Coomey Joshua H, MacKinnon Kirk J-M, McCahill Ian W, Khahani Bahman, Handakumbura Pubudu P, Trabucco Gina M, Mazzola Jessica, Leblanc Nicole A, Kheam Rithany, Hernandez-Romero Miriam, Barry Kerrie, Liu Lifeng, Lee Ji E, Vogel John P, O'Malley Ronan C, Chambers James J, Hazen Samuel P
Biology Department, University of Massachusetts, Amherst, MA, USA.
Plant Biology Graduate Program, University of Massachusetts, Amherst, MA, USA.
Quant Plant Biol. 2024 May 3;5:e5. doi: 10.1017/qpb.2024.5. eCollection 2024.
Plant growth requires the integration of internal and external cues, perceived and transduced into a developmental programme of cell division, elongation and wall thickening. Mechanical forces contribute to this regulation, and thigmomorphogenesis typically includes reducing stem height, increasing stem diameter, and a canonical transcriptomic response. We present data on a bZIP transcription factor involved in this process in grasses. SECONDARY WALL INTERACTING bZIP (SWIZ) protein translocated into the nucleus following mechanostimulation. Classical touch-responsive genes were upregulated in roots following touch, including significant induction of the glycoside hydrolase 17 family, which may be unique to grass thigmomorphogenesis. SWIZ protein binding to an E-box variant in exons and introns was associated with immediate activation followed by repression of gene expression. overexpression resulted in plants with reduced stem and root elongation. These data further define plant touch-responsive transcriptomics and physiology, offering insights into grass mechanotranduction dynamics.
植物生长需要整合内部和外部信号,这些信号被感知并转化为细胞分裂、伸长和细胞壁加厚的发育程序。机械力有助于这种调节,而触形态建成通常包括降低茎高、增加茎直径以及一种典型的转录组反应。我们展示了关于一种参与禾本科植物这一过程的bZIP转录因子的数据。机械刺激后,次生壁相互作用bZIP(SWIZ)蛋白易位到细胞核中。触摸后,根部经典的触摸响应基因被上调,包括糖苷水解酶17家族的显著诱导,这可能是禾本科触形态建成所特有的。SWIZ蛋白与外显子和内含子中的E-box变体结合与基因表达的立即激活随后抑制有关。过表达导致植物的茎和根伸长减少。这些数据进一步定义了植物触摸响应转录组学和生理学,为禾本科植物机械转导动力学提供了见解。