09.12.2012 Views

Food Lipids: Chemistry, Nutrition, and Biotechnology

Food Lipids: Chemistry, Nutrition, and Biotechnology

Food Lipids: Chemistry, Nutrition, and Biotechnology

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

76. A. C. Lanser. Conversion of oleic acid to 10-ketostearic acid by a Staphylococcus<br />

species. J. Am. Oil Chem. Soc. 70:543 (1993).<br />

77. A. C. Lanser <strong>and</strong> L. K. Manthey. Bioconversion of oleic acid by Bacillus strain NRRL<br />

BD-447: Identification of 7-hydroxy-17-oxo-9-cis-octadecenoic acid. J. Am. Oil Chem.<br />

Soc. 76:1023 (1999).<br />

78. J. Bastida, C. de Andrés, J. Culleré, M. Busquets, <strong>and</strong> A. Manresa. Biotransformation<br />

of oleic acid into 10-hydroxy-8-E-octadecenoic acid by Pseudomonas sp. 42A2. Biotechnol.<br />

Lett. 21:1031 (1999).<br />

79. T. M. Kuo, L. K. Manthey, <strong>and</strong> C. T. Hou. Fatty acid bioconversions by Pseudomonas<br />

aeruginosa PR3. J. Am. Oil Chem. Soc. 75:875 (1998).<br />

80. P. Venter, J. L. F. Kock, G. Sravan Kumar, A. Botha, D. J. Coetzee, P. J. Botes, R. K.<br />

Bhatt, J. R. Falck, T. Schewe, <strong>and</strong> S. Nigam. Production of 3-R-hydroxy-polyenoic<br />

fatty acids by the yeast Dipodascopis uninucleata. <strong>Lipids</strong> 32:1277 (1997).<br />

81. S. R. Fox, A. Akpinar, A. A. Prabhune, J. Friend, <strong>and</strong> C. Ratledge. The biosynthesis<br />

of oxylipins of linoleic acid by the sewage fungus Leptomitus lacteus, including the<br />

identification of 8R-hydroxy-9Z,12Z-octadecadienoic acid. <strong>Lipids</strong> 35:23 (2000).<br />

82. H. Kim, T. M. Kuo, <strong>and</strong> C. T. Hou. Production of 10,12-dihydroxy-8(E)-octadecenoic<br />

acid, an intermediate in the conversion of ricinoleic acid to 7,10,12-trihydroxy-8(E)octadecenoic<br />

acid by Pseudomonas aeruginosa PR3. J. Ind. Microbiol. 24:167 (2000).<br />

83. Y. Kamisaka, T. Yokochi, T. Nakahara, <strong>and</strong> O. Suzuki. Incorporation of linoleic acid<br />

<strong>and</strong> its conversion to �-linolenic acid in fungi. <strong>Lipids</strong> 25:54 (1990).<br />

84. S. Shimizu, H. Kawashima, K. Akimoto, Y. Shinmen, <strong>and</strong> H. Yamada. Microbial conversion<br />

of an oil containing �-linolenic acid to an oil containing eicosapentaenoic acid.<br />

J. Am. Oil Chem. Soc. 66:342 (1989).<br />

85. Z.-H. Yi <strong>and</strong> H.-J. Rehm. Identification <strong>and</strong> production of �9-cis-1,18-octadecenedioic<br />

acid by C<strong>and</strong>ida tropicalis. Appl. Microbiol. Biotechnol. 30:327 (1989).<br />

86. Z.-H. Yi <strong>and</strong> H.-J. Rehm. Bioconversion of elaidic acid to �9-trans-1,18-octadecenedioic<br />

acid by C<strong>and</strong>ida tropicalis. Appl. Microbiol. Biotechnol. 29:305 (1988).<br />

87. D. Fabritius, H.-J. Schäfer, <strong>and</strong> A. Steinbüchel. Biotransformation of linoleic acid with<br />

the C<strong>and</strong>ida tropicalis M25 mutant. Appl. Microbiol. Biotechnol. 48:83 (1997).<br />

88. K. D. Green, M. K. Turner, <strong>and</strong> J. M. Woodley. C<strong>and</strong>ida cloacae oxidation of longchain<br />

fatty acids to dioic acids. Enzyme Microb. Technol. 27:205 (2000).<br />

89. C. Creuly, C. Larroche, <strong>and</strong> J.-B. Gros. Bioconversion of fatty acids into methyl ketones<br />

by spores of Penicillium roquefortii in a water-organic solvent, two-phase system.<br />

Enzyme Microb. Technol. 14:669 (1992).<br />

90. T. Yagi, M. Kawaguchi, T. Hatano, F. Fukui, <strong>and</strong> S. Fukui. Production of ketoalkanes<br />

from fatty acid esters by a fungus, Trichoderma. J. Ferment. Bioeng. 68:188 (1989).<br />

91. T. Yagi, M. Kawaguchi, T. Hatano, A. Hatano, T. Nakanishi, F. Fukui, <strong>and</strong> S. Fukui.<br />

Formation of n-alkane-2-ones <strong>and</strong> n-alkane-2-ols from triglycerides by a black yeast,<br />

Aureobasidium. J. Ferment. Bioeng. 71:93 (1991).<br />

92. T. Yagi, A. Hatano, T. Hatano, F. Fukui, <strong>and</strong> S. Fukui. Formation of monohydroxy-nnonane-2-ones<br />

from tricaprin by Fusarium avenaceum f. sp. fabae IFO 7158. J. Ferment.<br />

Bioeng. 71:176 (1991).<br />

93. U. Antczak, J. Góra, T. Antczak, <strong>and</strong> E. Galas. Enzymatic lactonization of 15-hydroxypentadecanoic<br />

<strong>and</strong> 16-hydroxyhexadecanoic acids to macrocyclic lactones. Enzyme<br />

Microb. Technol. 13:589 (1991).<br />

94. S. Gocho, N. Tabogami, M. Inagaki, C. Kawabata, <strong>and</strong> T. Komai. Biotransformation<br />

of oleic acid to optically active �-dodecalactone. Biosci. Biotech. Biochem. 59:1571<br />

(1995).<br />

95. K. D. Mukherjee. Lipase-catalyzed reactions for modification of fats <strong>and</strong> other lipids.<br />

Biocatalysis 3:277 (1990).<br />

Copyright 2002 by Marcel Dekker, Inc. All Rights Reserved.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!