REVOLUTA regulates meristem initiation at lateral positions.

Denichiro Otsuga, B. DeGuzman, Michael J. Prigge, G. N. Drews, Steven E. Clark
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引用次数: 415

Abstract

While the shoot apical meristem (SAM) is indirectly responsible for the initiation of all above-ground postembryonic organs, in most plants the vast majority of these organs are directly initiated by lateral meristems. In Arabidopsis thaliana, the lateral meristems include flower meristems (FMs), which form on the flanks of the SAM, and lateral shoot meristems (LSMs), which develop in leaf axils. While significant progress has been made on the molecular genetic basis of SAM initiation during embryo development, relatively little is known about the initiation of meristems at lateral positions. Here we have characterized the phenotypic consequences and genetic interactions of mutations in the REVOLUTA (REV) gene, with an emphasis on the role of REV in lateral meristem initiation. Our observations indicate that REV is required for initiation of both LSMs and FMs, and likely acts in the same pathway as, and upstream of, known meristem regulators. We identified the REV gene and found it encodes a predicted homeodomain/leucine zipper transcription factor that also contains a START sterol-lipid binding domain. REV is the same as the IFL gene. REV was expressed at the earliest stages of LSM and FM formation. Within the inflorescence shoot meristem, REV expression appeared to predict 3--5 incipient flower primordia on the flanks of the SAM, and REV expression at stage 1 and stage 2 matched that of WUS and STM, respectively. We propose that REV acts at lateral positions to activate the expression of known meristem regulators.
REVOLUTA调节分生组织在侧位的起始。
虽然茎尖分生组织(SAM)间接负责所有地上胚芽后器官的形成,但在大多数植物中,绝大多数这些器官都是由侧面分生组织直接形成的。拟南芥的侧生分生组织包括花分生组织(FMs)和侧生芽分生组织(lsm),前者形成于SAM的侧面,后者发育于叶腋。虽然在胚胎发育过程中SAM启动的分子遗传学基础上取得了重大进展,但对侧边位置分生组织的启动知之甚少。在这里,我们描述了REVOLUTA (REV)基因突变的表型后果和遗传相互作用,重点是REV在侧分生组织起始中的作用。我们的观察表明,REV对于lsm和FMs的启动都是必需的,并且可能与已知的分生组织调节因子在相同的途径中起作用。我们鉴定了REV基因,发现它编码一个预测的同源结构域/亮氨酸拉链转录因子,该转录因子也包含一个START固醇脂结合结构域。REV与IFL基因相同。REV在LSM和FM形成的最早阶段表达。在花序茎的分生组织中,REV的表达可以预测SAM侧翼3—5个初生花原基,并且在第1期和第2期的REV表达分别与WUS和STM相匹配。我们建议REV在横向位置激活已知分生组织调节因子的表达。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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