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The microRNA regulated SBP-box genes SPL9 and SPL15 control shoot maturation in Arabidopsis

机译:microRNA调控的SBP-box基因SPL9和SPL15控制拟南芥的茎成熟

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摘要

Throughout development the Arabidopsis shoot apical meristem successively undergoes several major phase transitions such as the juvenile-to-adult and floral transitions until, finally, it will produce flowers instead of leaves and shoots. Members of the Arabidopsis SBP-box gene family of transcription factors have been implicated in promoting the floral transition in dependence of miR156 and, accordingly, transgenics constitutively over-expressing this microRNA are delayed in flowering. To elaborate their roles in Arabidopsis shoot development, we analysed two of the 11 miR156 regulated Arabidopsis SBP-box genes, i.e. the likely paralogous genes SPL9 and SPL15. Single and double mutant phenotype analysis showed these genes to act redundantly in controlling the juvenile-to-adult phase transition. In addition, their loss-of-function results in a shortened plastochron during vegetative growth, altered inflorescence architecture and enhanced branching. In these aspects, the double mutant partly phenocopies constitutive MIR156b over-expressing transgenic plants and thus a major contribution to the phenotype of these transgenics as a result of the repression of SPL9 and SPL15 is strongly suggested.
机译:在整个发育过程中,拟南芥的芽顶分生组织先后经历了几个主要的相变,例如从幼虫到成虫和花的转变,直到最终将产生花而不是叶和芽。拟南芥SBP-box基因转录因子家族成员参与了依赖miR156促进花型转化,因此,组成型过表达这种microRNA的转基因植物的开花被延迟。为了阐明它们在拟南芥芽发育中的作用,我们分析了11个miR156调控的拟南芥SBP-box基因中的两个,即可能的旁系同源基因SPL9和SPL15。单突变体和双突变体表型分析表明,这些基因在控制青少年到成人的相变中起冗余作用。另外,它们的功能丧失导致营养生长过程中的质体同步时间缩短,花序结构改变和分支增强。在这些方面,强烈建议双突变体部分表型组成型MIR156b过表达转基因植物,因此强烈建议通过抑制SPL9和SPL15对这些转基因的表型做出重大贡献。

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