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首页> 外文期刊>Development >Novel as1 and as2 defects in leaf adaxial-abaxial polarity reveal the requirement for ASYMMETRIC LEAVES1 and 2 and ERECTA functions in specifying leaf adaxial identity.
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Novel as1 and as2 defects in leaf adaxial-abaxial polarity reveal the requirement for ASYMMETRIC LEAVES1 and 2 and ERECTA functions in specifying leaf adaxial identity.

机译:叶片前后轴极性中的新型as1和as2缺陷揭示了在指定叶片轴向同一性方面对ASYMMETRIC LEAVES1和2和ERECTA功能的要求。

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摘要

The shoot apical meristem (SAM) of seed plants is the site at which lateral organs are formed. Once organ primordia initiate from the SAM, they establish polarity along the adaxial-abaxial, proximodistal and mediolateral axes. Among these three axes, the adaxial-abaxial polarity is of primary importance in leaf patterning. In leaf development, once the adaxial-abaxial axis is established within leaf primordia, it provides cues for proper lamina growth and asymmetric development. It was reported previously that the Arabidopsis ASYMMETRIC LEAVES1 (AS1) and ASYMMETRIC LEAVES2 (AS2) genes are two key regulators of leaf polarity. In this work, we demonstrate a new function of the AS1 and AS2 genes in the establishment of adaxial-abaxial polarity by analyzing as1 and as2 alleles in the Landsberg erecta (Ler) genetic background. We provide genetic evidence that the Arabidopsis ERECTA (ER) gene is involved in the AS1-AS2 pathway to promote leaf adaxial fate. In addition, we show that AS1 and AS2 bind to each other, suggesting that AS1 and AS2 may form a complex that regulates the establishment of leaf polarity. We also report the effects on leaf polarity of overexpression of the AS1 or AS2 genes under the control of the cauliflower mosaic virus (CAMV) 35S promoter. Although plants with as1 and as2 mutations have very similar phenotypes, 35S::AS1/Ler and 35S::AS2/Ler transgenic plants showed dramatically different morphologies. A possible model of the AS1, AS2 and ER action in leaf polarity formation is discussed.
机译:种子植物的顶生分生组织(SAM)是形成侧器官的部位。从SAM启动器官原基后,它们会沿前后轴,近前轴和后外侧轴建立极性。在这三个轴中,轴向-轴向极性在叶片构图中至关重要。在叶片发育中,一旦在叶片原基内建立了前后轴,它将为叶片正常生长和不对称发育提供线索。以前有报道,拟南芥的ASYMMETRIC LEAVES1(AS1)和ASYMMETRIC LEAVES2(AS2)基因是叶片极性的两个关键调节因子。在这项工作中,我们通过分析Landsberg erecta(Ler)遗传背景中的as1和as2等位基因,证明了AS1和AS2基因在建立前后轴极性中的新功能。我们提供了遗传证据,证明拟南芥ERECTA(ER)基因参与了AS1-AS2途径来促进叶片近轴命运。此外,我们表明AS1和AS2彼此绑定,这表明AS1和AS2可能形成调节叶极性建立的复合物。我们还报告了对花椰菜花叶病毒(CAMV)35S启动子的控制下AS1或AS2基因过表达对叶片极性的影响。尽管具有as1和as2突变的植物具有非常相似的表型,但35S :: AS1 / Ler和35S :: AS2 / Ler转基因植物表现出显着不同的形态。讨论了在叶片极性形成中AS1,AS2和ER作用的可能模型。

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