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首页> 外文期刊>The Plant Cell >The homeotic protein AGAMOUS controls late stamen development by regulating a jasmonate biosynthetic gene in Arabidopsis
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The homeotic protein AGAMOUS controls late stamen development by regulating a jasmonate biosynthetic gene in Arabidopsis

机译:同源蛋白AGAMOUS通过调节拟南芥中的茉莉酸酯生物合成基因来控制雄蕊的后期发育

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The Arabidopsis thaliana floral homeotic gene AGAMOUS (AG) plays a central role in reproductive organ (stamen and carpel) development. AG RNA is expressed in the center of floral primordia from a time prior to the initiation of stamen and carpel primordia until late in flower development. While early AG expression acts in specification of stamens and carpels, the role, if any, of continued AG expression in later flower development is unknown. To examine the timing of AG action and its possible late-stage functions, we performed a series of time-course experiments using a transgenic line with inducible AG activity in an ag homozygous mutant background. We show that AG controls late-stage stamen development, including anther morphogenesis and dehiscence, as well as filament formation and elongation. We further show that AG coordinates late stamen maturation by controlling a biosynthetic gene of the lipid-derived phytohormone jasmonic acid (JA). Expression analysis and in vivo binding of AG indicate that AG directly regulates the transcription of a catalytic enzyme of JA, DEFECTIVE IN ANTHER DEHISCENCE1. Our results indicate that stamen identity and differentiation control by AG is achieved by the regulation of different transcriptional cascades in different floral stages, with organ specification induced early, followed by phytohormone biosynthesis to coordinate stamen maturation.
机译:拟南芥花卉同源基因AGAMOUS(AG)在生殖器官(雄蕊和心皮)的发育中起着核心作用。从开始雄蕊和心皮原基开始直到花朵发育的后期,AG RNA在花基原基的中心表达。尽管早期的AG表达在雄蕊和心皮的规格中起作用,但是,如果有的话,继续的AG表达在以后的花发育中的作用(如果有的话)是未知的。为了检查AG作用的时机及其可能的后期功能,我们在ag纯合突变体背景下使用具有可诱导AG活性的转基因品系进行了一系列时程实验。我们表明,AG控制后期雄蕊发育,包括花药形态发生和裂开,以及花丝的形成和伸长。我们进一步表明,AG通过控制脂质衍生的植物激素茉莉酸(JA)的生物合成基因来协调晚期雄蕊成熟。 AG的表达分析和体内结合表明AG直接调节JA催化酶的转录,这对花药开裂是不利的。我们的结果表明,AG的雄蕊身份和分化控制是通过调节不同花期的不同转录级联来实现的,早期诱导器官规格,然后进行植物激素的生物合成以协调雄蕊的成熟。

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