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[37]    JIANG ZD, GERWICK WH. Novel oxylipins from the temperate red alga Polyneura latissima: Evidence for an arachidonate 9(S)-lipoxygenase. Lipids 1997; 32: 231—235.

[38]    KEMP TR, KANAVEL DE, STOLTZ LP. Cis-6-nonenal: a flavour component of muskmelon fruit. Phytochem 1972; 11: 3321-3322.

[39]    KIM E-S, CHOI E, KIM Y, CHO K, LEE A, SHIM J, RAKWAL R, AGRAWAL GK, HAN O. Dual positional specificity and expression of non-traditional lipoxygenase induced by wounding and methyl jasmonate in maize seedlings. Plant Mol Biol 2003; 52: 1203-1213.

[40]    KOLOMIETS M, HANNAPEL D, CHEN H, TYMESON M, GLADON R. Lipoxygenase is involved in the control of potato tuber development. Plant Celi 2001; 13: 613-626.

[41JKUHN H,WIESNER R, RATHMANN J, SCHEWE T. Formation of ketodienoic fatty acids by the pure pea lipoxygenase-l. Eicosanoids 1991; 4: 9—14.

[42]    MACCARRONE M, MELINO G, FINAZZI-AGRÓ A. Lipoxygenases and their involvement in program-med celi death. Celi Death Differ 2001; 8: 776-784.

[43]    MACCARRONE M, VAN ZADELHOFF G, VELDINK G, VLIEGENTHART JFG, FINAZZI-AGRÓ A. Early activation of lipoxygenase in lentil (Lens culinaris) root protoplasts by oxidative stress induces programmed celi death. Eur J Biochem 2000; 267: 5078-5084.

[44]    MATOBA T, H1DAKA H, NARITA H, KITAMURA K, KAIZUMA N, KITO M. Lipoxygenase-2 izoenzyme is responsible for generation of hexenal in soybean homogenate. J Agric Food Chem 1985; 33: 852-855.

[45]    MATSUI K, NISHIOKA M, IKEYOSHI M, MATSUMURA Y, MORI T, KAJIWARA T. Cucumber root lipoxygenase can act on acyl groups in phosphatidylcholine. Biochim Biophys Acta 1998; 1390: 8—20.

[46]    MENE-SAFFRANE L, ESQUERRE-TUGAYE MT, FOURNIER J. Constitutive expression of an induci-ble lipoxygenase in transgenic tobacco decreases susceptibility to Phytophthora parasitica var. nicotia-nae. Mol Breed 2003; 12: 271-282.

[47]    MINOR W, STECZKO J, STEC B, OTWINOWSKI Z, BOLIN JT, WALTER R, AXELROD B. Crystal Structure of soybean lipoxygenase L-l at 1.4 A resolution. Biochem 1996; 35: 10687-10701.

[48]    MOGHADDAM MF, GRANT DF, CHEEK JM, GREENE JF, WILLIAMSON KC, HAMMOCK BD. Bioactivation of leukotoxins to their toxic diols by epoxide hydrolase. Nat Med 1997; 3: 562-566.

[49]    MONTILLET JL, AGNEL JP, PONCHE, M, VAILLEAU F, ROBY D, TRIANTAPHYLIDES C. Lipoxy-genase-mediated production of fatty acid hydroperoxides is a specific signature of the hypersensitive reaction in plants. Plant Physiol Biochem 2002; 40: 633-639.

[50]    MONTILLET JL, CHAMNONGPO S, RUSTERUCCIC, DAT J, VAN DE COTTE B, AGNEL JP, BATTE-STIC, INZE D, VAN BREUSEGEM F, TRIANTAPHYLIDES C. Fatty acid hydroperoxides and H202 in the execution of hypersensitive celi death in tobacco leaves. Plant Physiol 2005; 138: 1516-1526.

[51]    NEMCHENKO A, KUNZE S, FEUSSNERI, KOLOMITES M. Duplicate maize 13-lipoxygenase genes are differentially regulated by circadian rhythm, cold stress, wounding, pathogen infection, and hormonal treatments. J Exp Bot 2006; 57: 3767-3779.

[52]    PORTA H, ROCHA-SOSA M. Plant lipoxygenases. Physiological and Molecular Features. Plant Physiol 2002; 130: 15-21.

[53]    PROST I, DHONDT S, ROTHE G, VINCENTE J, RODRIQUEZ MJ, KIFT N, CARBONNE F, GRIFFI-THS G, ESQUERRE-TUGAYE M-T, ROSHAL S, CASTRESANA C, HAMBERG M, FOURNIER J. Evaluation of the antimicrobial activities of plant oxylipins supports their involvement in defense against pathogens. Plant Physiol 2005; 139: 1902-1913.

[54]    PROTEAU JP, GERWICK WH. Divinyl ethers and hydroxy fatty acids from three species of Laminaria (brown algae). Lipids 1993: 28: 783-787.

[55]    RAMACHANDRAN S, RICHARDS-SUCHECK T, SKRZYPCZAK-JANKUN E, WHEELOCK M, FUNK MO. Catalysis sensitive conformational changes in soybean lipoxygenase revealed by limited proteolysis and monoclonal antibody experiments. Biochem 1995; 34: 14868-14873.

[56]    RANCE I, FOURNIER J, ESQUERRE'-TUGAYEM T. The incompatible interaction between Phytophthora parasitica var. nicotianae race 0 and tobacco is suppressed in transgenic plants expressing antisense lipoxygenase sequences. Proc NatI Acad Sci USA 1998; 95: 6554-6559.

[57]    ROBINSON DS, WU Z, DOMONEY C, CASEY R. Lipoxygenases and the quality of foods. Food Chem 1995; 54: 33-43.

[58]    RUSTERUCCI C, MONTILLET J-L, AGNEL J-P, BATTESTIC, ALONSO B, KNOLLA, BESSOULE J-J, ETIENNE P, SUTY L, BLEIN J-P, TRIANTAPHYLIDES C. Involvement of lipoxygenase-dependent production of fatty acid hydroperoxides in the development of the hypersensitive celi death induced by cryptogein on tobacco leaves. J Biol Chem 1999; 274: 36446-36455.



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