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Optimal production of 7,10-dihydroxy-8(E)-hexadecenoic acid from palmitoleic acid by Pseudomonas aeruginosa PR3

Authors
Bae, Jae-HanSuh, Min-JungKim, Beom-SooHou, Ching T.Lee, In-JungKim, In-HwanKim, Hak-Ryul
Issue Date
30-9월-2010
Publisher
ELSEVIER SCIENCE BV
Citation
NEW BIOTECHNOLOGY, v.27, no.4, pp.352 - 357
Indexed
SCIE
SCOPUS
Journal Title
NEW BIOTECHNOLOGY
Volume
27
Number
4
Start Page
352
End Page
357
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/115652
DOI
10.1016/j.nbt.2009.11.005
ISSN
1871-6784
Abstract
The hydroxylation of unsaturated fatty acids by bacterial strains is one type of value-adding bioconversion processes. This process generates new hydroxy fatty acids (HFA) carrying special properties such as higher viscosity and reactivity compared with normal fatty acids. Among microbial strains tested for HFA production, Pseudomonas aeruginosa PR3 is well known to utilize various unsaturated fatty acids to produce mono-, di- and tri-hydroxy fatty acids. Previously we reported that strain PR3 could produce a novel value-added hydroxy fatty acid 7,10-dihydroxy-8(E)-hexadecenoic acid (DHD) from palmitoleic acid (Bae et al. (2007) Appl. Microbiol. Biotechnol. 75, 435-440). In this study, we focused on the development of the optimal nutritional and environmental conditions for DHD production from palmitoleic acid by PR3. Optimal carbon and nitrogen sources for DHD production were fructose and yeast extract, respectively. Optimal initial medium pH and incubation temperature were pH 8.0 and 30 degrees C and magnesium ion was essentially required for DHD production. Substrate concentration and time of substrate addition were also optimized. Under optimized conditions, maximal DHD production was 1600 mg/l representing 26.7% conversion yield.
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Kim, In Hwan
보건과학대학 (바이오시스템의과학부)
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