Institut de Biologie Moléculaire des Plantes, UPR2357, conventionné avec l'Université de Strasbourg, 67084, Strasbourg, France.
Plant J. 2014 Nov;80(3):462-74. doi: 10.1111/tpj.12648. Epub 2014 Sep 19.
Ent-kaurenoic acid oxidase (KAO), a class of cytochrome P450 monooxygenases of the subfamily CYP88A, catalyzes the conversion of ent-kaurenoic acid (KA) to gibberellin (GA) GA12 , the precursor of all GAs, thereby playing an important role in determining GA concentration in plants. Past work has demonstrated the importance of KAO activity for growth in various plant species. In Arabidopsis, this enzyme is encoded by two genes designated KAO1 and KAO2. In this study, we used various approaches to determine the physiological roles of KAO1 and KAO2 throughout plant development. Analysis of gene expression pattern reveals that both genes are mainly expressed in germinating seeds and young developing organs, thus suggesting functional redundancy. Consistent with this, kao1 and kao2 single mutants are indistinguishable from wild-type plants. By contrast, the kao1 kao2 double mutant exhibits typical non-germinating GA-dwarf phenotypes, similar to those observed in the severely GA-deficient ga1-3 mutant. Phenotypic characterization and quantitative analysis of endogenous GA contents of single and double kao mutants further confirm an overlapping role of KAO1 and KAO2 throughout Arabidopsis development.
贝壳杉烯酸氧化酶(KAO)是细胞色素 P450 单加氧酶 CYP88A 亚家族的一类酶,可催化贝壳杉烯酸(KA)转化为赤霉素(GA)GA12,GA12 是所有 GA 的前体,因此在决定植物中 GA 浓度方面发挥着重要作用。过去的研究表明,KAO 活性对各种植物物种的生长很重要。在拟南芥中,该酶由两个基因 KAO1 和 KAO2 编码。在这项研究中,我们使用各种方法来确定 KAO1 和 KAO2 在整个植物发育过程中的生理作用。基因表达模式分析表明,这两个基因主要在萌发的种子和正在发育的幼嫩器官中表达,因此表明它们具有功能冗余性。这与 kao1 和 kao2 单突变体与野生型植物没有区别的观察结果一致。相比之下,kao1 kao2 双突变体表现出典型的非萌发 GA 矮化表型,类似于严重缺乏 GA 的 ga1-3 突变体的表型。单和双 kao 突变体的内源 GA 含量的表型特征和定量分析进一步证实了 KAO1 和 KAO2 在整个拟南芥发育过程中的重叠作用。