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Food Lipids: Chemistry, Nutrition, and Biotechnology

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193. B. A. Stelmach, A. Müller, P. Hennig, D. Laudert, L. Andert, <strong>and</strong> E. W. Weiler.<br />

Quantitation of the octadecanoid 12-oxophytodienoic acid, a signaling compound in<br />

plant mechanotransduction. Phytochemistry 47:539 (1998).<br />

194. S. Blechert, C. Bockelmann, M. Füsslein, T. Schrader, B. Stelmach, U. Niesel, <strong>and</strong><br />

E. W. Weiler. Structure–activity analyses reveal the existence of two separate groups<br />

of active octadecanoids in elicitation of the tendril-coiling response of Bryonia dioica<br />

Jacq. Planta 207:470 (1999).<br />

195. S. Blechert, W. Brodschelm, S. Holder, L. Kammerer, T. M. Kutchan, M. J. Mueller,<br />

Z. Xia, <strong>and</strong> M. H. Zenk. The octadecanoic pathway: Signal molecules for the regulation<br />

of secondary pathways. PNAS. 92:4099 (1995).<br />

196. R. Kramell, O. Miersch, R. Atzorn, B. Parthier, <strong>and</strong> C. Wasternack. Octadecanoidderived<br />

alteration of gene expression <strong>and</strong> the ‘‘oxylipin signature’’ in stressed barley<br />

leaves. Implications for different signaling pathways. Plant Physiol. 123:177 (2000).<br />

197. H. Weber, B. A. Vick, <strong>and</strong> E. E. Farmer. Dinor-oxophytodienoic acid: A new<br />

hexadecanoid signal in the jasmonate family. Proc. Natl. Acad. Sci. U.S.A. 94:10473<br />

(1997).<br />

198. T. Koch, T. Krumm, V. Jung, J. Engelberth, <strong>and</strong> W. Bol<strong>and</strong>. Differential induction of<br />

plant volatile biosynthesis in the lima bean by early <strong>and</strong> late intermediates of the<br />

octadecanoid-signaling pathway. Plant Physiol. 121:153 (1999).<br />

199. H. W. Gardner. Biological roles <strong>and</strong> biochemistry of the lipoxygenase pathway.<br />

HortScience 30:197 (1995).<br />

200. S. Avdiushko, K. P. C. Croft, G. C. Brown, D. M. Jackson, T. R. Hamilton-Kemp,<br />

<strong>and</strong> D. F. Hildebr<strong>and</strong>. Effect of volatile methyl jasmonate on the oxylipin pathway in<br />

tobacco, cucumber <strong>and</strong> Arabidopsis. Plant Physiol. 109:1227 (1995).<br />

201. H. Zhuang, D. F. Hildebr<strong>and</strong>, <strong>and</strong> M. M. Barth. Evidence that methyl jasmonate<br />

induces senescence of broccoli buds through stimulation of lipid peroxidation. Presentation<br />

at the National Plant Lipid Cooperative Meetings, South Lake Tahoe, CA,<br />

1995.<br />

202. H. Zhuang, D. F. Hildebr<strong>and</strong>, <strong>and</strong> M. M. Barth. Methyl jasmonate influence on quality,<br />

physiology <strong>and</strong> volatile formation in broccoli florets. Presentation at the IFT Annual<br />

Meeting, New Orleans, 1996.<br />

203. T. Matoba, A. Sakurai, N. Taninoki, T. Saitoh, F. Kariya, M. Kuwahata, N. Yukawa,<br />

S. Fujino, <strong>and</strong> K. Hasfgawa. n-Hexanol formation from n-hexanal by enzyme action<br />

in soybean extracts. J. <strong>Food</strong> Sci. 54:1607 (1989).<br />

204. D. F. Hildebr<strong>and</strong>, H. Zhuang, T. R. Hamilton-Kemp, <strong>and</strong> R. A. Anderson. C 6-aldehydes<br />

in plant leaves <strong>and</strong> preliminary information on the in vivo control of their<br />

formation. In: H<strong>and</strong>book of Plant <strong>and</strong> Crop Physiology (M. Pessarakli, ed.). Dekker,<br />

New York, 1995, p. 313.<br />

205. H. W. Gardner <strong>and</strong> M. Hamberg. Oxygenation of 3(Z)-nonenal to (2E)-4-hydroxy-2nonenal<br />

in the broad bean (Vicia faba L.). J. Biol. Chem. 268:6971 (1993).<br />

206. K. A. Hudak <strong>and</strong> J. E. Thompson. Subcellular localization of secondary lipid metabolites<br />

including fragrance volatiles in carnation petals. Plant Physiol. 114:705 (1997).<br />

207. D. D. Rowan, J. M. Allen, S. Fielder, <strong>and</strong> M. B. Hunt. Biosynthesis of straight-chain<br />

ester volatiles in Red Delicious <strong>and</strong> Granny Smith apples using deuterium-labeled<br />

precursor. J. Agric. <strong>Food</strong> Chem. 47:2553 (1999).<br />

208. D. F. Hildebr<strong>and</strong>, T. R. Hamilton-Kemp, J. H. Loughrin, K. Ali, <strong>and</strong> R. A. Andersen.<br />

Lipoxygenase 3 reduces hexanal production from soybean seed homogenates. J. Agric.<br />

<strong>Food</strong> Chem. 39:1357 (1990).<br />

209. H. Zhuang, R. A. Andersen, T. R. Hamilton-Kemp, <strong>and</strong> D. F. Hildebr<strong>and</strong>. The impact<br />

of alteration of polyunsaturated fatty acid levels on C 6-aldehyde formation of Arabidopsis<br />

thaliana leaves. Plant Physiol. 111:805 (1996).<br />

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

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