Schorderet M, Duvvuru Muni R R, Fiebig A, Reinhardt Didier
a Dept. of Biology , University of Fribourg , Fribourg , Switzerland.
c Monsanto Holdings Private Limited, Mfar Manyata Tech Park, Nagavara , Bangalore , India.
Plant Signal Behav. 2018;13(6):e1471299. doi: 10.1080/15592324.2018.1471299. Epub 2018 Jul 11.
Angiosperm inflorescences develop in two fundamentally different ways. In monopodial plants, for example in Arabidopsis thaliana, the flowers are initiated as lateral appendages of a central indeterminate inflorescence meristem. In sympodial plants, flowers arise by terminal differentiation of the inflorescence meristem, while further inflorescence development proceeds from new sympodial meristems that are generated at the flank of the terminal flower. We have used the sympodial model species Petunia hybrida to investigate inflorescence development. Here, we describe a mutant, bonsai (bns), which is defective in flower formation, inflorescence branching, and control of meristem size. Detailed microscopic analysis revealed that bns meristems retain vegetative charateristics including spiral phyllotaxis. Consistent with a block in flower formation, bns mutants exhibit a deregulated expression of various MADS-box genes. Molecular analysis revealed that the bns mutant carries a transposon insertion in the previously described EVERGREEN (EVG) gene, which belongs to the WUSCHEL-LIKE HOMEOBOX (WOX) transcription factor gene family. EVG falls in the WOX9 subfamily, which has diverse developmental functions in angiosperms. The comparison of WOX9 orthologues in five model species for flowering shows that these genes play functionally divergent roles in monopodial and sympodial plants, indicating that the WOX9 regulatory node may have played an important role in the evolution of shoot architecture.
被子植物的花序以两种根本不同的方式发育。在单轴植物中,例如拟南芥,花作为中央无限花序分生组织的侧生附属物起始。在合轴植物中,花通过花序分生组织的顶端分化产生,而进一步的花序发育则从在顶花侧面产生的新合轴分生组织开始。我们利用合轴模式植物矮牵牛来研究花序发育。在此,我们描述了一个突变体bonsai(bns),它在花形成、花序分支和分生组织大小控制方面存在缺陷。详细的显微镜分析表明,bns分生组织保留了包括螺旋叶序在内的营养特征。与花形成受阻一致,bns突变体表现出各种MADS-box基因的表达失调。分子分析表明,bns突变体在先前描述的EVERGREEN(EVG)基因中携带一个转座子插入,该基因属于WUSCHEL-LIKE HOMEOBOX(WOX)转录因子基因家族。EVG属于WOX9亚家族,其在被子植物中具有多种发育功能。对五种开花模式物种中WOX9直系同源基因的比较表明,这些基因在单轴和合轴植物中发挥着功能不同的作用,这表明WOX9调控节点可能在茎结构的进化中发挥了重要作用。