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The establishment of axial patterning in the maize leaf.

机译:在玉米叶片中建立轴向模式。

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The maize leaf consists of four distinct tissues along its proximodistal axis: sheath, ligule, auricle and blade. liguleless1 (lg1) functions cell autonomously to specify ligule and auricle, and may propagate a signal that correctly positions the blade-sheath boundary. The dominant Wavy auricle in blade (Wab1) mutation disrupts both the mediolateral and proximodistal axes of the maize leaf. Wab1 leaf blades are narrow and ectopic auricle and sheath extend into the blade. The recessive lg1-R mutation exacerbates the Wab1 phenotype; in the double mutants, most of the proximal blade is deleted and sheath tissue extends along the residual blade. We show that lg1 is misexpressed in Wab1 leaves. Our results suggest that the Wab1 defect is partially compensated for by lg1 expression. A mosaic analysis of Wab1 was conducted in Lg1+ and lg1-R backgrounds to determine if Wab1 affects leaf development in a cell-autonomous manner. Normal tissue identity was restored in all wab1+/- sectors in a lg1-R mutant background, and in three quarters of sectors in a Lg1+ background. These results suggest that lg1 can influence the autonomy of Wab1. In both genotypes, leaf-halves with wab1+/- sectors were significantly wider than non-sectored leaf-halves, suggesting that Wab1 acts cell-autonomously to affect lateral growth. The mosaic analysis, lg1 expression data and comparison of mutant leaf shapes reveal previously unreported functions of lg1 in both normal leaf development and in the dominant Wab1 mutant.
机译:玉米叶沿其近前轴由四个不同的组织组成:鞘,叶舌,耳廓和叶片。 liguleless1(lg1)自主发挥细胞功能,以指定叶舌和耳廓,并可以传播正确定位叶片鞘边界的信号。叶片中主要的波浪形耳廓(Wab1)突变破坏了玉米叶片的中外侧和近侧轴。 Wab1叶片较窄,异位耳廓和鞘延伸到叶片中。隐性的lg1-R突变会加剧Wab1的表型。在双突变体中,大部分近端刀片被删除,鞘组织沿残留刀片延伸。我们显示lg1在Wab1叶子中表达错误。我们的结果表明,Wab1缺陷可通过lg1表达部分补偿。在Lg1 +和lg1-R背景下进行Wab1的镶嵌分析,以确定Wab1是否以细胞自主方式影响叶片发育。在lg1-R突变体背景下的所有wab1 +/-区段中恢复了正常的组织身份,在Lg1 +背景中的四分之三的区段中恢复了正常的组织身份。这些结果表明lg1可以影响Wab1的自治。在这两种基因型中,具有wab1 +/-区段的叶半部明显比未区段的叶半部宽,这表明Wab1在细胞自主作用下影响侧向生长。镶嵌分析,lg1表达数据和突变叶片形状的比较揭示了正常叶片发育和显性Wab1突变体中lg1以前未报道的功能。

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