RRC ID 15658
著者 Morita T, Konishi M, Fukuoka T, Imura T, Sakai H, Kitamoto D.
タイトル Efficient production of di- and tri-acylated mannosylerythritol lipids as glycolipid biosurfactants by Pseudozyma parantarctica JCM 11752(T).
ジャーナル J Oleo Sci
Abstract Mannosylerythritol lipids (MELs) are one of the most promising biosurfactants known, because of their multifunctionality and biocompatibility. In order to attain an efficient production of MELs, Pseudozyma parantarctica JCM 11752(T), which is a newly identified strain of the genus, was examined for the productivity of MELs at different culture conditions. The yeast strain showed significant cell growth and production of di-acylated MELs even at 36 degrees C. In contrast, on conventional high-level MEL producers including P. rugulosa, the MEL yield considerably decreased with an increase of the cultivation temperature at over 30 degrees C. On P. parantarctica, soybean oil and sodium nitrate were the best carbon and nitrogen sources, respectively. Under the optimal conditions on a shake-flask culture at 34 degrees C, the amount of di-acylated MELs reached over 100 g/L by intermittent feeding of only soybean oil. Interestingly, the yeast strain produced tri-acylated MELs as well as di-acylated ones when grown on the medium containing higher soybean oil concentrations than 8% (vol/vol). The production of tri-acylated MELs was significantly accelerated at between 34 and 36 degrees C. With 20 % (vol/vol) of soybean oil at 34 degrees C, the yield of tri-acylated MELs reached 22.7 g/L. The extracellular lipase activity considerably depended on the culture temperature, and became the maximum at 34 degrees C; this would bring the accelerated production of tri-acylated MELs. Accordingly, the present strain of P. parantarctica provided high efficiency in MEL production at elevated temperatures compared to conventional MEL producers, and would thus be highly advantageous for the commercial production of the promising biosurfactants.
巻・号 57(10)
ページ 557-65
公開日 2008-1-1
DOI 10.5650/jos.57.557
PII JST.JSTAGE/jos/57.557
PMID 18781056
MeSH Enzyme Activation Extracellular Space / enzymology Glycolipids / biosynthesis* Glycolipids / chemistry Lipase / chemistry Molecular Conformation Stereoisomerism Surface-Active Agents / chemistry Surface-Active Agents / metabolism* Time Factors Ustilaginales / chemistry Ustilaginales / metabolism*
IF 1.304
引用数 22
WOS 分野 FOOD SCIENCE & TECHNOLOGY CHEMISTRY, APPLIED
リソース情報
一般微生物 JCM 10323 JCM 11752