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Deficiency of β-xylosidase activity in Aspergillus luchuensis mut. kawachii IFO 4308.

Enkang ZhuKentaro HiramatsuTaiga InoueKazuki MoriKosuke TashiroKiyotaka FujitaTakefumi KarashimaHideharu TakashitaKayu OkutsuYumiko YoshizakiKazunori TakamineHisanori TamakiTaiki Futagami
Published in: Bioscience, biotechnology, and biochemistry (2024)
In this study, we investigated a deleterious mutation in the β-xylosidase gene, xylA (AkxylA), in Aspergillus luchuensis mut. kawachii IFO 4308 by constructing an AkxylA disruptant and complementation strains of AkxylA and xylA derived from A. luchuensis RIB2604 (AlxylA), which does not harbor the mutation in xylA. Only the AlxylA complementation strain exhibited significantly higher growth and substantial β-xylosidase activity in medium containing xylan, accompanied by an increase in XylA expression. This resulted in lower xylobiose and higher xylose concentrations in the mash of barley shochu. These findings suggest that the mutation in xylA affects xylose levels during the fermentation process. Because the mutation in xylA was identified not only in the genome of strain IFO 4308 but also the genomes of other industrial strains of A. luchuensis and A. luchuensis mut. kawachii, these findings enhance our understanding of the genetic factors that affect the fermentation characteristics.
Keyphrases
  • saccharomyces cerevisiae
  • escherichia coli
  • genome wide
  • poor prognosis
  • copy number
  • lactic acid
  • gene expression
  • dna methylation
  • risk assessment
  • long non coding rna
  • cell wall