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The TORMOZ gene encodes a nucleolar protein required for regulated division planes and embryo development in Arabidopsis

机译:TORMOZ基因编码拟南芥中调控分裂平面和胚胎发育所需的核仁蛋白。

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Embryogenesis in Arabidopsis thaliana is marked by a predictable sequence of oriented cell divisions, which precede cell fate determination. We show that mutation of the TORMOZ (TOZ) gene yields embryos with aberrant cell division planes and arrested embryos that appear not to have established normal patterning. The defects in toz mutants differ from previously described mutations that affect embryonic cell division patterns. Longitudinal division planes of the proembryo are frequently replaced by transverse divisions and less frequently by oblique divisions, while divisions of the suspensor cells, which divide only transversely, appear generally unaffected. Expression patterns of selected embryo patterning genes are altered in the mutant embryos, implying that the positional cues required for their proper expression are perturbed by the misoriented divisions. The TOZ gene encodes a nucleolar protein containingWDrepeats. Putative TOZ orthologs exist in other eukaryotes including Saccharomyces cerevisiae, where the protein is predicted to function in 18S rRNA biogenesis. Wefind that disruption of the Sp TOZ gene results in cell division defects in Schizosaccharomyces pombe. Previous studies in yeast and animal cells have identified nucleolar proteins that regulate the exit from Mphase and cytokinesis, including factors involved in pre rRNA processing. Our study suggests that in plant cells, nucleolar functions might interact with the processes of regulated cell divisions and influence the selection of longitudinal division planes during embryogenesis.
机译:拟南芥的胚发生以定向的细胞分裂的可预测序列为标志,该序列在细胞命运确定之前。我们显示,TORMOZ(TOZ)基因的突变产生具有异常细胞分裂平面和似乎没有建立正常模式的被捕胚胎。 toz突变体的缺陷不同于先前描述的影响胚胎细胞分裂模式的突变。前胚的纵向分割平面经常被横向分割所取代,而较少地被倾斜分割所取代,而仅横向分割的悬置细胞的分割通常似乎不受影响。选定的胚胎模式基因的表达模式在突变的胚胎中发生了变化,这意味着它们正确表达所需的位置提示会受到方向错误的干扰。 TOZ基因编码包含WDrepeats的核仁蛋白。推测的TOZ直系同源物存在于其他真核生物中,包括酿酒酵母,其中该蛋白预计在18S rRNA生物发生中起作用。我们发现Sp TOZ基因的破坏会导致粟酒裂殖酵母中的细胞分裂缺陷。先前在酵母和动物细胞中的研究已经确定了调节Mphase和胞质分裂退出的核仁蛋白,包括参与rRNA前加工的因子。我们的研究表明,在植物细胞中,核仁功能可能与受调控的细胞分裂过程相互作用,并影响胚胎发生过程中纵向分裂平面的选择。

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