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The decarboxylation of the weak-acid preservative, sorbic acid, is encoded by linked genes in Aspergillus spp.

  • Andrew Plumridge
  • , Petter Melin
  • , Malcolm Stratford
  • , Michaela Novodvorska
  • , Lee Shunburne
  • , Paul S Dyer
  • , Johannes A Roubos
  • , Hildegard Menke
  • , Jacques Stark
  • , Hein Stam
  • , David B Archer

    Publication: Contribution to journalJournal articlepeer-review

    Abstract

    The ability to resist anti-microbial compounds is of key evolutionary benefit to microorganisms. Aspergillus has previously been shown to require the activity of a phenylacrylic acid decarboxylase (encoded by padA1) for the decarboxylation of the weak-acid preservative sorbic acid (2,4-hexadienoic acid) to 1,3-pentadiene. It is now shown that this decarboxylation process also requires the activity of a putative 4-hydroxybenzoic acid (3-octaprenyl-4-hydroxybenzoic acid) decarboxylase, encoded by a gene termed ohbA1, and a putative transcription factor, sorbic acid decarboxylase regulator, encoded by sdrA. The padA1, ohbA1 and sdrA genes are in close proximity to each other on chromosome 6 in the A. niger genome, and further bioinformatic analysis revealed conserved synteny at this locus in several Aspergillus species and other ascomycete fungi indicating clustering of metabolic function. This cluster is absent from the genomes of A. fumigatus and A. clavatus and, as a consequence, neither species is capable of decarboxylating sorbic acid. (C) 2010 Elsevier Inc. All rights reserved.
    Original languageEnglish
    Pages (from-to)683-692
    Number of pages10
    JournalFungal Genetics and Biology
    Volume47
    Issue number8
    DOIs
    Publication statusPublished - 2010

    Keywords

    • Aspergillus
    • Saccharomyces
    • Sorbic acid
    • Decarboxylation
    • 1,3-Pentadiene
    • Cinnamic acid
    • Styrene
    • Gene regulation
    • Conidia
    • Germination

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