Fornara Fabio, Gregis Veronica, Pelucchi Nilla, Colombo Lucia, Kater Martin
Università degli Studi di Milano, Dipartimento di Biologia, Via Celoria 26, I-20133 Milan, Italy.
J Exp Bot. 2008;59(8):2181-90. doi: 10.1093/jxb/ern083. Epub 2008 May 2.
During floral induction and flower development plants undergo delicate phase changes which are under tight molecular control. MADS-box transcription factors have been shown to play pivotal roles during these transition phases. SHORT VEGETATIVE PHASE (SVP) and AGAMOUS LIKE 24 (AGL24) are important regulators both during the transition to flowering and during flower development. During vegetative growth they exert opposite roles on floral transition, acting as repressor and promoter of flowering, respectively. Later during flower development they act redundantly as negative regulators of AG expression. In rice, the orthologues of SVP and AGL24 are OsMADS22, OsMADS47, and OsMADS55 and these three genes are involved in the negative regulation of brassinosteroid responses. In order to understand whether these rice genes have maintained the ability to function as regulators of flowering time in Arabidopsis, complementation tests were performed by expressing OsMADS22 and OsMADS47 in the svp and agl24 mutants. The results show that the rice genes are not able to complement the flowering-time phenotype of the Arabidopsis mutants, indicating that they are biologically inactive in Arabidopsis. Nevertheless, they cause floral reversions, which mimic the SVP and AGL24 floral overexpressor phenotypes. Yeast two-hybrid analysis suggests that these floral phenotypes are probably the consequence of protein interactions between OsMADS22 and OsMADS47 and other MADS-box proteins which interfere with the formation of complexes required for normal flower development.
在成花诱导和花发育过程中,植物会经历精细的阶段变化,这些变化受到严格的分子调控。MADS盒转录因子已被证明在这些转变阶段发挥关键作用。SHORT VEGETATIVE PHASE(SVP)和AGAMOUS LIKE 24(AGL24)在开花转变和花发育过程中都是重要的调节因子。在营养生长阶段,它们在花转变中发挥相反的作用,分别作为开花的抑制因子和促进因子。在花发育后期,它们作为AG表达的负调节因子发挥冗余作用。在水稻中,SVP和AGL24的直系同源基因是OsMADS22、OsMADS47和OsMADS55,这三个基因参与油菜素内酯反应的负调控。为了了解这些水稻基因是否保留了在拟南芥中作为开花时间调节因子的功能,通过在svp和agl24突变体中表达OsMADS22和OsMADS47进行了互补试验。结果表明,水稻基因不能互补拟南芥突变体的开花时间表型,表明它们在拟南芥中无生物学活性。然而,它们会导致花逆转,这与SVP和AGL24花过表达表型相似。酵母双杂交分析表明,这些花表型可能是OsMADS22和OsMADS47与其他MADS盒蛋白之间蛋白质相互作用的结果,这些相互作用干扰了正常花发育所需复合物的形成。