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.

74. L. J. Morris. The mechanism of ricinoleic acid biosynthesis in Ricinus communis<br />

seeds. Biochem. Biophys. Res. Commun. 29:311 (1967).<br />

75. T. Galliard <strong>and</strong> P. K. Stumpf. Fat metabolism in higher plants: XXX. Enzymatic<br />

synthesis of ricinoleic acid by a microsomal preparation from developing Ricinus<br />

communis seeds. J. Biol. Chem. 241:5806 (1996).<br />

76. D. Howling, L. J. Morris, M. I. Gurr, <strong>and</strong> A. T. James. The specificity of fatty acid<br />

desaturases <strong>and</strong> hydroxylases. The dehydrogenation <strong>and</strong> hydroxylation of monoenoic<br />

acids. Biochim. Biophys. Acta 260:10 (1972).<br />

77. M. Bafor, M. A. Smith, L. Jonsson, K. Stobart, <strong>and</strong> S. Stymme. Ricinoleic acid biosynthesis<br />

<strong>and</strong> triacylglycerol assembly in microsomal preparations from developing<br />

castor-bean (Ricinus communis) endosperm. Biochem. J. 280:507 (1991).<br />

78. F. J. van de Loo, P. Broun, S. Turner, <strong>and</strong> C. Somerville. An oleate 12-hydroxylase<br />

from Ricinus communis L. is a fatty acyl desaturase homolog. Proc. Natl. Acad. Sci.<br />

U.S.A. 92:6743 (1995).<br />

79. M. Hamberg. Pathways in the biosynthesis of oxylipins in plants. J. Lipid Med. 6:<br />

375 (1993).<br />

80. E. Andre <strong>and</strong> K. W. Hou. The presence of a lipoid oxidase in soybean Glycine soya<br />

Lieb. C. R. Hebd. Seances Acad. Sci. 194:645 (1932).<br />

81. N. A. M. Eskin, S. Grossman, <strong>and</strong> A. Pinsky. Biochemistry of lipoxygenase in relation<br />

to food quality. CRC Crit. Rev. <strong>Food</strong> Sci. Nutr. 9:1 (1977).<br />

82. H. W. Gardner. Oxidation of lipids in biological tissue <strong>and</strong> its significance. In: Chemical<br />

Changes in <strong>Food</strong> During Processing (T. Richardson <strong>and</strong> J. Finley, eds.). AVI<br />

Publishing, Greenwich, CT, 1985, p.177.<br />

83. H. W. Gardner. How the lipoxygenase pathway affects the organoleptic properties of<br />

fresh fruit <strong>and</strong> vegetables. In: Flavor <strong>Chemistry</strong> of Lipid <strong>Food</strong>s (D. B. Min <strong>and</strong> T. H.<br />

Smouse, eds.). American Oil Chemists Society, Champaign, IL, 1989, p. 98.<br />

84. D. S. Robinson, Z. Wu, C. Domoney, <strong>and</strong> R. Casey. Lipoxygenases <strong>and</strong> quality of<br />

foods. <strong>Food</strong> Chem. 54:33 (1995).<br />

85. A. E. Watada, K. Abe, <strong>and</strong> N. Yamauchi. Physiological activities of partially processed<br />

fruits <strong>and</strong> vegetables. <strong>Food</strong> Technol. 5:116 (1990).<br />

86. H. W. Gardner. Recent investigations into the lipoxygenase pathway of plants.<br />

Biochim. Biophys. Acta 1084:221 (1991).<br />

87. K. P. C. Croft, F. Juttner, <strong>and</strong> J. Slusarenko. Volatile products of the lipoxygenase<br />

pathway evolved from Phaseolus vulgaris (L.) leaves inoculated with Pseudomonas<br />

syringae pv. phaseolicola. Plant Physiol. 101:13 (1993).<br />

88. T. M. Lee, H. S. Lur, Y. H. Lin, <strong>and</strong> C. Chu. Physiological <strong>and</strong> biochemical changes<br />

related to methyl jasmonite-induced chilling tolerance of rice (Oryza sativa L.) seedlings.<br />

Plant Cell Environ. 19:65 (1996).<br />

89. S. Meir, S. Philosoph-Hadas, S. Lurie, S. Droby, M. Akerman, G. Zanlerman, B.<br />

Shapiro, E. Cohen, <strong>and</strong> Y. Fuchs. Reduction of chilling injury in stored avocado,<br />

grapefruit, <strong>and</strong> bell pepper by methyl jasmonate. Can. J. Bot. 74:870 (1996).<br />

90. C. Y. Wang. Reduction of chilling injury by methyl jasmonate. Acta Hortic. 368:901<br />

(1994).<br />

91. C. Y. Wang <strong>and</strong> J. G. Buta. Methyl jasmonate reduces chilling injury in Cucurbita<br />

pepo through its regulation of abscisic acid <strong>and</strong> polyamine levels. Environ. Exp. Bot.<br />

34:427 (1994).<br />

92. D. F. Hildebr<strong>and</strong>, T. R. Hamilton-Kemp, C. S. Legg, <strong>and</strong> G. Bookjans. Plant lipoxygenases:<br />

Occurrence, properties <strong>and</strong> possible functions. Curr. Top Plant Biochem.<br />

Physiol. 7:201 (1988).<br />

93. A. Hatanaka. The biogeneration of green odor by green leaves. Phytochemistry 34:<br />

1201 (1993).<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!