Liu W, Hildebrand D F, Grayburn W S, Phillips G C, Collins G B
Department of Agronomy, University of Kentucky, Lexington, Kentucky 40546.
Plant Physiol. 1991 Nov;97(3):969-76. doi: 10.1104/pp.97.3.969.
The expression of lipoxygenases (LOXs) is known to be developmentally regulated in soybeans (Glycine max. [L.] Merr.). Hormones have been firmly established as being involved in the growth and developmental processes of a number of plant species. Correlation between the expression of LOXs and the development and germination of soybean embryos suggests that plant hormones may affect the expression of LOXs. The present studies were conducted to investigate the effects of exogenous auxins on the expression of LOX isozymes and LOX activities in cultured cotyledon tissues of immature soybean seeds. The results revealed that at least one of the more acidic nonembryo LOX isozymes was induced by either alpha-naphthaleneacetic acid or indoleacetic acid but not by 2,4-dichlorophenoxyacetic acid after 4 days' exposure. Levels of LOX-1, -2, and -3 proteins and activities were significantly decreased by 2,4-dichlorophenoxyacetic acid 10 days after explanting. S1 analysis showed that embryo LOX messenger RNAs were detectable in the tissues treated with each of the auxins. The reduced levels of the embryo LOX proteins may, therefore, be regulated at the levels of translation, posttranslational modification, or degradation. The more acidic isozymes induced by alpha-naphthaleneacetic acid showed enzymatic activity and shared the same molecular mass and isoelectric point values as the germination-associated LOX isozymes found in hypocotyls and radicles, suggesting that those LOXs are involved in germination competency of soybean embryos.
已知脂氧合酶(LOXs)的表达在大豆(Glycine max. [L.] Merr.)的发育过程中受到调控。激素已被确证参与多种植物物种的生长和发育过程。LOXs的表达与大豆胚胎的发育及萌发之间的相关性表明,植物激素可能会影响LOXs的表达。本研究旨在探究外源生长素对未成熟大豆种子培养子叶组织中LOX同工酶表达及LOX活性的影响。结果显示,暴露4天后,α-萘乙酸或吲哚乙酸可诱导至少一种酸性更强的非胚LOX同工酶,但2,4-二氯苯氧乙酸无此作用。外植10天后,2,4-二氯苯氧乙酸可使LOX-1、-2和-3蛋白水平及活性显著降低。S1分析表明,在每种生长素处理的组织中均可检测到胚LOX信使核糖核酸。因此,胚LOX蛋白水平的降低可能在翻译、翻译后修饰或降解水平受到调控。α-萘乙酸诱导的酸性更强的同工酶具有酶活性,且其分子量和等电点值与下胚轴和胚根中发现的与萌发相关的LOX同工酶相同,这表明这些LOXs参与大豆胚胎的萌发能力。