Department of Molecular Plant Genetics, Max Planck Institute for Plant Breeding Research, Carl-von-Linné-Weg 10, 50829 Cologne, Germany.
Planta. 2012 Jun;235(6):1171-84. doi: 10.1007/s00425-011-1565-y. Epub 2011 Dec 10.
SBP-box genes represent transcription factors ubiquitously found in the plant kingdom and recognized as important regulators of many different aspects of plant development. In this study, 15 SBP-box gene family members were identified in tomato and analyzed with respect to their genomic organization and other structural features. Phylogenetic reconstruction based on the DNA-binding SBP-domain, allowed the classification of the SlySBP proteins into eight groups representing clear orthologous relationships to family members of other flowering plants and the moss Physcomitrella. In order to have a better understanding of their possible function in the development of a fleshy-fruit species like tomato, the mRNA expression levels of all SlySBP genes were quantified in vegetative and reproductive organs of plants, at different stages of growth. As transcripts of ten SlySBP genes were found to carry putative miR156- and miR157-response elements, the expression levels of the corresponding microRNAs were determined as well, revealing different patterns of expression. In addition, eight putative miR156 and four miR157 encoding loci could be identified in the tomato genome, four of them forming a polycistronic cluster. Whereas miR156 and miR157 levels were highest in seedlings, leaves and anthers of young flowers, most miR156-targeted SlySBP genes were found to be expressed in young inflorescences and during fruit development and ripening, suggesting a particularly important role during tomato reproductive growth. The data presented provide a basis for future clarification of the various functions that SBP-box gene family members play in tomato growth and development.
SBP 框基因代表在植物界普遍存在的转录因子,被认为是植物发育许多不同方面的重要调节因子。在这项研究中,在番茄中鉴定了 15 个 SBP 框基因家族成员,并分析了它们的基因组组织和其他结构特征。基于 DNA 结合 SBP 结构域的系统发育重建,允许将 SlySBP 蛋白分类为八个组,代表与其他开花植物和苔藓 Physcomitrella 家族成员的明确同源关系。为了更好地了解它们在肉质果实物种(如番茄)发育中的可能功能,在植物的营养和生殖器官中,在不同的生长阶段,定量测定了所有 SlySBP 基因的 mRNA 表达水平。由于发现十个 SlySBP 基因的转录本携带假定的 miR156-和 miR157 反应元件,因此也确定了相应的 microRNAs 的表达水平,揭示了不同的表达模式。此外,在番茄基因组中可以识别出八个假定的 miR156 和四个 miR157 编码基因座,其中四个形成多顺反子簇。虽然 miR156 和 miR157 水平在幼苗、叶片和幼花的花药中最高,但大多数 miR156 靶向的 SlySBP 基因在幼花序和果实发育及成熟过程中表达,表明在番茄生殖生长过程中具有特别重要的作用。所提供的数据为进一步阐明 SBP 框基因家族成员在番茄生长和发育中的各种功能提供了基础。