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IQ67 DOMAIN protein 21 is critical for indentation formation in pavement cell morphogenesis

查看全文 作  者:Xinhua [1]Feng;Shujuan [1]Pan;Haifu [1]Tu;Junjie [2]Huang;Chuanlei [1]Xiao;Xin [1]Shen;Lei [1]You;Xinyan [3]Zhao;Yongqiang [1]Chen;Danyun [1]Xu;Xiaolu [4]Qu;Honghong [1]Hu 高影响力作者 机构地区:[1]National Key Laboratory of Crop Genetic Improvement,Hubei Hongshan Laboratory,Huazhong Agricultural University,Wuhan 430070,China;[2]Frontier Science Center for Immunology and Metabolism,Medical Research Institute,Wuhan University,Wuhan 430070,China;[3]Shanghai Center for Plant Stress Biology,CAS Center for Excellence in Molecular Plant Sciences,Chinese Academy of Sciences,Shanghai 201602,China;[4]Key Laboratory of Horticultural Plant Biology(MOE),College of Horticulture and Forestry Sciences,Huazhong Agricultural University,Wuhan 430070,China高影响力机构 出  处:《Journal of Integrative Plant Biology》索引2023年第65卷第3期,共18页高影响力期刊 基  金:supported by funding from the National Natural Science Foundation of China (31970730, 32170721)。 摘  要:In plants, cortical microtubules anchor to the plasma membrane in arrays and play important roles in cell shape. However, the molecular mechanism of microtubule binding proteins, which connect the plasma membrane and cortical microtubules in cell morphology remains largely unknown. Here, we report that a plasma membrane and microtubule duallocalized IQ67 domain protein, IQD21, is critical for cotyledon pavement cell(PC) morphogenesis in Arabidopsis. iqd21 mutation caused increased indentation width, decreased lobe length, and similar lobe number of PCs, whereas IQD21 overexpression had a different effect on cotyledon PC shape. Weak overexpression led to increased lobe number, decreased indentation width, and similar lobe length, while moderate or great overexpression resulted in decreased lobe number, indentation width, and lobe length of PCs. Live-cell observations revealed that IQD21 accumulation at indentation regions correlates with lobe initiation and outgrowth during PC development. Cell biological and genetic approaches revealed that IQD21 promotes transfacial microtubules anchoring to the plasma membrane via its polybasic sites and bundling at the indentation regions in both periclinal and anticlinal walls. IQD21 controls cortical microtubule organization mainly through promoting Katanin 1-mediated microtubule severing during PC interdigitation. These findings provide the genetic evidence that transfacial microtubule arrays play a determinant role in lobe formation, and the insight into the molecular mechanism of IQD21 in transfacial microtubule organization at indentations and puzzle-shaped PC development. 关 键 词:IQD21 KTN1 lobe outgrowth pavement cell interdigitation transfacial microtubules
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