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拟南芥根表皮中 IIId、IIIe 和 IVa 组碱性螺旋-环-螺旋蛋白的表达分析。

Analysis of IIId, IIIe and IVa group basic-helix-loop-helix proteins expressed in Arabidopsis root epidermis.

机构信息

Interdisciplinary Research Organization, University of Miyazaki, 1-1 Gakuen Kibanadai-Nishi, Miyazaki, Japan.

出版信息

Plant Sci. 2011 Oct;181(4):471-8. doi: 10.1016/j.plantsci.2011.07.006. Epub 2011 Jul 26.

Abstract

Differentiation of Arabidopsis epidermal cells into root hairs and trichomes is a functional model system for understanding plant cell development. Previous studies showed that one of the Arabidopsis basic-helix-loop-helix (AtbHLH) proteins, GLABRA3 (GL3), is involved in root-hair and trichome differentiation. We analyzed 11 additional AtbHLH genes with homology to GL3. Estimation of the phylogeny based on amino acid sequences of the bHLH region suggests that 11 AtbHLH genes used in this study evolved by duplications of a single common GL3 ancestor. Promoter-GUS analysis showed that AtbHLH006, AtbHLH013, AtbHLH017 and AtbHLH020 were expressed in roots. Among them, AtbHLH006 and AtbHLH020 were preferentially expressed in root epidermal non-hair cells. Consistent with the expression patterns from promoter-GUS analysis, GFP fluorescence was observed in the nuclei of root epidermal non-hair cells of AtbHLH006p::AtbHLH006:GFP and AtbHLH020p::AtbHLH020:GFP transgenic plants. However, AtbHLH006 and AtbHLH0020 proteins did not interact with epidermis-specific MYB proteins and TTG1. Taken together, AtbHLH006 and AtbHLH020 may function in root epidermal cells, but other GL3-like bHLH proteins may have evolved to regulate different processes.

摘要

拟南芥表皮细胞分化为根毛和表皮毛是研究植物细胞发育的功能模式系统。先前的研究表明,拟南芥碱性螺旋-环-螺旋(AtbHLH)蛋白之一 GLABRA3(GL3)参与根毛和表皮毛的分化。我们分析了与 GL3 同源的 11 个额外的 AtbHLH 基因。基于 bHLH 区域氨基酸序列的系统发育估计表明,本研究中使用的 11 个 AtbHLH 基因是由单个共同 GL3 祖先的复制进化而来的。启动子-GUS 分析表明,AtbHLH006、AtbHLH013、AtbHLH017 和 AtbHLH020 在根中表达。其中,AtbHLH006 和 AtbHLH020 优先在根表皮非毛细胞中表达。与启动子-GUS 分析的表达模式一致,在 AtbHLH006p::AtbHLH006:GFP 和 AtbHLH020p::AtbHLH020:GFP 转基因植物的根表皮非毛细胞的细胞核中观察到 GFP 荧光。然而,AtbHLH006 和 AtbHLH0020 蛋白与表皮特异性 MYB 蛋白和 TTG1 不相互作用。总之,AtbHLH006 和 AtbHLH020 可能在根表皮细胞中发挥作用,但其他 GL3 样 bHLH 蛋白可能已进化为调节不同的过程。

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