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首页> 外文期刊>The Plant Cell >Arabidopsis alpha Aurora Kinases Function in Formative Cell Division Plane Orientation
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Arabidopsis alpha Aurora Kinases Function in Formative Cell Division Plane Orientation

机译:拟南芥α极光激酶在细胞形成分裂平面定向中的功能

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摘要

To establish three-dimensional structures/organs, plant cells continuously have to adapt the orientation of their division plane in a highly regulated manner. However, mechanisms underlying switches in division plane orientation remain elusive. Here, we characterize a viable double knockdown mutant in Arabidopsis thaliana group alpha Aurora (AUR) kinases, AUR1 and AUR2, (aur1-2 aur2-2), with a primary defect in lateral root formation and outgrowth. Mutant analysis revealed that aur1-2 aur2-2 lateral root primordia are built from randomly oriented cell divisions instead of distinct cell layers. This phenotype could be traced back to cytokinesis defects and misoriented cell plates during the initial anticlinal pericycle cell divisions that give rise to lateral root primordia. Complementation assays showed that the Arabidopsis alpha group Aurora kinases are functionally divergent from the single beta group member AUR3 and that AUR1 functions in division plane orientation prior to cytokinesis. In addition to defective lateral root patterning, aur1-2 aur2-2 plants also show defects in orienting formative divisions during embryogenesis, divisions surrounding the main root stem cell niche, and divisions surrounding stomata formation. Taken together, our results put forward a central role for alpha Aurora kinases in regulating formative division plane orientation throughout development.
机译:为了建立三维结构/器官,植物细胞必须以高度受控的方式连续适应其分裂平面的方向。但是,在分割平面方向上进行切换的基础机制仍然难以捉摸。在这里,我们表征拟南芥中的一个可行的双敲除突变体组α极光(AUR)激酶,AUR1和AUR2,(aur1-2 aur2-2),在侧根形成和生长方面存在主要缺陷。突变分析显示aur1-2 aur2-2侧根原基是由随机定向的细胞分裂而不是不同的细胞层构建的。这种表型可以追溯到最初的抗斜周周细胞分裂过程中引起侧根原基的胞质分裂缺陷和细胞板取向错误。补充测定显示,拟南芥α组极光激酶在功能上与单个β组成员AUR3不同,并且AUR1在胞质分裂之前在分裂平面方向起作用。除了有缺陷的侧根构图外,aur1-2 aur2-2植物还显示出在胚胎发生过程中定向形成区,主要根干细胞生态位周围的区和气孔形成周围的区的缺陷。综上所述,我们的结果提出了αAurora激酶在整个发育过程中对形成性分裂平面方向的调节中的重要作用。

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