Proceedings of the National Academy of Sciences · 1995 · 567 citations · 17 references
BiologyPlant Molecular BiologyBiosynthesisPlant Gene ExpressionBiochemistryChloroplast LipoxygenaseNatural SciencesGeneticsAbscisic AcidPlant BiochemistryLox2 LevelsLox2 AccumulationMetabolismMedicineGene ExpressionPlant HormonePlant PhysiologyPlant Metabolism
Plant lipoxygenases are thought to be involved in the biosynthesis of lipid-derived signaling molecules. The potential involvement of a specific Arabidopsis thaliana lipoxygenase isozyme, LOX2, in the biosynthesis of the plant growth regulators jasmonic acid (JA) and abscisic acid was investigated. Our characterization of LOX2 indicates that the protein is targeted to chloroplasts. The physiological role of this chloroplast lipoxygenase was analyzed in transgenic plants where cosuppression reduced LOX2 accumulation. The reduction in LOX2 levels caused no obvious changes in plant growth or in the accumulation of abscisic acid. However, the wound-induced accumulation of JA observed in control plants was absent in leaves of transgenic plants that lacked LOX2. Thus, LOX2 is required for the wound-induced synthesis of the plant growth regulator JA in leaves. We also examined the expression of a wound- and JA-inducible Arabidopsis gene, vsp, in transgenic and control plants. Leaves of transgenic plants lacking LOX2 accumulated less vsp mRNA than did control leaves in response to wounding. This result suggests that wound-induced JA (or some other LOX2-requiring component of the wound response pathway) is involved in the wound-induced regulation of this gene.
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A plant DNA minipreparation: Version II
Stephen L. Dellaporta, Jonathan Wood, James Hicks · Plant Molecular Biology Reporter · 1983 · 7.5K citations
Biology, Plant Genetics, Botany +7
Dirk Valvekens, Marc Van Montagu, Mieke Van Lijsebettens · Proceedings of the National Academy of Sciences · 1988 · 1.3K citations · Full text