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ARABIDOPSIS THALIANA HOMEOBOX GENE1 Establishes the Basal Boundaries of Shoot Organs and Controls Stem Growth

机译:拟南芥THALIANA HOMEOBOX GENE1建立了芽器官的基础边界并控制茎的生长

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摘要

Apical meristems play a central role in plant development. Self-renewing cells in the central region of the shoot meristem replenish the cell population in the peripheral region, where organ primordia emerge in a predictable pattern, and in the underlying rib meristem, where new stem tissue is formed. While much is known about how organ primordia are initiated and their lateral boundaries established, development at the interface between the stem and the meristem or the lateral organs is poorly understood. Here, we show that the BELL-type ARABIDOPSIS THALIANA HOMEOBOX GENE1 (ATH1) is required for proper development of the boundary between the stem and both vegetative and reproductive organs and that this role partially overlaps with that of CUP-SHAPED COTYLEDON genes. During the vegetative phase, ATH1 also functions redundantly with light-activated genes to inhibit growth of the region below the shoot meristem. Consistent with a role in inhibiting stem growth, ATH1 is downregulated at the start of inflorescence development and ectopic ATH1 expression prevents growth of the inflorescence stem by reducing cell proliferation. Thus, ATH1 modulates growth at the interface between the stem, meristem, and organ primordia and contributes to the compressed vegetative habit of Arabidopsis thaliana.
机译:顶端分生组织在植物发育中起核心作用。分枝分生组织中心区域的自我更新细胞可补充外围区域的细胞种群,在外围区域中器官原基以可预测的方式出现,而在其下方的肋状分生组织中则形成新的干组织。尽管人们对器官原基是如何开始的以及它们的侧向边界是如何建立的知之甚少,但人们对茎与分生组织或侧向器官之间的界面处的发育却知之甚少。在这里,我们表明,BELL型拟南芥同源框基因1(ATH1)是茎与营养器官和生殖器官之间边界的正确发育所必需的,并且该作用与CUP形COTYLEDON基因的作用部分重叠。在营养阶段,ATH1还可以与光激活基因一起发挥多余功能,从而抑制分生组织下方区域的生长。 ATH1具有抑制茎生长的作用,在花序发育开始时就被下调,而异位ATH1表达则通过减少细胞增殖来阻止花序茎的生长。因此,ATH1调节茎,分生组织和器官原基之间的界面处的生长,并有助于拟南芥的压缩营养习性。

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