Dubey Shiv Mani, Han Soeun, Stutzman Nathan, Prigge Michael J, Medvecká Eva, Platre Matthieu Pierre, Busch Wolfgang, Fendrych Matyáš, Estelle Mark
Department of Experimental Plant Biology, Faculty of Sciences, Charles University, Prague, Czech Republic.
Section of Cell and Developmental Biology, University of California San Diego, La Jolla, United States.
bioRxiv. 2023 Jan 4:2023.01.04.522696. doi: 10.1101/2023.01.04.522696.
The phytohormone auxin triggers root growth inhibition within seconds via a non-transcriptional pathway. Among members of the TIR1/AFBs auxin receptor family, AFB1 has a primary role in this rapid response. However, the unique features that confer this specific function have not been identified. Here we show that the N-terminal region of AFB1, including the F-box domain and residues that contribute to auxin binding, are essential and sufficient for its specific role in the rapid response. Substitution of the N-terminal region of AFB1 with that of TIR1 disrupts its distinct cytoplasm-enriched localization and activity in rapid root growth inhibition. Importantly, the N-terminal region of AFB1 is indispensable for auxin-triggered calcium influx which is a prerequisite for rapid root growth inhibition. Furthermore, AFB1 negatively regulates lateral root formation and transcription of auxin-induced genes, suggesting that it plays an inhibitory role in canonical auxin signaling. These results suggest that AFB1 may buffer the transcriptional auxin response while it regulates rapid changes in cell growth that contribute to root gravitropism.
植物激素生长素通过非转录途径在数秒内触发根生长抑制。在TIR1/AFB生长素受体家族成员中,AFB1在这种快速反应中起主要作用。然而,赋予这种特定功能的独特特征尚未确定。在这里,我们表明AFB1的N端区域,包括F-box结构域和有助于生长素结合的残基,对于其在快速反应中的特定作用是必不可少且足够的。用TIR1的N端区域替换AFB1的N端区域会破坏其在快速根生长抑制中独特的富含细胞质的定位和活性。重要的是,AFB1的N端区域对于生长素触发的钙内流是必不可少的,而钙内流是快速根生长抑制的先决条件。此外,AFB1负向调节侧根形成和生长素诱导基因的转录,表明它在经典生长素信号传导中起抑制作用。这些结果表明,AFB1可能在调节导致根向地性的细胞生长快速变化的同时,缓冲转录生长素反应。