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Uncovering the networks involved in stem cell maintenance and asymmetric cell division in the Arabidopsis root

机译:发现拟南芥根中涉及干细胞维持和不对称细胞分裂的网络

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摘要

Stem cells are the source of different cell types and tissues in all multicellular organisms. In plants, the balance between stem cell self-renewal and differentiation of their progeny is crucial for correct tissue and organ formation. How transcriptional programs precisely control stem cell maintenance and identity, and what are the regulatory programs influencing stem cell asymmetric cell division (ACD), are key questions that researchers have sought to address for the past decade. Successful efforts in genetic, molecular, and developmental biology, along with mathematical modeling, have identified some of the players involved in stem cell regulation. In this review, we will discuss several studies that characterized many of the genetic programs and molecular mechanisms regulating stem cell ACD and their identity in the Arabidopsis root. We will also highlight how the growing use of mathematical modeling provides a comprehensive and quantitative perspective on the design rules governing stem cell ACDs.
机译:干细胞是所有多细胞生物中不同细胞类型和组织的来源。在植物中,干细胞自我更新与后代分化之间的平衡对于正确的组织和器官形成至关重要。转录程序如何精确地控制干细胞的维持和身份,以及哪些影响干细胞非对称细胞分裂(ACD)的调节程序,是研究人员在过去十年中一直寻求解决的关键问题。在遗传,分子和发育生物学以及数学建模方面的成功努力已经确定了参与干细胞调控的一些参与者。在这篇综述中,我们将讨论几项研究,这些研究表征了调控干细胞ACD及其在拟南芥根中的身份的许多遗传程序和分子机制。我们还将重点介绍如何越来越多地使用数学模型来提供关于干细胞ACD的设计规则的全面和定量的观点。

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