ABNORMAL SHOOT 6 interacts with KATANIN 1 and SHADE AVOIDANCE 4 to promote cortical microtubule severing and ordering in Arabidopsis
反常射击 6 与 KATANIN 1 和阴影回避 4 交往支持在 Arabidopsis 切断并且订的外皮的微导管作者机构:State Key Laboratory of Crop Stress Biology for Arid Areas and College of Life SciencesNorthwest A&F UniversityYangling 712100China Present Address:Department of Plant&Microbial BiologyUniversity of California BerkeleyCalifornia 94720USA
出 版 物:《Journal of Integrative Plant Biology》 (植物学报(英文版))
年 卷 期:2021年第63卷第4期
页 面:646-661页
核心收录:
学科分类:09[农学] 0903[农学-农业资源与环境]
基 金:the Teaching and Research Core Facility at the College of Life Sciences,NWAFU for support in this work supported by grants from the National Natural Science Foundation of China(31770205 and 31970186 to X.L.,31870268 to F.Y.)
主 题:ABS red ABNORMAL SHOOT 6 interacts with KATANIN 1 and SHADE AVOIDANCE 4 to promote cortical microtubule severing and ordering in Arabidopsis
摘 要:Plant interphase cortical microtubules(cMTs)mediate anisotropic cell expansion in response to environmental and developmental *** Arabidopsis thaliana,KATANIN 1(KTN1),the p60 catalytic subunit of the conserved MT-severing enzyme katanin,is essential for cMT ordering and anisotropic cell ***,the regulation of KTN1-mediated cMT severing and ordering remains *** this work,we report that the Arabidopsis IQ67 DOMAIN(IQD)family gene ABNORMAL SHOOT 6(ABS6)encodes a MT-associated *** of ABS6 leads to elongated cotyledons,directional pavement cell expansion,and highly ordered transverse cMT *** suppressor analysis revealed that ABS6-mediated cMT ordering is dependent on KTN1 and SHADE AVOIDANCE 4(SAV4).Live imaging of cMT dynamics showed that both ABS6 and SAV4 function as positive regulators of cMT ***,ABS6 directly interacts with KTN1 and SAV4 and promotes their recruitment to the ***,analysis of loss-of-function mutant combinations showed that ABS6,SAV4,and KTN1 work together to ensure the robust ethylene response in the apical hook of dark-grown ***,our findings establish ABS6 and SAV4 as positive regulators of cMT severing and ordering,and highlight the role of cMT dynamics in fine-tuning differential growth in plants.