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Distinct Lipoxygenase Species Appear in the Hypocotyl/radicle of Germinating Soybean

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Journal Plant Physiol
Specialty Physiology
Date 1989 May 1
PMID 16666750
Citations 18
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Abstract

Three lipoxygenase isozymes are synthesized in developing soybean (Glycine max [L.] Merr. cv Williams) embryos and are found in high levels in cotyledons of mature seeds (B Axelrod, TM Cheesbrough, S Zimmer [1981] Methods Enzymol 71: 441-451). Upon germination at least two new protein species appear which are localized mainly (on a protein basis) in the hypocotyl/radicle section. These lipoxygenase species appear also in seedlings of each of three lipoxygenase nulls (1x1, 1x2, and 1x3) deficient in one of the dormant seed lipoxygenases. The germination-associated species are distinguishable from dry seed lipoxygenase by their more acidic isoelectric points as revealed in isoelectric focusing gels. They are active from as early as 2 to at least 5 days after the start of imbibition. These germination-stimulated species qualify as lipoxygenase by their inhibition by the lipoxygenase inhibitors n-propyl gallate and salicyl hydroxamic acid and their lack of inhibition by KCN. Further, they are not active on the peroxidase substrate pair H(2)O(2)/3-amino-9-ethyl carbazole. They are recognized on Western blots by polyclonal antibodies to the seed lipoxygenase-1 isozyme and the major induced species has a molecular weight of approximately 100,000, similar to that of the cotyledon lipoxygenases. These lipoxygenases appear to be synthesized de novo upon germination since they comigrate with radioactive protein species from seeds germinated in [(35)S]methionine.

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References
1.
Dolev A, Rohwedder W, Dutton H . Mechanism of lipoxidase reaction. I. Specificity of hydroperoxidation of linoleic acid. Lipids. 1967; 2(1):28-32. DOI: 10.1007/BF02531996. View

2.
Fobel M, Lynch D, Thompson J . Membrane deterioration in senescing carnation flowers : coordinated effects of phospholipid degradation and the action of membranous lipoxygenase. Plant Physiol. 1987; 85(1):204-11. PMC: 1054230. DOI: 10.1104/pp.85.1.204. View

3.
Eskin N, Grossman S, PINSKY A . Biochemistry of lipoxygenase in relation to food quality. CRC Crit Rev Food Sci Nutr. 1977; 9(1):1-40. DOI: 10.1080/10408397709527229. View

4.
Vick B, Zimmerman D . The biosynthesis of jasmonic acid: a physiological role for plant lipoxygenase. Biochem Biophys Res Commun. 1983; 111(2):470-7. DOI: 10.1016/0006-291x(83)90330-3. View

5.
Peterman T, Siedow J . Immunological comparison of lipoxygenase isozymes-1 and -2 with soybean seedling lipoxygenases. Arch Biochem Biophys. 1985; 238(2):476-83. DOI: 10.1016/0003-9861(85)90190-0. View