Department of Molecular Signal Processing, Leibniz Institute of Plant Biochemistry (IPB),Halle (Saale), Germany.
Institute of Computer Science, Martin Luther University Halle-Wittenberg, Halle (Saale), Germany.
J Exp Bot. 2019 Jan 7;70(2):529-543. doi: 10.1093/jxb/ery395.
Plant microtubules form a highly dynamic intracellular network with important roles for regulating cell division, cell proliferation, and cell morphology. Their organization and dynamics are co-ordinated by various microtubule-associated proteins (MAPs) that integrate environmental and developmental stimuli to fine-tune and adjust cytoskeletal arrays. IQ67 DOMAIN (IQD) proteins recently emerged as a class of plant-specific MAPs with largely unknown functions. Here, using a reverse genetics approach, we characterize Arabidopsis IQD5 in terms of its expression domains, subcellular localization, and biological functions. We show that IQD5 is expressed mostly in vegetative tissues, where it localizes to cortical microtubule arrays. Our phenotypic analysis of iqd5 loss-of-function lines reveals functions of IQD5 in pavement cell (PC) shape morphogenesis. Histochemical analysis of cell wall composition further suggests reduced rates of cellulose deposition in anticlinal cell walls, which correlate with reduced anisotropic expansion. Lastly, we demonstrate IQD5-dependent recruitment of calmodulin calcium sensors to cortical microtubule arrays and provide first evidence for important roles for calcium in regulation of PC morphogenesis. Our work identifies IQD5 as a novel player in PC shape regulation and, for the first time, links calcium signaling to developmental processes that regulate anisotropic growth in PCs.
植物微管形成了一个高度动态的细胞内网络,对于调节细胞分裂、细胞增殖和细胞形态具有重要作用。它们的组织和动态由各种微管相关蛋白(MAPs)协调,这些蛋白整合了环境和发育刺激,以微调和调整细胞骨架阵列。IQ67 结构域(IQD)蛋白最近作为一类具有很大未知功能的植物特异性 MAPs 出现。在这里,我们使用反向遗传学方法,从表达域、亚细胞定位和生物学功能方面对拟南芥 IQD5 进行了表征。我们表明,IQD5 在营养组织中大量表达,在那里它定位于皮质微管阵列。我们对 iqd5 功能丧失系的表型分析揭示了 IQD5 在 pavement cell (PC) 形态发生中的功能。细胞壁成分的组织化学分析进一步表明,在垂周细胞壁中纤维素沉积的速度降低,这与各向异性膨胀的减少相关。最后,我们证明 IQD5 依赖性钙调蛋白钙传感器向皮质微管阵列的募集,并提供了第一个证据表明钙在调节 PC 形态发生中的重要作用。我们的工作确定 IQD5 是 PC 形状调节中的一个新成员,并首次将钙信号与调节 PC 中各向异性生长的发育过程联系起来。