Ferrario Silvia, Immink Richard G H, Shchennikova Anna, Busscher-Lange Jacqueline, Angenent Gerco C
Business Unit Plant Development and Reproduction, Plant Research International, 6700 AA Wageningen, The Netherlands.
Plant Cell. 2003 Apr;15(4):914-25. doi: 10.1105/tpc.010280.
The ABC model, which was accepted for almost a decade as a paradigm for flower development in angiosperms, has been subjected recently to a significant modification with the introduction of the new class of E-function genes. This function is required for the proper action of the B- and C-class homeotic proteins and is provided in Arabidopsis by the SEPALLATA1/2/3 MADS box transcription factors. A triple mutant in these partially redundant genes displays homeotic conversion of petals, stamens, and carpels into sepaloid organs and loss of determinacy in the center of the flower. A similar phenotype was obtained by cosuppression of the MADS box gene FBP2 in petunia. Here, we provide evidence that this phenotype is caused by the downregulation of both FBP2 and the paralog FBP5. Functional complementation of the sepallata mutant by FBP2 and our finding that the FBP2 protein forms multimeric complexes with other floral homeotic MADS box proteins indicate that FBP2 represents the same E function as SEP3 in Arabidopsis.
ABC模型作为被子植物花发育的范例已被接受近十年,最近随着新的E功能基因类别的引入,它经历了重大修改。这种功能是B类和C类同源异型蛋白正常发挥作用所必需的,拟南芥中的SEPALLATA1/2/3 MADS盒转录因子提供了这种功能。这些部分冗余基因的三重突变体表现出花瓣、雄蕊和心皮向萼片状器官的同源异型转变,以及花中心确定性的丧失。通过在矮牵牛中共同抑制MADS盒基因FBP2也获得了类似的表型。在这里,我们提供证据表明这种表型是由FBP2及其旁系同源基因FBP5的下调引起的。FBP2对萼片突变体的功能互补以及我们发现FBP2蛋白与其他花同源异型MADS盒蛋白形成多聚体复合物,表明FBP2与拟南芥中的SEP3具有相同的E功能。