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ROOT HAIR DEFECTIVE SIX-LIKE Class I Genes Promote Root Hair Development in the Grass Brachypodium distachyon

机译:根毛发生缺陷的六类I类基因促进草短螺旋藻中的根毛发育

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摘要

Genes encoding ROOT HAIR DEFECTIVE SIX-LIKE (RSL) class I basic helix loop helix proteins are expressed in future root hair cells of the Arabidopsis thaliana root meristem where they positively regulate root hair cell development. Here we show that there are three RSL class I protein coding genes in the Brachypodium distachyon genome, BdRSL1, BdRSL2 and BdRSL3, and each is expressed in developing root hair cells after the asymmetric cell division that forms root hair cells and hairless epidermal cells. Expression of BdRSL class I genes is sufficient for root hair cell development: ectopic overexpression of any of the three RSL class I genes induces the development of root hairs in every cell of the root epidermis. Expression of BdRSL class I genes in root hairless Arabidopsis thaliana root hair defective 6 (Atrhd6) Atrsl1 double mutants, devoid of RSL class I function, restores root hair development indicating that the function of these proteins has been conserved. However, neither AtRSL nor BdRSL class I genes is sufficient for root hair development in A. thaliana. These data demonstrate that the spatial pattern of class I RSL activity can account for the pattern of root hair cell differentiation in B. distachyon. However, the spatial pattern of class I RSL activity cannot account for the spatial pattern of root hair cells in A. thaliana. Taken together these data indicate that that the functions of RSL class I proteins have been conserved among most angiosperms—monocots and eudicots—despite the dramatically different patterns of root hair cell development.
机译:在拟南芥根分生组织的未来根毛细胞中表达编码根毛发生缺陷六样(RSL)I类基本螺旋环螺旋蛋白的基因,它们在其中积极调节根毛细胞的发育。在这里,我们显示在短枝曲霉基因组中有三个RSL I类蛋白质编码基因BdRSL1,BdRSL2和BdRSL3,每个基因在不对称细胞分裂形成根毛细胞和无毛表皮细胞后在发育中的根毛细胞中表达。 BdRSL I类基因的表达足以促进根毛细胞发育:三种RSL I类基因中任何一种的异位过表达都会诱导根表皮每个细胞中根毛的发育。 BdRSL I类基因在无根拟南芥根毛缺陷6(Atrhd6)Atrsl1双突变体中的表达,没有RSL I类功能,恢复了根毛发育,表明这些蛋白质的功能已被保守。然而,AtRSL和BdRSL I类基因均不足以用于拟南芥中的根毛发育。这些数据表明,I类RSL活性的空间模式可以解释狄氏酵母中根毛细胞分化的模式。但是,I类RSL活动的空间模式不能解释拟南芥中根毛细胞的空间模式。这些数据加在一起表明,尽管根毛细胞发育的模式截然不同,但大多数被子植物(单子叶植物和双子叶植物)中RSL I类蛋白的功能都得到了保留。

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