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Activation-tagged suppressors of a weak brassinosteroid receptor mutant.

机译:激活标记的弱油菜素类固醇受体突变体的抑制剂。

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Brassinosteroids (BRs) are important plant hormones that act synergistically with auxin to regulate a variety of plant developmental and physiological processes. In the past decade, genetic and biochemical studies have revealed a linear signaling pathway that relies on protein phosphorylation to transmit the BR signal into the nucleus, altering expression of hundreds of genes to promote plant growth. We conducted an activation-tagging based suppressor screen to look for Arabidopsis genes that, when overexpressed by inserted 35 S enhancer elements, could suppress the dwarf phenotype of a weak BR receptor mutant bri1-301. This screen identified a total of six dominant activation-tagged bri1 suppressors (atbs-Ds). Using a plasmid rescue approach, we discovered that the bri1-301 suppression effect in four atbs-D mutants (atbs3-D to atbs6-D) was caused by overexpression of a YUCCA gene thought to be involved in tryptophan-dependent auxin biosynthesis. Interestingly, the three activation-tagged YUCCA genes belong to the YUCCA IIA subfamily that includes two other members out of 11 known Arabidopsis YUCCA genes. In addition, our molecular studies revealed a T-DNA insertion near a basic helix-loop-helix gene in atbs1-D and a T-DNA insertion in a region carrying a BR biosynthetic gene in atbs2-D. Further studies of these atbs-D mutants could lead to better understanding of the BR signaling process and the BR-auxin interaction.
机译:油菜素类固醇(BRs)是重要的植物激素,与植物生长素协同作用,调节多种植物发育和生理过程。在过去的十年中,基因和生物化学研究揭示了一种线性信号传导途径,该途径依赖于蛋白质的磷酸化将BR信号传递至细胞核,从而改变数百种基因的表达,从而促进植物的生长。我们进行了基于激活标记的抑制子筛选,以寻找拟南芥基因,这些基因在插入的 35 S 增强子元件中过表达时,可以抑制弱BR受体突变体的矮表型。 bri1-301 。此屏幕共识别了六个主要的带有激活标签的bri1抑制剂( atbs-Ds )。使用质粒拯救方法,我们发现在四个 atbs-D 突变体( atbs3-D 至 atbs6-D )是由 YUCCA 基因的过表达引起的,该基因可能与色氨酸依赖性植物生长素的生物合成有关。有趣的是,三个带有激活标记的 YUCCA 基因属于 YUCCA IIA 子家族,其中包括11个已知的拟南芥YUCCA 基因中的两个其他成员。此外,我们的分子研究显示,在 atbs1-D 中基本螺旋-环-螺旋基因附近有T-DNA插入,​​在中带有BR生物合成基因的区域中有T-DNA插入。 atbs2-D 。对这些 atbs-D 突变体的进一步研究可能会导致对BR信号传导过程和BR-生长素相互作用的更好理解。

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