Department of Environmental Horticulture, University of Seoul, Seoul, 130-743, Korea.
Transgenic Res. 2011 Apr;20(2):365-76. doi: 10.1007/s11248-010-9420-7. Epub 2010 Jun 22.
The MADS-box genes have been studied mainly in flower development by researching flower homeotic mutants. Most of the MADS-box genes isolated from plants are expressed exclusively in floral tissues, and some of their transcripts have been found in various vegetative tissues. The genes in the STMADS subfamily are important in the development of whole plants including roots, stems, leaves, and the plant vascular system. IbMADS3-1, which is in the STMADS subfamily, and which has been cloned in Ipomoea batatas (L.) Lam., is expressed in all vegetative tissues of the plant, particularly in white fibrous roots. Sequence similarity, besides the spatial and temporal expression patterns, enabled the definition of a novel MADS-box subfamily comprising STMADS16 and the other MADS-box genes in STMADS subfamily expressed specifically in vegetative tissues. Expression of IbMADS3-1 was manifest by the appearance of chlorophyll-containing petals and production of characteristic changes in organ identity carpel structure alterations and sepaloidy of the petals. In reverse transcription-polymerase chain reaction analysis with a number of genes known to be key regulators of floral organ development, the flowering promoter NFL1 was clearly reduced at the RNA level compared with wild type in transgenic line backgrounds. Moreover, NtMADS5 showed slight down-regulation compared with wild-type plants in transgenic lines. These results suggest that IbMADS3-1 could be a repressor of NFL1 located upstream of NtMADS5. IbMADS3-1 ectopic expression is suggested as a possible means during vegetative development by which the IbMADS3-1 gene may interfere with the floral developmental pathway.
MADS 框基因主要通过研究花的同源突变体来研究花的发育。从植物中分离出的大多数 MADS 框基因仅在花组织中表达,并且在一些植物的各种营养组织中发现了它们的转录本。STMADS 亚家族的基因在植物的整个发育过程中都很重要,包括根、茎、叶和植物的脉管系统。在甘薯中克隆的 IbMADS3-1 属于 STMADS 亚家族,在植物的所有营养组织中表达,特别是在白色纤维根中表达。除了时空表达模式外,序列相似性还定义了一个新的 MADS 框亚家族,该亚家族包含 STMADS16 和其他在营养组织中特异性表达的 STMADS 亚家族的 MADS 框基因。IbMADS3-1 的表达表现为含有叶绿素的花瓣出现,并产生特征性的器官身份变化——心皮结构改变和花瓣的萼片状。在对一些已知是花器官发育关键调节因子的基因进行反转录聚合酶链反应分析时,与野生型相比,在转基因株系背景中,开花启动子 NFL1 的 RNA 水平明显降低。此外,在转基因株系中,NtMADS5 的表达水平与野生型相比略有下调。这些结果表明,IbMADS3-1 可能是位于 NtMADS5 上游的 NFL1 的抑制剂。IbMADS3-1 的异位表达可能是通过该基因在营养生长发育过程中干扰花发育途径的一种方式。