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UFO in the Arabidopsis inflorescence apex is required for floral-meristem identity and bract suppression

机译:拟南芥花序先端的不明飞行物对于花分生组织身份和片抑制是必需的

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The UNUSUAL FLORAL ORGANS (UFO) gene of Arabidopsis encodes an F-box protein required for the determination of floral-organ and floral-meristem identity. Mutation of UFO leads to dramatic changes in floral-organ type which are well-characterized whereas inflorescence defects are more subtle and less understood. These defects include an increase in the number of secondary inflorescences, nodes that alternate between forming flowers and secondary inflorescences, and nodes in which a single flower is subtended by a bract. Here, we show how inflorescence defects correlate with the abnormal development of floral primordia and establish a temporal requirement for UFO in this process. At the inflorescence apex of ufo mutants, newly formed primordia are initially bract-like. Expression of the floral-meristem identity genes LFY and AP1 are confined to a relatively small adaxial region of these primordia with expression of the bract-identity marker FIL observed in cells that comprise the balance of the primordia. Proliferation of cells in the adaxial region of these early primordia is delayed by several nodes such that primordia appear “chimeric” at several nodes, having visible floral and bract components. However, by late stage 2 of floral development, growth of the bract generally ceases and is overtaken by development of the floral primordium. This abnormal pattern of floral meristem development is not rescued by expression of UFO from the AP1 promoter, indicating that UFO is required prior to AP1 activation for normal development of floral primordia. We propose that UFO and LFY are jointly required in the inflorescence meristem to both promote floral meristem development and inhibit, in a non-cell autonomous manner, growth of the bract.
机译:拟南芥的非同寻常的花器官(UFO)基因编码一个确定花器官和花分生组织身份所需的F-box蛋白。不明飞行物的突变导致花器官类型发生显着变化,这些变化具有很好的特征,而花序缺陷则更加微妙,人们对它的了解也较少。这些缺陷包括次级花序数量的增加,在形成花和次级花序之间交替的节,以及其中单个花被a片包围的节。在这里,我们显示花序缺陷如何与花卉原基的异常发育相关,并在此过程中建立对UFO的时间要求。在ufo突变体的花序先端,新形成的原基最初是片状的。花分生组织同一性基因LFY和AP1的表达被限制在这些原基的相对较小的近端区域,并且在组成原基平衡的细胞中观察到了act片身份标记FIL的表达。这些早期原基的近轴区域中的细胞增殖被数个节点延迟,使得原基在几个节点出现“嵌合”的,具有可见的花和and片成分。然而,到花发育的第二阶段,the片的生长通常停止并且被花原基的发育所取代。从AP1启动子上表达UFO并不能挽救这种异常的花分生组织发育模式,这表明在将AP1激活之前,花序原基的正常发育需要UFO。我们建议在花序分生组织中共同需要UFO和LFY,以促进花分生组织的发育并以非细胞自主方式抑制the片的生长。

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