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Arabidopsis TRANSPARENT TESTA GLABRA2 Is Directly Regulated by R2R3 MYB Transcription Factors and Is Involved in Regulation of GLABRA2 Transcription in Epidermal Differentiation[W]

机译:拟南芥透明TESTA GLABRA2直接受R2R3 MYB转录因子调控,并参与表皮分化中GLABRA2转录的调控[W]

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摘要

Arabidopsis thaliana TRANSPARENT TESTA GLABRA2 (TTG2) encodes a WRKY transcription factor and is expressed in young leaves, trichomes, seed coats, and root hairless cells. An examination of several trichome and root hair mutants indicates that MYB and bHLH genes regulate TTG2 expression. Two MYB binding sites in the TTG2 5′ regulatory region act as cis regulatory elements and as direct targets of R2R3 MYB transcription factors such as WEREWOLF, GLABRA1, and TRANSPARENT TESTA2. Mutations in TTG2 cause phenotypic defects in trichome development and seed color pigmentation. Transgenic plants expressing a chimeric repressor version of the TTG2 protein (TTG2:SRDX) showed defects in trichome formation, anthocyanin accumulation, seed color pigmentation, and differentiation of root hairless cells. GLABRA2 (GL2) expression was markedly reduced in roots of ProTTG2:TTG2:SRDX transgenic plants, suggesting that TTG2 is involved in the regulation of GL2 expression, although GL2 expression in the ttg2 mutant was similar to that in the wild type. Our analysis suggests a new step in a regulatory cascade of epidermal differentiation, in which complexes containing R2R3 MYB and bHLH transcription factors regulate the expression of TTG2, which then regulates GL2 expression with complexes containing R2R3 MYB and bHLH in the differentiation of trichomes and root hairless cells.
机译:拟南芥透明TESTA GLABRA2(TTG2)编码WRKY转录因子,并在幼叶,毛状体,种皮和根无毛细胞中表达。对几种毛状体和根毛突变体的检查表明,MYB和bHLH基因调节TTG2表达。 TTG2 5'调控区中的两个MYB结合位点充当顺式调控元件,并充当R2R3 MYB转录因子(例如WEREWOLF,GLABRA1和TRANSPARENT TESTA2)的直接靶标。 TTG2中的突变会导致毛状体发育和种子颜色色素沉着的表型缺陷。表达TTG2蛋白嵌合阻遏物版本(TTG2:SRDX)的转基因植物在毛状体形成,花色苷积累,种子颜色色素沉着和根无毛细胞分化方面表现出缺陷。在ProTTG2:TTG2:SRDX转基因植物的根中,GLABRA2(GL2)表达显着降低,这表明TTG2参与了GL2表达的调控,尽管ttg2突变体中的GL2表达与野生型相似。我们的分析表明,表皮分化的调控级联迈出了新的一步,其中包含R2R3 MYB和bHLH转录因子的复合物调节TTG2的表达,然后通过包含R2R3 MYB和bHLH的复合物调节毛状体和无根的分化中的GL2表达。细胞。

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