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支持茉莉酸在拟南芥叶片衰老中起作用的证据。

Evidence supporting a role of jasmonic acid in Arabidopsis leaf senescence.

作者信息

He Yuehui, Fukushige Hirotada, Hildebrand David F, Gan Susheng

机构信息

Plant Physiology/Biochemistry/Molecular Biology Program, Department of Agronomy, Agricultural Sciences Center-North, University of Kentucky, Lexington, Kentucky 40546-0091, USA.

出版信息

Plant Physiol. 2002 Mar;128(3):876-84. doi: 10.1104/pp.010843.

Abstract

In this work, the role of jasmonic acid (JA) in leaf senescence is examined. Exogenous application of JA caused premature senescence in attached and detached leaves in wild-type Arabidopsis but failed to induce precocious senescence of JA-insensitive mutant coi1 plants, suggesting that the JA-signaling pathway is required for JA to promote leaf senescence. JA levels in senescing leaves are 4-fold higher than in non-senescing ones. Concurrent with the increase in JA level in senescing leaves, genes encoding the enzymes that catalyze most of the reactions of the JA biosynthetic pathway are differentially activated during leaf senescence in Arabidopsis, except for allene oxide synthase, which is constitutively and highly expressed throughout leaf development. Arabidopsis lipoxygenase 1 (cytoplasmic) expression is greatly increased but lipoxygenase 2 (plastidial) expression is sharply reduced during leaf senescence. Similarly, AOC1 (allene oxide cyclase 1), AOC2, and AOC3 are all up-regulated, whereas AOC4 is down-regulated with the progression of leaf senescence. The transcript levels of 12-oxo-PDA reductase 1 and 12-oxo-PDA reductase 3 also increase in senescing leaves, as does PED1 (encoding a 3-keto-acyl-thiolase for beta-oxidation). This represents the first report, to our knowledge, of an increase in JA levels and expression of oxylipin genes during leaf senescence, and indicates that JA may play a role in the senescence program.

摘要

在本研究中,检测了茉莉酸(JA)在叶片衰老中的作用。外源施加JA导致野生型拟南芥的附着叶和离体叶过早衰老,但未能诱导JA不敏感突变体coi1植株过早衰老,这表明JA促进叶片衰老需要JA信号通路。衰老叶片中的JA水平比未衰老叶片高4倍。随着衰老叶片中JA水平的升高,在拟南芥叶片衰老过程中,编码JA生物合成途径中大多数反应的酶的基因被差异激活,但丙二烯氧化物合酶除外,该酶在叶片发育全过程中组成性高表达。在叶片衰老过程中,拟南芥脂氧合酶1(细胞质)的表达大幅增加,但脂氧合酶2(质体)的表达急剧下降。同样,丙二烯氧化物环化酶1(AOC1)、AOC2和AOC3均上调,而随着叶片衰老进程,AOC4下调。衰老叶片中12-氧代-PDA还原酶1和12-氧代-PDA还原酶3的转录水平也增加,编码β-氧化3-酮酰基硫解酶的PED1的转录水平也增加。据我们所知,这是关于叶片衰老过程中JA水平和氧脂素基因表达增加的首次报道,表明JA可能在衰老程序中发挥作用。

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