocating transhydrogenase in A. ghanensis LMG 23848(T) and the genes involved in two aromatic compound degradation pathways in A. senegalensis 108B indicate that these strains have an extended functionality compared to Acetobacter species isolated from other ecosystems.

Keywords: Acetobacter; Cocoa bean fermentation; Whole-genome sequence.

MeSH terms

  • Acetic Acid / metabolism
  • Acetobacter / enzymology
  • Acetobacter / genetics*
  • Acetobacter / physiology
  • Bacterial Proteins / genetics
  • Bacterial Proteins / metabolism
  • Cacao / metabolism
  • Cacao / microbiology*
  • Fermentation
  • Food Microbiology*
  • Genome, Bacterial / genetics*
  • Genomics*
  • Lactic Acid / metabolism
  • NADP Transhydrogenases / genetics
  • NADP Transhydrogenases / metabolism
  • Phylogeny
  • Seeds / enzymology
  • Seeds / metabolism
  • Seeds / microbiology
  • Seeds / physiology
  • Sequence Analysis, DNA

Substances

  • Bacterial Proteins
  • Lactic Acid
  • NADP Transhydrogenases
  • Acetic Acid