2026/03/25 by Xin Cheng, Heike Lindner, Lidia Hoffmann +11 · 1 voice · 1 citation
Agricultural and Biological Sciences · Biochemistry, Genetics and Molecular Biology · #Plant Molecular Biology Research #Plant Gene Expression Analysis #Polysaccharides and Plant Cell Walls
paper · doi:10.1126/sciadv.aeb8145
Among the evolutionary innovations of many succulents is a photosynthetic lifestyle, where stomatal gas exchange is decoupled from light-dependent carbon fixation. Many Crassulaceae leaf succulents form a stomatal morphotype consisting of kidney-shaped guard cells surrounded by three anisocytic subsidiary cells (SCs), whose function and development remained unknown. Here, we established Kalanchoë laxiflora as a developmental model. Potassium staining suggested SCs to shuttle osmolytes and support turgor-driven stomatal movements. Gene editing, reporter lines, protein overexpression, and RNA sequencing implicated the stomatal transcription factor MUTE in facilitating the additional rounds of asymmetric divisions required to form SCs in succulents. This is opposite to the role of MUTE in Arabidopsis thaliana , where it stops rather than induces asymmetric divisions but reminiscent of MUTE ’s subsidiary cell–related function in grasses. Our work firmly establishes K. laxiflora as a model for succulent development and deciphers an intricate genetic mechanism that generates innovative stomatal morphology in Crassulaceae succulents.