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Differential Recruitment of WOX Transcription Factors for Lateral Development and Organ Fusion in Petunia and Arabidopsis.

机译:矮牵牛和拟南芥横向发育和器官融合的WOX转录因子的差异招募。

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Petal fusion in petunia (Petunia x hybrida) results from lateral expansion of the five initially separate petal primordia, forming a ring-like primordium that determines further development. Here, we show that MAEWEST (MAW) and CHORIPETALA SUZANNE (CHSU) are required for petal and carpel fusion, as well as for lateral outgrowth of the leaf blade. Morphological and molecular analysis of maw and maw chsu double mutants suggest that polarity defects along the adaxial/abaxial axis contribute to the observed reduced lateral outgrowth of organ primordia. We show that MAW encodes a member of the WOX (WUSCHEL-related homeobox) transcription factor family and that a partly similar function is redundantly encoded by WOX1 and PRESSED FLOWER (PRS) in Arabidopsis thaliana, indicating a conserved role for MAW/WOX1/PRS genes in regulating lateral organ development. Comparison of petunia maw and Arabidopsis wox1 prs phenotypes suggests differential recruitment of WOX gene function depending on organ type and species. Our comparative data together with previous reports on WOX gene function in different species identify the WOX gene family as highly dynamic and, therefore, an attractive subject for future evo-devo studies.
机译:矮牵牛(Petunia x hybrida)的花瓣融合来自五个最初分开的花瓣原基的横向扩展,形成了决定进一步发育的环状原基。在这里,我们显示花瓣和心皮融合以及叶片的横向向外生长需要MAEWEST(MAW)和CHORIPETALA SUZANNE(CHSU)。花胶和花胶双突变体的形态学和分子分析表明,沿前后轴的极性缺陷有助于观察到的器官原基的横向向外减少。我们显示,MAW编码WOX(与WUSCHEL相关的同源异型盒)转录因子家族的成员,并且部分相似的功能由拟南芥WOX1和PRESSED FLOWER(PRS)冗余编码,表明MAW / WOX1 / PRS的保守作用基因调节侧器官发育。矮牵牛花胶和拟南芥wox1 prs表型的比较表明,取决于器官类型和种类,WOX基因功能的差异募集。我们的比较数据以及有关不同物种中WOX基因功能的先前报道表明,WOX基因家族具有高度的动态性,因此,是未来evo-devo研究的一个有吸引力的主题。

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