COBL7 is required for stomatal formation via regulation of cellulose deposition in Arabidopsis

警卫室 拟南芥 胞质分裂 突变体 细胞生物学 细胞壁 生物 纤维素 形态发生 拟南芥 植物 基因 化学 细胞分裂 生物化学 细胞
作者
Shengchao Ge,Pengyue Sun,Wenjuan Wu,Xinhang Chen,Yifei Wang,Min Zhang,Jirong Huang,Yun‐Kuan Liang
出处
期刊:New Phytologist [Wiley]
卷期号:241 (1): 227-242 被引量:14
标识
DOI:10.1111/nph.19327
摘要

As a key regulator of plant photosynthesis, water use efficiency and immunity, stomata are specialized cellular structures that adopt defined shapes. However, our knowledge about the genetic players of stomatal pore formation and stomatal morphogenesis remains limited. Forward genetic screening, positional cloning, confocal and electron microscopy, physiological and pharmacological assays were employed for isolation and characterization of mutants and genes. We identified a mutant, dsm1, with impaired cytokinesis and deformed stomata. DSM1 is highly expressed in guard mother cells and guard cells, and encodes COBRA-LIKE 7 (COBL7), a plant-specific glycosylphosphatidylinositol (GPI)-anchored protein. COBRA-LIKE 7 and its closest homologue, COBL8, are first enriched on the forming cell plates during cytokinesis, and then their subcellular distribution and abundance change are correlated with the progressive stages of stomatal pore formation. Both COBL7 and COBL8 possess an ability to bind cellulose. Perturbing the expression of COBL7 and COBL8 leads to a decrease in cellulose content and inhibition of stomatal pore development. Moreover, we found that COBL7, COBL8 and CSLD5 have synergistic effects on stomatal development and plant growth. Our findings reveal that COBL7 plays a predominant and functionally redundant role with COBL8 in stomatal formation through regulating cellulose deposition and ventral wall modification in Arabidopsis.
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