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首页> 外文期刊>Molecules and cells >A transcriptional feedback loop modulating signaling crosstalks between auxin and brassinosteroid in Arabidopsis.
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A transcriptional feedback loop modulating signaling crosstalks between auxin and brassinosteroid in Arabidopsis.

机译:转录反馈环调节拟南芥中生长素和油菜素内酯之间的信号串扰。

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摘要

Auxin and brassinosteroid (BR) play essential roles in diverse aspects of growth and developmental processes in plants mainly through coordinate regulation of cell division, elongation, and differentiation. Consistent with the overlapped roles, accumulating evidence indicates that the two growth hormones act in a synergistic as well as in an interdependent manner in many cases, although the underlying molecular mechanisms are not fully understood. Here, we demonstrate that auxin and BR signaling pathways are interconnected at the transcriptional level via a negative feedback loop. An Arabidopsis activating tagging mutant dlf-1D exhibited dwarfed growth with small, dark-green leaves and reduced fertility. Hormone feeding assays revealed that the mutant phenotype is caused by the reduction of endogenous BR level. Consistent with this, a gene encoding the CYP72C1 enzyme that catabolizes BR was up-regulated. Notably, the transcript level of the ARF8 transcription factor gene, which modulates the expression of auxin-responsive genes, was significantly elevated in the mutant. In addition, the ARF8 gene expression was significantly reduced by BR but induced by brassinazole, a BR biosynthetic inhibitor. On the other hand, two BR catabolic pathway genes, DLF (CYP72C1) and BAS1, were induced by auxin. Our observations indicate that at least part of auxin and BR signaling pathways are unified through a transcriptional feedback control of the DLF and ARF8 genes.
机译:生长素和油菜素甾体(BR)主要通过协调细胞分裂,伸长和分化的调控,在植物生长和发育过程的各个方面发挥重要作用。与重叠的作用一致,越来越多的证据表明这两种生长激素在许多情况下起着协同作用以及相互依存的作用,尽管根本的分子机制尚不完全清楚。在这里,我们证明了生长素和BR信号通路在转录水平上通过负反馈环相互连接。拟南芥激活标签突变体dlf-1D表现出矮小的生长,带有小的深绿色的叶子和降低的繁殖力。激素喂养试验表明,突变表型是由内源性BR水平降低引起的。与此相一致,编码CYP72C1酶的BR代谢基因被上调。值得注意的是,在突变体中,ARF8转录因子基因的转录水平(调节生长素应答基因的表达)显着提高。此外,BR显着降低了ARF8基因的表达,但BR生物合成抑制剂Braskinazole诱导了ARF8基因的表达。另一方面,生长素诱导了两个BR分解代谢途径基因DLF(CYP72C1)和BAS1。我们的观察表明,通过DLF和ARF8基因的转录反馈控制,生长素和BR信号传导途径的至少一部分是统一的。

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