Institute of Plant Sciences (IPS), University of Bern, Altenbergrain 21, 3013 Bern, Switzerland.
Centre for Organismal Studies (COS), Heidelberg University, Im Neuenheimer Feld 230, 69120 Heidelberg, Germany.
Development. 2024 Oct 15;151(20). doi: 10.1242/dev.203011. Epub 2024 Sep 26.
Grasses form morphologically derived, four-celled stomata, where two dumbbell-shaped guard cells (GCs) are flanked by two lateral subsidiary cells (SCs). This innovative form enables rapid opening and closing kinetics and efficient plant-atmosphere gas exchange. The mobile bHLH transcription factor MUTE is required for SC formation in grasses. Yet whether and how MUTE also regulates GC development and whether MUTE mobility is required for SC recruitment is unclear. Here, we transgenically impaired BdMUTE mobility from GC to SC precursors in the emerging model grass Brachypodium distachyon. Our data indicate that reduced BdMUTE mobility severely affected the spatiotemporal coordination of GC and SC development. Furthermore, although BdMUTE has a cell-autonomous role in GC division orientation, complete dumbbell morphogenesis of GCs required SC recruitment. Finally, leaf-level gas exchange measurements showed that dosage-dependent complementation of the four-celled grass morphology was mirrored in a gradual physiological complementation of stomatal kinetics. Together, our work revealed a dual role of grass MUTE in regulating GC division orientation and SC recruitment, which in turn is required for GC morphogenesis and the rapid kinetics of grass stomata.
禾本科植物形成形态衍生的、具有四个细胞的气孔,其中两个哑铃形的保卫细胞(GCs)被两个侧向的附属细胞(SCs)包围。这种创新的形式使植物能够实现快速的开合动力学和高效的气体交换。移动的 bHLH 转录因子 MUTE 对于禾本科植物 SC 的形成是必需的。然而,MUTE 是否以及如何调节 GC 的发育,以及 MUTE 的移动性是否对于 SC 的募集是必需的,目前尚不清楚。在这里,我们通过在新兴的模式禾本科植物柳枝稷中将 BdMUTE 从 GC 到 SC 前体的移动性进行转基因破坏。我们的数据表明,BdMUTE 移动性的降低严重影响了 GC 和 SC 发育的时空协调。此外,尽管 BdMUTE 在 GC 分裂方向上具有细胞自主作用,但 GC 完全形成哑铃形需要 SC 的募集。最后,叶片水平的气体交换测量表明,对四细胞禾本科植物形态的依赖剂量的互补反映在气孔动力学的逐渐生理互补中。总之,我们的工作揭示了禾本科植物 MUTE 在调节 GC 分裂方向和 SC 募集中的双重作用,而这反过来又是 GC 形态发生和禾本科植物气孔快速动力学所必需的。