Department of Forest Genetics and Plant Physiology, Umeå Plant Science Centre, Swedish University of Agricultural Sciences, 90187 Umeå, Sweden.
Physiol Plant. 2012 Jul;145(3):450-60. doi: 10.1111/j.1399-3054.2012.01600.x. Epub 2012 Apr 6.
Plant basic Helix-loop-helix (bHLH) proteins are transcription factors that are involved in many developmental mechanisms, including light signaling and hormone homeostasis. Some of them are non-DNA-binding proteins and could act as dominant negative regulators of other bHLH proteins by forming heterodimers, in a similar way to animal inhibitor of DNA-binding proteins. It has been recently reported that several non-DNA-binding bHLHs are involved in light signaling (KDR/PRE6), gibberellic acid signaling (PRE1/BNQ1/bHLH136) or brassinosteroid signaling (ATBS1). Here we report that Arabidopsis lines overexpressing the PRE3/bHLH135/ATBS1/TMO7 gene are less responsive to red, far-red and blue light than wild-type which is likely to explain the light hyposensitive phenotype displayed when grown under white light conditions. Using quantitative polymerase chain reaction, we show that the expression of PRE3 and KDR/PRE6 genes is regulated by light and that light-related genes are deregulated in the PRE3-ox lines. We show that PRE3 is expressed in the shoot and root meristems and that PRE3-ox lines also have a defect in lateral root development. Our results not only suggest that PRE3 is involved in the regulation of light signaling, but also support the hypothesis that non-DNA-binding bHLH genes are promiscuous genes regulating a wide range of both overlapping and specific regulatory pathways.
植物基本螺旋-环-螺旋 (bHLH) 蛋白是参与许多发育机制的转录因子,包括光信号和激素稳态。它们中的一些是非 DNA 结合蛋白,通过形成异二聚体,可以像动物 DNA 结合抑制蛋白一样,作为其他 bHLH 蛋白的显性负调控因子。最近有报道称,几种非 DNA 结合的 bHLH 参与光信号(KDR/PRE6)、赤霉素信号(PRE1/BNQ1/bHLH136)或油菜素内酯信号(ATBS1)。在这里,我们报告说,过表达 PRE3/bHLH135/ATBS1/TMO7 基因的拟南芥系对红光、远红光和蓝光的反应不如野生型敏感,这可能解释了在白光条件下生长时表现出的光低敏感表型。使用定量聚合酶链反应,我们表明 PRE3 和 KDR/PRE6 基因的表达受光调控,并且 PRE3-ox 系中的光相关基因失调。我们表明 PRE3 在茎和根分生组织中表达,并且 PRE3-ox 系在侧根发育方面也存在缺陷。我们的结果不仅表明 PRE3 参与光信号的调节,还支持非 DNA 结合 bHLH 基因是调节广泛重叠和特定调控途径的混杂基因的假设。