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AINTEGUMENTA Contributes to Organ Polarity and Regulates Growth of Lateral Organs in Combination with YABBY Genes

机译:AINTEGUMENTA与YABBY基因结合有助于器官极性和调节侧器官的生长

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摘要

Lateral organs in flowering plants display polarity along their adaxial-abaxial axis with distinct cell types forming at different positions along this axis. Members of three classes of transcription factors in Arabidopsis (Arabidopsis thaliana; the Class III homeodomain/leucine zipper [HD-ZIP] proteins, KANADI proteins, and YABBY proteins) are expressed in either the adaxial or abaxial domain of organ primordia where they confer these respective identities. Little is known about the factors that act upstream of these polarity-determining genes to regulate their expression. We have investigated the relationship between AINTEGUMENTA (ANT), a gene that promotes initiation and growth of lateral organ primordia, and polarity genes. Although ant single mutants do not display any obvious defects in organ polarity, loss of ANT activity in combination with mutations in one or more YABBY genes results in polarity defects greater than those observed in the yabby mutants alone. Our results suggest that ANT acts in combination with the YABBY gene FILAMENTOUS FLOWER (FIL) to promote organ polarity by up-regulating the expression of the adaxial-specifying HD-ZIP gene PHABULOSA. Furthermore, we show that ANT acts with FIL to up-regulate expression of the floral homeotic gene APETALA3. Our work defines new roles for ANT in the development of lateral organs.
机译:开花植物的侧向器官沿其前后轴显示极性,沿该轴的不同位置形成不同的细胞类型。拟南芥中三类转录因子的成员(拟南芥; III类同源域/​​亮氨酸拉链[HD-ZIP]蛋白,KANADI蛋白和YABBY蛋白)在器官原基的近轴或近轴域表达,它们赋予这些原基各自的身份。关于这些决定极性的基因调节其表达的上游因子的了解甚少。我们已经研究了AINTEGUMENTA(ANT)和极性基因之间的关系,ANTTEGUMENTA(ANT)促进侧器官原基的启动和生长。尽管单个蚂蚁突变体在器官极性上没有表现出任何明显的缺陷,但与一个或多个YABBY基因突变相结合,ANT活性的丧失导致的极性缺陷比仅在yabby突变体中观察到的极性缺陷更大。我们的研究结果表明,ANT与YABBY基因丝状花粉(FIL)结合,可通过上轴指定HD-ZIP基因PHABULOSA的表达来促进器官极性。此外,我们表明,ANT与FIL一起上调花卉同源基因APETALA3的表达。我们的工作定义了ANT在侧器官发育中的新作用。

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  • 来源
    《Plant Physiology》 |2006年第3期|p.977-987|共11页
  • 作者单位

    Department of Biological Sciences, University of South Carolina, Columbia, South Carolina 29208;

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