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WOX11 and 12 Are Involved in the First-Step Cell Fate Transition during de Novo Root Organogenesis in Arabidopsis

机译:WOX11和12参与拟南芥从头开始器官发生过程中的第一步细胞命运转变。

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摘要

De novo organogenesis is a process through which wounded or detached plant tissues or organs regenerate adventitious roots and shoots. Plant hormones play key roles in de novo organogenesis, whereas the mechanism by which hormonal actions result in the first-step cell fate transition in the whole process is unknown. Using leaf explants of Arabidopsis thaliana, we show that the homeobox genes WUSCHEL RELATED HOMEOBOX11 (WOX11) and WOX12 are involved in de novo root organogenesis. WOX11 directly responds to a wounding-induced auxin maximum in and surrounding the procambium and acts redundantly with its homolog WOX12 to upregulate LATERAL ORGAN BOUNDARIES DOMAIN16 (LBD16) and LBD29, resulting in the first-step cell fate transition from a leaf procambium or its nearby parenchyma cell to a root founder cell. In addition, our results suggest that de novo root organogenesis and callus formation share a similar mechanism at initiation.
机译:从头器官发生是一个过程,通过该过程,受伤或分离的植物组织或器官再生不定根和芽。植物激素在从头器官发生中起关键作用,而激素作用在整个过程中导致第一步细胞命运转变的机制尚不清楚。使用拟南芥叶外植体,我们表明同源盒基因WUSCHEL相关HOMEOBOX11(WOX11)和WOX12参与从头根器官发生。 WOX11直接响应于该病原菌及其周围的伤口诱导的生长素最大值,并与其同系物WOX12冗余地起作用,以上调横向器官边界域16(LBD16)和LBD29,导致第一步细胞命运从叶原菌或其附近转变。薄壁组织细胞到根创始细胞。此外,我们的结果表明,从头开始的根器官发生和愈伤组织形成在启动时具有相似的机制。

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