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Polarity in plant asymmetric cell division: Division orientation and cell fate differentiation

机译:植物不对称细胞分裂的极性:分区方向和细胞命运分化

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摘要

Asymmetric cell division (ACD) is universally required for the development of multicellular organisms. Unlike animal cells, plant cells have a rigid cellulosic extracellular matrix, the cell wall, which provides physical support and forms communication routes. This fundamental difference leads to some unique mechanisms in plants for generating asymmetries during cell division. However, plants also utilize intrinsically polarized proteins to regulate asymmetric signaling and cell division, a strategy similar to the differentiation mechanism found in animals. Current progress suggests that common regulatory modes, i.e. protein spontaneous clustering and cytoskeleton reorganization, underlie protein polarization in both animal and plant cells. Despite these commonalities, it is important to note that intrinsic mechanisms in plants are heavily influenced by extrinsic cues. To control physical asymmetry in cell division, although our understanding is fragmentary thus far, plants might have evolved novel polarization strategies to orientate cell division plane. Recent studies also suggest that the phytohormone auxin, one of the most pivotal small molecules in plant development, regulates ACD in plants.
机译:多细胞生物的发展普遍需要不对称细胞分裂(ACD)。与动物细胞不同,植物细胞具有刚性的纤维素细胞外基质,即细胞壁,可提供物理支持并形成通讯路径。这种根本的差异导致植物中某些独特的机制在细胞分裂过程中产生不对称性。然而,植物还利用内在极化的蛋白质来调节不对称信号传导和细胞分裂,这种策略类似于动物体内的分化机制。当前的进展表明,常见的调节模式,即蛋白质自发簇集和细胞骨架重组,是动植物细胞中蛋白质极化的基础。尽管存在这些共同点,但重要的是要注意到植物的内在机制受外部信号的影响很大。为了控制细胞分裂中的物理不对称性,尽管到目前为止我们的理解还很零散,但植物可能已经进化出新颖的极化策略来定向细胞分裂平面。最近的研究还表明植物激素生长素是植物发育中最关键的小分子之一,它调节植物中的ACD。

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