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通过在烟草中异位表达水稻MADS盒基因对花瓣和萼片进行表型改变。

Phenotypic alterations of petal and sepal by ectopic expression of a rice MADS box gene in tobacco.

作者信息

Kang H G, Noh Y S, Chung Y Y, Costa M A, An K, An G

机构信息

Institute of Biological Chemistry, Washington State University, Pullman 99164-6340, USA.

出版信息

Plant Mol Biol. 1995 Oct;29(1):1-10. doi: 10.1007/BF00019114.

Abstract

Floral organ development is controlled by a group of regulatory factors containing the MADS domain. In this study, we have isolated and characterized a cDNA clone from rice, OsMADS3, which encodes a MADS-domain containing protein. The OsMADS3 amino acid sequence shows over 60% identity to AG of Arabidopsis, PLE of Antirrhinum majus, and AG/PLE homologues of petunia, tobacco, tomato, Brassica napus, and maize. Homology in the MADS box region is most conserved. RNA blot analysis indicated that the rice MADS gene was preferentially expressed in reproductive organs, especially in stamen and carpel. In situ localization studies showed that the transcript was present primarily in stamen and carpel. The function of the rice OsMADS3 was elucidated by ectopic expression of the gene under the control of the CaMV 35S promoter in a heterologous tobacco plant system. Transgenic plants exhibited an altered morphology and coloration of the perianth organs. Sepals were pale green and elongated. Limbs of the corolla were split into sections which in some plants became antheroid structures attached to tubes that resembled filaments. The phenotypes mimic the results of ectopic expression of dicot AG gene or AG homologues. These results indicate that the OsMADS3 gene is possibly an AG homologue and that the AG genes appear to be structurally and functionally conserved between dicot and monocot.

摘要

花器官的发育受一组含有MADS结构域的调控因子控制。在本研究中,我们从水稻中分离并鉴定了一个cDNA克隆OsMADS3,它编码一种含有MADS结构域的蛋白质。OsMADS3氨基酸序列与拟南芥的AG、金鱼草的PLE以及矮牵牛、烟草、番茄、甘蓝型油菜和玉米的AG/PLE同源物具有60%以上的同一性。MADS盒区域的同源性最为保守。RNA印迹分析表明,水稻MADS基因在生殖器官中优先表达,尤其是在雄蕊和心皮中。原位定位研究表明,转录本主要存在于雄蕊和心皮中。通过在异源烟草植物系统中CaMV 35S启动子控制下的该基因异位表达,阐明了水稻OsMADS3的功能。转基因植物表现出花被器官形态和颜色的改变。萼片呈浅绿色且拉长。花冠的瓣片分裂成几部分,在一些植物中变成附着在类似花丝的管状物上的花药状结构。这些表型类似于双子叶植物AG基因或AG同源物异位表达的结果。这些结果表明,OsMADS3基因可能是AG同源物,并且AG基因在双子叶植物和单子叶植物之间似乎在结构和功能上是保守的。

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