Production of 7, 10-dihydroxy-8(E)-octadecenoic acid from triolein via lipase induction by Pseudomonas aeruginosa PR3

  • In Ae Chang
  • , In Hwan Kim
  • , Sun Chul Kang
  • , Ching T. Hou
  • , Hak Ryul Kim*
  • *Corresponding author for this work

    Research output: Contribution to journalArticlepeer-review

    43 Citations (Scopus)

    Abstract

    Hydroxy fatty acids (HFA) have gained importance because of their special properties such as higher viscosity and reactivity compared with other non-hydroxy fatty acids. The bacterial isolate Pseudomonas aeruginosa (PR3) was reported to produce mono-, di-, and trihydroxy fatty acids from different unsaturated fatty acids. Of those, 7,10-dihydroxy-8(E)-octadecenoic acid (DOD) was produced with high yield from oleic acid by PR3. Up to now, the substrates used for microbial HFA production were free fatty acids. However, it is possible to utilize triacylglycerides, specifically triolein containing three oleic groups, as a substrate by microbial enzyme system involved in HFA production from oleic acid. In this study we used triolein as a substrate and firstly report that triolein could be efficiently utilized by PR3 to produce DOD. Triolein was first hydrolyzed into oleic acid by the triolein-induced lipase and then the released oleic acid was converted to DOD by PR3. Results from this study demonstrated that natural vegetable oils, without being intentionally hydrolyzed, could be used as efficient substrates for the microbial production of value-added hydroxy fatty acids.

    Original languageEnglish
    Pages (from-to)301-306
    Number of pages6
    JournalApplied Microbiology and Biotechnology
    Volume74
    Issue number2
    DOIs
    Publication statusPublished - 2007 Feb

    Bibliographical note

    Funding Information:
    Acknowledgement This work was supported by a Grant (Code # 20040201033013) from the Bio-Green 21 Program, Rural Development Administration, Republic of Korea.

    Keywords

    • Bioconversion
    • Dihydroxy fatty acid
    • Hydroxy fatty acid
    • Lipase
    • Pseudomonas aeruginosa PR3
    • Triolein

    ASJC Scopus subject areas

    • Biotechnology
    • Applied Microbiology and Biotechnology

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