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Ectopic KNOX Expression Affects Plant Development by Altering Tissue Cell Polarity and Identity

机译:异位诺克斯表达通过改变组织细胞极性和身份来影响植物开发

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Plant development involves two polarity types: tissue cell (asymmetries within cells are coordinated across tissues) and regional (identities vary spatially across tissues) polarity. Both appear altered in the barley (Hordeum vulgare) Hooded mutant, in which ectopic expression of the KNOTTED1-like Homeobox (KNOX) gene, BKn3, causes inverted polarity of differentiated hairs and ectopic flowers, in addition to wing-shaped outgrowths. These lemma-specific effects allow the spatiotemporal analysis of events following ectopic BKn3 expression, determining the relationship between KNOXs, polarity, and shape. We show that tissue cell polarity, based on localization of the auxin transporter SISTER OF PINFORMED1 (SoPIN1), dynamically reorients as ectopic BKn3 expression increases. Concurrently, ectopic expression of the auxin importer LIKE AUX1 and boundary gene NO APICAL MERISTEM is activated. The polarity of hairs reflects SoPIN1 patterns, suggesting that tissue cell polarity underpins oriented cell differentiation. Wing cell files reveal an anisotropic growth pattern, and computational modeling shows how polarity guiding growth can account for this pattern and wing emergence. The inverted ectopic flower orientation does not correlate with SoPIN1, suggesting that this form of regional polarity is not controlled by tissue cell polarity. Overall, the results suggest that KNOXs trigger different morphogenetic effects through interplay between tissue cell polarity, identity, and growth.
机译:植物发育涉及两种极性类型:组织细胞(细胞内的不对称)(在组织中协调)和区域(身份在空间上横跨组织)极性。除了翼状的产物之外,两者均出现在大麦(Hordeum Vulgare)连帽突变体中改变,其中,除了翼状的产物外,均匀的毛发和异位花的异位表达引起分化毛发和异位花的倒置极性。这些引理的特异性效果允许异位BKN3表达后的发生事件的时空分析,确定旋钮,极性和形状之间的关系。我们表明组织细胞极性,基于磁化性1(SOPIN1)的植物素转运蛋白的定位,随着异位BKN3表达的动态重新定位。同时,像Aux1和边界基因这样的蟾蜍素进口商的异位表达没有激活顶端单位。毛发的极性反映了SOPIN1模式,表明组织细胞极性是面向导向细胞分化的基础。翼单元文件揭示了各向异性的生长模式,计算建模显示了极性引导增长如何占这种模式和机翼的出现。倒异位花的取向与SOPIN1不相关,表明这种形式的区域极性不受组织细胞极性的控制。总体而言,结果表明,knoxs通过组织细胞极性,身份和生长之间的相互作用来引发不同的形态发生效果。

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    《The Plant Cell》 |2016年第9期|共18页
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  • 正文语种 eng
  • 中图分类 植物细胞学;
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