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BASL Controls Asymmetric Cell Division in Arabidopsis

机译:BASL控制拟南芥中的不对称细胞分裂

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Development in multicellular organisms requires the organized generation of differences. A universal mechanism for creating such differences is asymmetric cell division. In plants, as in animals, asymmetric divisions are correlated with the production of cellular diversity and pattern; however, structural constraints imposed by plant cell walls and the absence of homologs of known animal or fungal cell polarity regulators necessitates that plants utilize new molecules and mechanisms to create asymmetries. Here, we identify BASL, a novel regulator of asymmetric divisions in Arabidopsis. In asymmetrically dividing stomatal-lineage cells, BASL accumulates in a polarized crescent at the cell periphery before division, and then localizes differentially to the nucleus and a peripheral crescent in self-renewing cells and their sisters after division. BASL presence at the cell periphery is critical for its function, and we propose that BASL represents a plant-specific solution to the challenge of asymmetric cell division.
机译:多细胞生物的发展需要有组织地产生差异。产生这种差异的通用机制是不对称细胞分裂。在植物中和在动物中一样,不对称的分裂与细胞多样性和模式的产生有关。然而,植物细胞壁所施加的结构限制以及已知动物或真菌细胞极性调节剂的同源物的缺失,都要求植物利用新的分子和机制来产生不对称性。在这里,我们确定了BASL,拟南芥中不对称分裂的新型调节剂。在不对称分裂的气孔谱系细胞中,BASL在分裂前聚集在细胞周围的极化新月形中,然后在分裂后在自我更新的细胞及其姐妹中差异性地定位于细胞核和外周新月形。 BASL在细胞外围的存在对其功能至关重要,我们建议BASL代表一种针对不对称细胞分裂挑战的特定于植物的解决方案。

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