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AtGA3ox2是负责生物活性赤霉素生物合成的关键基因,在拟南芥胚胎发生过程中受LEAFY COTYLEDON2和FUSCA3调控。

AtGA3ox2, a key gene responsible for bioactive gibberellin biosynthesis, is regulated during embryogenesis by LEAFY COTYLEDON2 and FUSCA3 in Arabidopsis.

作者信息

Curaba Julien, Moritz Thomas, Blervaque Renaud, Parcy François, Raz Vered, Herzog Michel, Vachon Gilles

机构信息

Laboratoire de Plastes et Différenciation Cellulaire, Centre National de la Recherche Scientifique Unité Mixte de Recherche 5575, Université Joseph Fourier, Centre Etude et de Recherche sur les Macromolécules Organiques B.P. 53, F-38041 Grenoble 9, France.

出版信息

Plant Physiol. 2004 Nov;136(3):3660-9. doi: 10.1104/pp.104.047266. Epub 2004 Oct 29.

Abstract

Embryonic regulators LEC2 (LEAFY COTYLEDON2) and FUS3 (FUSCA3) are involved in multiple aspects of Arabidopsis (Arabidopsis thaliana) seed development, including repression of leaf traits and premature germination and activation of seed storage protein genes. In this study, we show that gibberellin (GA) hormone biosynthesis is regulated by LEC2 and FUS3 pathways. The level of bioactive GAs is increased in immature seeds of lec2 and fus3 mutants relative to wild-type level. In addition, we show that the formation of ectopic trichome cells on lec2 and fus3 embryos is a GA-dependent process as in true leaves, suggesting that the GA pathway is misactivated in embryonic mutants. We next demonstrate that the GA-biosynthesis gene AtGA3ox2, which encodes the key enzyme AtGA3ox2 that catalyzes the conversion of inactive to bioactive GAs, is ectopically activated in embryos of the two mutants. Interestingly, both beta-glucuronidase reporter gene expression and in situ hybridization indicate that FUS3 represses AtGA3ox2 expression mainly in epidermal cells of embryo axis, which is distinct from AtGA3ox2 pattern at germination. Finally, we show that the FUS3 protein physically interacts with two RY elements (CATGCATG) present in the AtGA3ox2 promoter. This work suggests that GA biosynthesis is directly controlled by embryonic regulators during Arabidopsis embryonic development.

摘要

胚胎调控因子LEC2(叶状子叶2)和FUS3(皱叶3)参与拟南芥种子发育的多个方面,包括抑制叶片性状和过早萌发以及激活种子贮藏蛋白基因。在本研究中,我们表明赤霉素(GA)激素生物合成受LEC2和FUS3途径调控。相对于野生型水平,lec2和fus3突变体未成熟种子中生物活性GA的水平有所增加。此外,我们表明lec2和fus3胚胎上异位毛状体细胞的形成与真叶中一样是一个GA依赖的过程,这表明GA途径在胚胎突变体中被错误激活。接下来我们证明,GA生物合成基因AtGA3ox2在这两个突变体的胚胎中被异位激活,该基因编码催化无活性GA转化为生物活性GA的关键酶AtGA3ox2。有趣的是,β-葡萄糖醛酸酶报告基因表达和原位杂交均表明,FUS3主要在胚轴表皮细胞中抑制AtGA3ox2基因表达,这与萌发时AtGA3ox2的表达模式不同。最后,我们表明FUS3蛋白与AtGA3ox2启动子中存在的两个RY元件(CATGCATG)发生物理相互作用。这项工作表明,在拟南芥胚胎发育过程中,GA生物合成直接受胚胎调控因子控制。

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