Kirik V, Kölle K, Wohlfarth T, Miséra S, Bäumlein H
Institut für Pflanzengenetik und Kulturpflanzenforschung, Gatersleben, Germany.
Plant J. 1998 Mar;13(6):729-42. doi: 10.1046/j.1365-313x.1998.00072.x.
The Arabidopsis thaliana mutants fus3, lec1 and abi3 have pleiotropic defects during late embryogenesis. Mutant embryos fail to enter the maturation programme and initiate a vegetative germination pathway instead. Screening for genes which are differentially expressed in the fus3 mutant of Arabidopsis resulted in the isolation of several members of the MYB family. MYB domain proteins in plants represent an extended gene family of transcription factors, suggesting their participation in a variety of plant specific cellular functions. Here, the authors describe one of these genes, designated AtMYB13, representing a novel member of the MYB gene family. The structure of the gene as well as its genomic organisation and localisation are reported. The expression of the gene is regulated by dehydration, exogenous abscisic acid, light and wounding. A chimeric AtMYB13 promoter/GUS gene is tissue-specifically expressed in transgenic Arabidopsis plants. The GUS staining was predominantly detected in the shoot apex zone and at the basis of developing flowers. In addition, the AtMYB13 gene promoter is active at branching points of the inflorescence. Furthermore, ectopic expression of the AtMYB13 gene has a characteristic impact on the architecture of the inflorescence leading to peculiar hook structures at pedicel branching points. In addition, some transgenic plants exhibit a reversed order of first flowers and axillary buds. These data suggest a function of the AtMYB13 gene product in linking shoot morphogenic activity with environmental as well as intrinsic signals.
拟南芥突变体fus3、lec1和abi3在胚胎发育后期存在多效性缺陷。突变体胚胎无法进入成熟程序,而是启动了营养体萌发途径。对拟南芥fus3突变体中差异表达基因的筛选导致分离出了MYB家族的几个成员。植物中的MYB结构域蛋白代表了一个转录因子的扩展基因家族,表明它们参与了多种植物特有的细胞功能。在此,作者描述了其中一个基因,命名为AtMYB13,它是MYB基因家族的一个新成员。报道了该基因的结构及其基因组组织和定位。该基因的表达受脱水、外源脱落酸、光照和创伤的调控。一个嵌合的AtMYB13启动子/GUS基因在转基因拟南芥植物中组织特异性表达。GUS染色主要在茎尖区域和发育中的花的基部检测到。此外,AtMYB13基因启动子在花序的分支点处具有活性。此外,AtMYB13基因的异位表达对花序结构有独特影响,导致花梗分支点处出现特殊的钩状结构。此外,一些转基因植物表现出第一朵花和腋芽的顺序颠倒。这些数据表明AtMYB13基因产物在将茎形态发生活性与环境以及内在信号联系起来方面具有功能。