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AtSEC22 Regulates Cell Morphogenesis via Affecting Cytoskeleton Organization and Stabilities

The plant cytoskeleton forms a stereoscopic network that regulates cell morphogenesis. The cytoskeleton also provides tracks for trafficking of vesicles to the target membrane. Fusion of vesicles with the target membrane is promoted by SNARE proteins, etc. The vesicle-SNARE, Sec22, regulates membran...

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Autores principales: Guan, Li, Yang, Shurui, Li, Shenglin, Liu, Yu, Liu, Yuqi, Yang, Yi, Qin, Guochen, Wang, Haihai, Wu, Tao, Wang, Zhigang, Feng, Xianzhong, Wu, Yongrui, Zhu, Jian-Kang, Li, Xugang, Li, Lixin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8211912/
https://www.ncbi.nlm.nih.gov/pubmed/34149743
http://dx.doi.org/10.3389/fpls.2021.635732
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author Guan, Li
Yang, Shurui
Li, Shenglin
Liu, Yu
Liu, Yuqi
Yang, Yi
Qin, Guochen
Wang, Haihai
Wu, Tao
Wang, Zhigang
Feng, Xianzhong
Wu, Yongrui
Zhu, Jian-Kang
Li, Xugang
Li, Lixin
author_facet Guan, Li
Yang, Shurui
Li, Shenglin
Liu, Yu
Liu, Yuqi
Yang, Yi
Qin, Guochen
Wang, Haihai
Wu, Tao
Wang, Zhigang
Feng, Xianzhong
Wu, Yongrui
Zhu, Jian-Kang
Li, Xugang
Li, Lixin
author_sort Guan, Li
collection PubMed
description The plant cytoskeleton forms a stereoscopic network that regulates cell morphogenesis. The cytoskeleton also provides tracks for trafficking of vesicles to the target membrane. Fusion of vesicles with the target membrane is promoted by SNARE proteins, etc. The vesicle-SNARE, Sec22, regulates membrane trafficking between the ER and Golgi in yeast and mammals. Arabidopsis AtSEC22 might also regulate early secretion and is essential for gametophyte development. However, the role of AtSEC22 in plant development is unclear. To clarify the role of AtSEC22 in the regulation of plant development, we isolated an AtSEC22 knock-down mutant, atsec22-4, and found that cell morphogenesis and development were seriously disturbed. atsec22-4 exhibited shorter primary roots (PRs), dwarf plants, and partial abortion. More interestingly, the atsec22-4 mutant had less trichomes with altered morphology, irregular stomata, and pavement cells, suggesting that cell morphogenesis was perturbed. Further analyses revealed that in atsec22-4, vesicle trafficking was blocked, resulting in the trapping of proteins in the ER and collapse of structures of the ER and Golgi apparatus. Furthermore, AtSEC22 defects resulted in impaired organization and stability of the cytoskeleton in atsec22-4. Our findings revealed essential roles of AtSEC22 in membrane trafficking and cytoskeleton dynamics during plant development.
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spelling pubmed-82119122021-06-19 AtSEC22 Regulates Cell Morphogenesis via Affecting Cytoskeleton Organization and Stabilities Guan, Li Yang, Shurui Li, Shenglin Liu, Yu Liu, Yuqi Yang, Yi Qin, Guochen Wang, Haihai Wu, Tao Wang, Zhigang Feng, Xianzhong Wu, Yongrui Zhu, Jian-Kang Li, Xugang Li, Lixin Front Plant Sci Plant Science The plant cytoskeleton forms a stereoscopic network that regulates cell morphogenesis. The cytoskeleton also provides tracks for trafficking of vesicles to the target membrane. Fusion of vesicles with the target membrane is promoted by SNARE proteins, etc. The vesicle-SNARE, Sec22, regulates membrane trafficking between the ER and Golgi in yeast and mammals. Arabidopsis AtSEC22 might also regulate early secretion and is essential for gametophyte development. However, the role of AtSEC22 in plant development is unclear. To clarify the role of AtSEC22 in the regulation of plant development, we isolated an AtSEC22 knock-down mutant, atsec22-4, and found that cell morphogenesis and development were seriously disturbed. atsec22-4 exhibited shorter primary roots (PRs), dwarf plants, and partial abortion. More interestingly, the atsec22-4 mutant had less trichomes with altered morphology, irregular stomata, and pavement cells, suggesting that cell morphogenesis was perturbed. Further analyses revealed that in atsec22-4, vesicle trafficking was blocked, resulting in the trapping of proteins in the ER and collapse of structures of the ER and Golgi apparatus. Furthermore, AtSEC22 defects resulted in impaired organization and stability of the cytoskeleton in atsec22-4. Our findings revealed essential roles of AtSEC22 in membrane trafficking and cytoskeleton dynamics during plant development. Frontiers Media S.A. 2021-06-04 /pmc/articles/PMC8211912/ /pubmed/34149743 http://dx.doi.org/10.3389/fpls.2021.635732 Text en Copyright © 2021 Guan, Yang, Li, Liu, Liu, Yang, Qin, Wang, Wu, Wang, Feng, Wu, Zhu, Li and Li. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Guan, Li
Yang, Shurui
Li, Shenglin
Liu, Yu
Liu, Yuqi
Yang, Yi
Qin, Guochen
Wang, Haihai
Wu, Tao
Wang, Zhigang
Feng, Xianzhong
Wu, Yongrui
Zhu, Jian-Kang
Li, Xugang
Li, Lixin
AtSEC22 Regulates Cell Morphogenesis via Affecting Cytoskeleton Organization and Stabilities
title AtSEC22 Regulates Cell Morphogenesis via Affecting Cytoskeleton Organization and Stabilities
title_full AtSEC22 Regulates Cell Morphogenesis via Affecting Cytoskeleton Organization and Stabilities
title_fullStr AtSEC22 Regulates Cell Morphogenesis via Affecting Cytoskeleton Organization and Stabilities
title_full_unstemmed AtSEC22 Regulates Cell Morphogenesis via Affecting Cytoskeleton Organization and Stabilities
title_short AtSEC22 Regulates Cell Morphogenesis via Affecting Cytoskeleton Organization and Stabilities
title_sort atsec22 regulates cell morphogenesis via affecting cytoskeleton organization and stabilities
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8211912/
https://www.ncbi.nlm.nih.gov/pubmed/34149743
http://dx.doi.org/10.3389/fpls.2021.635732
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