Lee Ji-Young, Baum Stuart F, Alvarez John, Patel Amita, Chitwood Daniel H, Bowman John L
Section of Plant Biology, University of California Davis, Davis, California 95616, USA.
Plant Cell. 2005 Jan;17(1):25-36. doi: 10.1105/tpc.104.026666. Epub 2004 Dec 14.
CRABS CLAW (CRC), a member of the YABBY gene family, is required for nectary and carpel development. To further understand CRC regulation in Arabidopsis thaliana, we performed phylogenetic footprinting analyses of 5' upstream regions of CRC orthologs from three Brassicaceae species, including Arabidopsis. Phylogenetic footprinting efficiently identified functionally important regulatory regions (modules), indicating that CRC expression is regulated by a combination of positive and negative regulatory elements in the modules. Within the conserved modules, we identified putative binding sites of LEAFY and MADS box proteins, and functional in vivo analyses revealed their importance for CRC expression. Both expression and genetic studies demonstrate that potential binding sites for MADS box proteins within the conserved regions are functionally significant for the transcriptional regulation of CRC in nectaries. We propose that in wild-type flowers, a combination of floral homeotic gene activities, specifically the B class genes APETALA3 and PISTILLATA and the C class gene AGAMOUS act redundantly with each other and in combination with SEPALLATA genes to activate CRC in the nectaries and carpels. In the absence of B and C class gene activities, other genes such as SHATTERPROOF1/2 can substitute if they are ectopically expressed, as in an A class mutant background (apetala2). These MADS box proteins may provide general floral factors that must work in conjunction with specific factors in the activation of CRC in the nectaries and carpels.
蟹爪(CRC)是YABBY基因家族的成员,对蜜腺和心皮发育至关重要。为了进一步了解拟南芥中CRC的调控机制,我们对包括拟南芥在内的三种十字花科物种的CRC直系同源基因的5'上游区域进行了系统发育足迹分析。系统发育足迹分析有效地鉴定出了功能重要的调控区域(模块),表明CRC的表达受模块中正负调控元件的组合调控。在保守模块中,我们鉴定出了LEAFY和MADS盒蛋白的假定结合位点,体内功能分析揭示了它们对CRC表达的重要性。表达和遗传学研究均表明,保守区域内MADS盒蛋白的潜在结合位点对蜜腺中CRC的转录调控具有重要功能。我们提出,在野生型花中,花同源异型基因活性的组合,特别是B类基因APETALA3和PISTILLATA以及C类基因AGAMOUS彼此冗余作用,并与SEPALLATA基因共同作用,以激活蜜腺和心皮中的CRC。在缺乏B类和C类基因活性的情况下,其他基因如SHATTERPROOF1/2如果异位表达,就可以替代,如在A类突变体背景(apetala2)中。这些MADS盒蛋白可能提供一般的花因子,它们必须与特定因子协同作用,以激活蜜腺和心皮中的CRC。