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三个拟南芥 AIL/PLT 基因协同调控茎尖分生组织的功能。

Three Arabidopsis AIL/PLT genes act in combination to regulate shoot apical meristem function.

机构信息

Department of Biological Sciences, University of South Carolina, Columbia, SC 29208, USA.

出版信息

Plant J. 2012 Jul;71(1):108-21. doi: 10.1111/j.1365-313X.2012.04975.x. Epub 2012 Apr 30.

Abstract

The shoot apical meristem, a small dome-shaped structure at the shoot apex, is responsible for the initiation of all post-embryonic shoot organs. Pluripotent stem cells within the meristem replenish themselves and provide daughter cells that become incorporated into lateral organ primordia around the meristem periphery. We have identified three novel regulators of shoot apical meristem activity in Arabidopsis thaliana that encode related AIL/PLT transcription factors: AINTEGUMENTA (ANT), AINTEGUMENTA-LIKE6 (AIL6)/PLETHORA3 (PLT3) and AINTEGUMENTA-LIKE7 (AIL7)/PLETHORA7 (PLT7). Loss of these genes results in plants that initiate only a few leaves prior to termination of shoot apical meristem activity. In 7-day-old ant ail6 ail7 seedlings, we observed reduced cell division in the meristem region, differentiation of meristematic cells and altered expression of the meristem regulators WUSCHEL (WUS), CLAVATA3 (CLV3) and SHOOT MERISTEMLESS (STM). Genetic experiments suggest that these three AIL genes do not act specifically in either the WUS/CLV or STM pathway regulating meristem function. Furthermore, these studies indicate that ANT, AIL6 and AIL7 have distinct functions within the meristem rather than acting in a strictly redundant manner. Our study thus identifies three new genes whose distinct functions are together required for continuous shoot apical meristem function.

摘要

茎尖分生组织是茎尖的一个小型穹顶状结构,负责启动所有胚胎后茎器官的发生。分生组织内的多能干细胞自我补充,并提供成为分生组织周围侧生器官原基一部分的子细胞。我们在拟南芥中鉴定了三个新的茎尖分生组织活性调节因子,它们编码相关的 AIL/PLT 转录因子:覆盖蛋白(ANT)、覆盖蛋白类似物 6(AIL6)/多效性 3(PLT3)和覆盖蛋白类似物 7(AIL7)/多效性 7(PLT7)。这些基因的缺失导致植物在茎尖分生组织活动结束前仅启动少数几片叶子。在 7 天大的 ant ail6 ail7 幼苗中,我们观察到分生组织区域的细胞分裂减少,分生组织细胞的分化和分生组织调节因子 WUSCHEL(WUS)、CLAVATA3(CLV3)和 SHOOT MERISTEMLESS(STM)的表达改变。遗传实验表明,这三个 AIL 基因不是专门在 WUS/CLV 或 STM 途径中起作用,调节分生组织功能。此外,这些研究表明,ANT、AIL6 和 AIL7 在分生组织中具有不同的功能,而不是以严格冗余的方式起作用。因此,我们的研究确定了三个新基因,它们的不同功能共同需要持续的茎尖分生组织功能。

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