Zhang Yingying, Zhu Yongyou, Peng Yu, Yan Dawei, Li Qun, Wang Jianjun, Wang Linyou, He Zuhua
National Key Laboratory of Plant Molecular Genetics, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 300 Fenglin Road, Shanghai 200032, China.
Cell Res. 2008 Mar;18(3):412-21. doi: 10.1038/cr.2008.28.
The rice Eui (ELONGATED UPPERMOST INTERNODE) gene encodes a cytochrome P450 monooxygenase that deactivates bioactive gibberellins (GAs). In this study, we investigated controlled expression of the Eui gene and its role in plant development. We found that Eui was differentially induced by exogenous GAs and that the Eui promoter had the highest activity in the vascular bundles. The eui mutant was defective in starch granule development in root caps and Eui overexpression enhanced starch granule generation and gravity responses, revealing a role for GA in root starch granule development and gravity responses. Experiments using embryoless half-seeds revealed that RAmy1A and GAmyb were highly upregulated in eui aleurone cells in the absence of exogenous GA. In addition, the GA biosynthesis genes GA3ox1 and GA20ox2 were downregulated and GA2ox1 was upregulated in eui seedlings. These results indicate that EUI is involved in GA homeostasis, not only in the internodes at the heading stage, but also in the seedling stage, roots and seeds. Disturbing GA homeostasis affected the expression of the GA signaling genes GID1 (GIBBERELLIN INSENSITIVE DWARF 1), GID2 and SLR1. Transgenic RNA interference of the Eui gene effectively increased plant height and improved heading performance. By contrast, the ectopic expression of Eui under the promoters of the rice GA biosynthesis genes GA3ox2 and GA20ox2 significantly reduced plant height. These results demonstrate that a slight increase in Eui expression could dramatically change rice morphology, indicating the practical application of the Eui gene in rice molecular breeding for a high yield potential.
水稻Eui(伸长的最上节间)基因编码一种细胞色素P450单加氧酶,该酶可使生物活性赤霉素(GAs)失活。在本研究中,我们研究了Eui基因的可控表达及其在植物发育中的作用。我们发现Eui受外源GAs的差异诱导,且Eui启动子在维管束中具有最高活性。eui突变体在根冠淀粉粒发育方面存在缺陷,而Eui过表达增强了淀粉粒的产生和重力反应,揭示了GA在根淀粉粒发育和重力反应中的作用。使用无胚半种子的实验表明,在没有外源GA的情况下,RAmy1A和GAmyb在eui糊粉层细胞中高度上调。此外,GA生物合成基因GA3ox1和GA20ox2在eui幼苗中下调,而GA2ox1上调。这些结果表明,EUI不仅在抽穗期的节间,而且在幼苗期、根和种子中都参与GA稳态。干扰GA稳态会影响GA信号基因GID1(赤霉素不敏感矮化1)、GID2和SLR1的表达。对Eui基因进行转基因RNA干扰可有效增加株高并改善抽穗表现。相比之下,在水稻GA生物合成基因GA3ox2和GA20ox2的启动子下异位表达Eui会显著降低株高。这些结果表明,Eui表达的轻微增加可能会显著改变水稻形态,这表明Eui基因在水稻高产潜力分子育种中的实际应用价值。