Auxin-induced ARF transcription factor degradation defines tissue boundaries
- Jeonghwan Ahn
- Quan Yuan
- Yi-Ning Ding
- Yun-Ying Wang
- Dan-Dan Yang
- Yao Zhang
- Feng Gao
- Hong-Sen Hu
- Qian Xu
- Zhi-Cheng Hu
- Xiaotong Qi
- Hongqiang Yu
- Limin Lu
- Chao-Bin Li
- Jie Cheng
- Bao-Qing Ding
- Chaoying He
- Bo Xu
- Quan Wang
- Min Chen
- Hongzhi Kong
- Cao Xu
- Xiaofeng Fang
- Lars Østergaard
- Yang Dong
2026-08-25
How organs partition themselves into discrete domains with distinct functions is a fundamental question in biology. The gynoecium of flowering plants provides an excellent system to address this question. Here, we show that the boundary between the stigma and style at the gynoecium apex is established by the complementary distribution of the phytohormone auxin and the Auxin Response Factor (ARF), ETTIN (ETT). Mechanistically, auxin induces ETT protein destabilization via the ubiquitin–proteasome pathway. A short sequence motif within an intrinsically disordered region is required for this auxin-triggered degradation. Disruption of this motif leads to ectopic ETT accumulation at the gynoecium apex and consequently abolishes stigma-style boundary development. We further demonstrate that this previously unrecognized mode of auxin-induced ARF instability is evolutionarily conserved among ETT orthologs across angiosperms. In summary, this study reveals how graded auxin distribution affects ARF transcription factor activity, contributing to the establishment of the stigma-style boundary, ensuring correct gynoecium formation and reproductive success in flowering plants.