Department of Biology, University of Copenhagen, 2200, Copenhagen N, Denmark.
Centro de Biotecnología y Genómica de Plantas (Universidad Politécnica de Madrid (UPM)-Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria-CSIC (INIA/CSIC)). Campus de Montegancedo, Pozuelo de Alarcón, 28223, Madrid, Spain.
EMBO Rep. 2024 Jun;25(6):2571-2591. doi: 10.1038/s44319-024-00142-5. Epub 2024 Apr 29.
Auxin dictates root architecture via the Auxin Response Factor (ARF) family of transcription factors, which control lateral root (LR) formation. In Arabidopsis, ARF7 regulates the specification of prebranch sites (PBS) generating LRs through gene expression oscillations and plays a pivotal role during LR initiation. Despite the importance of ARF7 in this process, there is a surprising lack of knowledge about how ARF7 turnover is regulated and how this impacts root architecture. Here, we show that ARF7 accumulates in autophagy mutants and is degraded through NBR1-dependent selective autophagy. We demonstrate that the previously reported rhythmic changes to ARF7 abundance in roots are modulated via autophagy and might occur in other tissues. In addition, we show that the level of co-localization between ARF7 and autophagy markers oscillates and can be modulated by auxin to trigger ARF7 turnover. Furthermore, we observe that autophagy impairment prevents ARF7 oscillation and reduces both PBS establishment and LR formation. In conclusion, we report a novel role for autophagy during development, namely by enacting auxin-induced selective degradation of ARF7 to optimize periodic root branching.
生长素通过生长素响应因子 (ARF) 家族的转录因子来决定根系结构,该家族控制侧根 (LR) 的形成。在拟南芥中,ARF7 通过基因表达振荡调节前分支位点 (PBS) 的特化,从而产生 LR,并在 LR 起始过程中发挥关键作用。尽管 ARF7 在这个过程中很重要,但人们对 ARF7 周转的调控方式以及这如何影响根系结构知之甚少。在这里,我们表明 ARF7 在自噬突变体中积累,并通过 NBR1 依赖性选择性自噬降解。我们证明,先前报道的根中 ARF7 丰度的节律变化是通过自噬调节的,并且可能发生在其他组织中。此外,我们表明 ARF7 和自噬标记物之间的共定位水平呈振荡变化,并可被生长素调节以触发 ARF7 周转。此外,我们观察到自噬缺陷会阻止 ARF7 振荡,并减少 PBS 的建立和 LR 的形成。总之,我们报告了自噬在发育过程中的一个新作用,即通过实施生长素诱导的 ARF7 选择性降解来优化周期性根系分枝。