Carlsbecker Annelie, Sundström Jens, Tandre Karolina, Englund Marie, Kvarnheden Anders, Johanson Urban, Engström Peter
Evolutionary Biology Centre, Department of Physiological Botany, Uppsala University, Villavägen 6, SE-752 36 Uppsala, Sweden.
Evol Dev. 2003 Nov-Dec;5(6):551-61. doi: 10.1046/j.1525-142x.2003.03060.x.
Transcription factors encoded by different members of the MADS-box gene family have evolved central roles in the regulation of reproductive organ development in the flowering plants, the angiosperms. Development of the stamens and carpels, the pollen- and seed-bearing organs, involves the B- and C-organ-identity MADS-box genes. B- and C-type gene orthologs with activities specifically in developing pollen- and seed-bearing organs are also present in the distantly related gymnosperms: the conifers and the gnetophytes. We now report on the characterization of DAL10, a novel MADS-box gene from the conifer Norway spruce, which unlike the B- and C-type conifer genes shows no distinct orthology relationship to any angiosperm gene or clade in phylogenetic analyses. Like the B- and C-type genes, it is active specifically in developing pollen cones and seed cones. In situ RNA localization experiments show DAL10 to be expressed in the cone axis, which carry the microsporophylls of the young pollen cone. In contrast, in the seed cone it is expressed both in the cone axis and in the bracts, which subtend the ovuliferous scales. Expression data and the phenotype of transgenic Arabidopsis plants expressing DAL10 suggest that the gene may act upstream to or in concert with the B- and C-type genes in the establishment of reproductive identity of developing cones.
MADS盒基因家族不同成员编码的转录因子在被子植物(开花植物)生殖器官发育的调控中发挥着核心作用。雄蕊和心皮(产生花粉和种子的器官)的发育涉及B类和C类器官特征MADS盒基因。在亲缘关系较远的裸子植物(针叶树和买麻藤类植物)中也存在在发育中的产生花粉和种子的器官中具有特定活性的B类和C类基因直系同源物。我们现在报告了来自针叶树挪威云杉的一个新的MADS盒基因DAL10的特征,在系统发育分析中,与B类和C类针叶树基因不同,它与任何被子植物基因或进化枝没有明显的直系同源关系。与B类和C类基因一样,它在发育中的雄球花和雌球花中特异性活跃。原位RNA定位实验表明DAL10在球花轴中表达,球花轴上着生着幼嫩雄球花的小孢子叶。相比之下,在雌球花中,它在球花轴和苞片(苞片位于珠鳞下方)中均有表达。表达数据以及表达DAL10的转基因拟南芥植物的表型表明,该基因可能在发育中的球花生殖特征确立过程中,作用于B类和C类基因的上游或与其协同作用。