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SCHIZORIZA Controls Tissue System Complexity in Plants

机译:SCHIZORIZA控制植物的组织系统复杂性

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The formation of different tissue systems in multicellular organisms depends on the activity of groups of undifferentiated cells called stem cells [1]. In vascular plants, the three principal tissue systems dermal, ground, and vascular are derived from specific groups of stem cells that are laid down during embryogenesis [2, 3]. We show here that SCHIZORIZA (SCZ) is necessary for the early establishment of the stem cells that produce the ground tissue in the embryonic root meristem. Our results show that SCZ expression in stem cells is sufficient to maintain these cells in an undifferentiated stem cell state. Furthermore, we show that embryos that lack SCZ and SCARECROW (SCR) functions do not form a ground tissue because they do not develop ground tissue stem cells. We demonstrate that the formation of a complex tissue system requires the interaction between specific stem cell fate regulatory genes and patterning genes. Our study reveals a new function for a member of the heat-shock transcription factor family in stem cell development [4] and provides a molecular framework to understand stem cell formation during embryogenesis.
机译:多细胞生物中不同组织系统的形成取决于称为干细胞的未分化细胞群的活性[1]。在维管植物中,真皮,地面和维管这三个主要的组织系统来自特定的干细胞群,这些特定的干细胞在胚胎发生过程中被放置[2,3]。我们在这里显示SCHIZORIZA(SCZ)对于在胚胎根分生组织中产生地面组织的干细胞的早期建立是必需的。我们的结果表明,干细胞中SCZ的表达足以将这些细胞维持在未分化的干细胞状态。此外,我们表明缺乏SCZ和SCARECROW(SCR)功能的胚胎不会形成地面组织,因为它们不发育地面组织干细胞。我们证明了复杂的组织系统的形成需要特定的干细胞命运调控基因和模式基因之间的相互作用。我们的研究揭示了热休克转录因子家族成员在干细胞发育中的新功能[4],并提供了一个分子框架来了解胚胎发生过程中干细胞的形成。

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