Weichert Heiko, Kolbe Adelheid, Kraus Angelika, Wasternack Claus, Feussner Ivo
Institute oof Plant Genetics and Crop Plant Research (IPK), Gatersleben, Germany.
Planta. 2002 Aug;215(4):612-9. doi: 10.1007/s00425-002-0779-4. Epub 2002 Apr 24.
A particular isoform of lipoxygenase (LOX) localized on lipid bodies was shown by earlier investigations to play a role in initiating the mobilization of triacylglycerols during seed germination. Here, further physiological functions of LOXs within whole cotyledons of cucumber (Cucumis sativus L.) were analyzed by measuring the endogenous amounts of LOX-derived products. The lipid-body LOX-derived esterified (13 S)-hydroperoxy linoleic acid was the dominant metabolite of the LOX pathway in this tissue. It accumulated to about 14 micromol/g fresh weight, which represented about 6% of the total amount of linoleic acid in cotyledons. This LOX product was not only reduced to its hydroxy derivative, leading to degradation by beta-oxidation, but alternatively it was metabolized by fatty acid hydroperoxide lyase leading to formation of hexanal as well. Furthermore, the activities of LOX forms metabolizing linolenic acid were detected by measuring the accumulation of volatile aldehydes and the allene oxide synthase-derived metabolite jasmonic acid. The first evidence is presented for an involvement of a lipid-body LOX form in the production of volatile aldehydes.
早期研究表明,定位于脂质体上的一种特定脂氧合酶(LOX)同工型在种子萌发过程中启动三酰甘油的动员中发挥作用。在此,通过测量LOX衍生产物的内源性含量,分析了黄瓜(Cucumis sativus L.)整个子叶中LOX的进一步生理功能。脂质体LOX衍生的酯化(13S)-氢过氧化亚油酸是该组织中LOX途径的主要代谢产物。它积累到约14微摩尔/克鲜重,约占子叶中亚油酸总量的6%。这种LOX产物不仅被还原为其羟基衍生物,导致通过β-氧化降解,而且还可通过脂肪酸氢过氧化物裂解酶代谢,导致己醛的形成。此外,通过测量挥发性醛和丙二烯氧化物合酶衍生的代谢产物茉莉酸的积累,检测了代谢亚麻酸的LOX形式的活性。首次提出了脂质体LOX形式参与挥发性醛产生的证据。