Kang H G, Jang S, Chung J E, Cho Y G, An G
Department of Life Science, Pohang University of Science and Technology, Korea.
Mol Cells. 1997 Aug 31;7(4):559-66.
Plants contain a variety of the MADS box genes that encode regulatory proteins and play important roles in both the formation of flower meristem and the determination of floral organ identity. We have characterized two flower-specific cDNAs from rice, designated OsMADS7 and OsMADS8. The cDNAs displayed the structure of a typical plant MADS box gene, which consists of the MADS domain, I region, K domain, and C-terminal region. These genes were classified as members of the AGL2 gene family based on sequence homology. The OsMADS7 and 8 proteins were most homologous to OM1 and FBP2, respectively. The OsMADS7 and 8 transcripts were detectable primarily in carpels and also weakly in anthers. During flower development, the OsMADS genes started to express at the young flower stage and the expression continued to the late stage of flower development. The OsMADS7 and 8 genes were mapped on the long arms of the chromosome 8 and 9, respectively. To study the functions of the genes, the cDNA clones were expressed ectopically using the CaMV 35S promoter in a heterologous tobacco plant system. Transgenic plants expressing the OsMADS genes exhibited the phenotype of early flowering and dwarfism. The strength of the phenotypes was proportional to the levels of transgene expression and the phenotypes were co-inherited with the kanamycin resistant gene to the next generation. These results indicate that OsMADS7 and 8 are structurally related to the AGL2 family and are involved in controlling flowering time.
植物含有多种MADS盒基因,这些基因编码调控蛋白,在花分生组织的形成和花器官特征的决定中都发挥着重要作用。我们从水稻中鉴定了两个花特异性cDNA,命名为OsMADS7和OsMADS8。这些cDNA显示出典型植物MADS盒基因的结构,由MADS结构域、I区、K结构域和C末端区域组成。基于序列同源性,这些基因被归类为AGL2基因家族的成员。OsMADS7和8蛋白分别与OM1和FBP2最为同源。OsMADS7和8转录本主要在心皮中可检测到,在花药中也有微弱表达。在花发育过程中,OsMADS基因在幼花阶段开始表达,并持续到花发育后期。OsMADS7和8基因分别定位在第8号和第9号染色体的长臂上。为了研究这些基因的功能,利用CaMV 35S启动子在异源烟草植物系统中异位表达cDNA克隆。表达OsMADS基因的转基因植物表现出早花和矮化的表型。表型的强度与转基因表达水平成正比,并且这些表型与卡那霉素抗性基因一起遗传给下一代。这些结果表明,OsMADS7和8在结构上与AGL2家族相关,并参与控制开花时间。