Department of Plant Systems Biology, VIB, B-9052 Ghent, Belgium.
Plant Cell. 2011 Nov;23(11):4013-24. doi: 10.1105/tpc.111.089565. Epub 2011 Nov 1.
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 α 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 α group Aurora kinases are functionally divergent from the single β 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 α Aurora kinases in regulating formative division plane orientation throughout development.
为了建立三维结构/器官,植物细胞必须以高度调控的方式不断适应其分裂面的方向。然而,分裂面方向转换的机制仍然难以捉摸。在这里,我们描述了拟南芥组α Aurora(AUR)激酶 AUR1 和 AUR2 的一个可行的双敲低突变体(aur1-2 aur2-2),其在侧根形成和生长方面存在主要缺陷。突变体分析表明,aur1-2 aur2-2 侧根原基是由随机定向的细胞分裂构建而成,而不是由不同的细胞层构建而成。这种表型可以追溯到胞质分裂缺陷和导致侧根原基的最初的垂周中皮层细胞分裂中错位的细胞板。互补测定表明,拟南芥α组 Aurora 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面方向中起作用。除了侧根模式缺陷外,aur1-2 aur2-2 植物在胚胎发生过程中定向形成性分裂、围绕主根干细胞龛的分裂以及围绕气孔形成的分裂中也存在缺陷。总之,我们的结果提出了α Aurora 激酶在整个发育过程中调节形成性分裂面方向的核心作用。