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Misregulation of ER-Golgi Vesicle Transport Induces ER Stress and Affects Seed Vigor and Stress Response

Seeds of higher plants accumulate numerous storage proteins to use as nitrogen resources for early plant development. Seed storage proteins (SSPs) are synthesized as large precursors on the rough endoplasmic reticulum (rER), and are delivered to protein storage vacuoles (PSVs) via vesicle transport,...

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Autores principales: Zhao, Xiaonan, Guo, Xiufen, Tang, Xiaofei, Zhang, Hailong, Wang, Mingjing, Kong, Yun, Zhang, Xiaomeng, Zhao, Zhenjie, Lv, Min, Li, Lixin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5968616/
https://www.ncbi.nlm.nih.gov/pubmed/29868102
http://dx.doi.org/10.3389/fpls.2018.00658
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author Zhao, Xiaonan
Guo, Xiufen
Tang, Xiaofei
Zhang, Hailong
Wang, Mingjing
Kong, Yun
Zhang, Xiaomeng
Zhao, Zhenjie
Lv, Min
Li, Lixin
author_facet Zhao, Xiaonan
Guo, Xiufen
Tang, Xiaofei
Zhang, Hailong
Wang, Mingjing
Kong, Yun
Zhang, Xiaomeng
Zhao, Zhenjie
Lv, Min
Li, Lixin
author_sort Zhao, Xiaonan
collection PubMed
description Seeds of higher plants accumulate numerous storage proteins to use as nitrogen resources for early plant development. Seed storage proteins (SSPs) are synthesized as large precursors on the rough endoplasmic reticulum (rER), and are delivered to protein storage vacuoles (PSVs) via vesicle transport, where they are processed to mature forms. We previously identified an Arabidopsis ER-localized tethering complex, MAG2 complex, which might be involved in Golgi to ER retrograde transport. The MAG2 complex is composed of 4 subunits, MAG2, MIP1, MIP2, and MIP3. Mutants with defective alleles for these subunits accumulated SSP precursors inside the ER lumen. Here, we report that the mag2-1 mip3-1 and mip2-1 mip3-1 double mutant have more serious vesicle transport defects than the mag2-1, mip2-1, and mip3-1 single mutants, since they accumulate more SSP precursors than the corresponding single mutants, and ER stress is more severe than the single mutants. The mag2-1 mip3-1 and mip2-1 mip3-1 double mutants show growth and developmental defects rather than the single mutants. Both single and double mutant seeds are found to have lower protein content and decreased germinating vigor than wild type seeds. All the mutants are sensitive to abscisic acid (ABA) and salt stress, and exhibit alteration in ABA signaling pathway. Our study clarified that ER-Golgi vesicle transport affects seed vigor through controlling seed protein quality and content, as well as plant response to environmental stress via influencing ABA signaling pathway.
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spelling pubmed-59686162018-06-04 Misregulation of ER-Golgi Vesicle Transport Induces ER Stress and Affects Seed Vigor and Stress Response Zhao, Xiaonan Guo, Xiufen Tang, Xiaofei Zhang, Hailong Wang, Mingjing Kong, Yun Zhang, Xiaomeng Zhao, Zhenjie Lv, Min Li, Lixin Front Plant Sci Plant Science Seeds of higher plants accumulate numerous storage proteins to use as nitrogen resources for early plant development. Seed storage proteins (SSPs) are synthesized as large precursors on the rough endoplasmic reticulum (rER), and are delivered to protein storage vacuoles (PSVs) via vesicle transport, where they are processed to mature forms. We previously identified an Arabidopsis ER-localized tethering complex, MAG2 complex, which might be involved in Golgi to ER retrograde transport. The MAG2 complex is composed of 4 subunits, MAG2, MIP1, MIP2, and MIP3. Mutants with defective alleles for these subunits accumulated SSP precursors inside the ER lumen. Here, we report that the mag2-1 mip3-1 and mip2-1 mip3-1 double mutant have more serious vesicle transport defects than the mag2-1, mip2-1, and mip3-1 single mutants, since they accumulate more SSP precursors than the corresponding single mutants, and ER stress is more severe than the single mutants. The mag2-1 mip3-1 and mip2-1 mip3-1 double mutants show growth and developmental defects rather than the single mutants. Both single and double mutant seeds are found to have lower protein content and decreased germinating vigor than wild type seeds. All the mutants are sensitive to abscisic acid (ABA) and salt stress, and exhibit alteration in ABA signaling pathway. Our study clarified that ER-Golgi vesicle transport affects seed vigor through controlling seed protein quality and content, as well as plant response to environmental stress via influencing ABA signaling pathway. Frontiers Media S.A. 2018-05-18 /pmc/articles/PMC5968616/ /pubmed/29868102 http://dx.doi.org/10.3389/fpls.2018.00658 Text en Copyright © 2018 Zhao, Guo, Tang, Zhang, Wang, Kong, Zhang, Zhao, Lv and Li. http://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 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
Zhao, Xiaonan
Guo, Xiufen
Tang, Xiaofei
Zhang, Hailong
Wang, Mingjing
Kong, Yun
Zhang, Xiaomeng
Zhao, Zhenjie
Lv, Min
Li, Lixin
Misregulation of ER-Golgi Vesicle Transport Induces ER Stress and Affects Seed Vigor and Stress Response
title Misregulation of ER-Golgi Vesicle Transport Induces ER Stress and Affects Seed Vigor and Stress Response
title_full Misregulation of ER-Golgi Vesicle Transport Induces ER Stress and Affects Seed Vigor and Stress Response
title_fullStr Misregulation of ER-Golgi Vesicle Transport Induces ER Stress and Affects Seed Vigor and Stress Response
title_full_unstemmed Misregulation of ER-Golgi Vesicle Transport Induces ER Stress and Affects Seed Vigor and Stress Response
title_short Misregulation of ER-Golgi Vesicle Transport Induces ER Stress and Affects Seed Vigor and Stress Response
title_sort misregulation of er-golgi vesicle transport induces er stress and affects seed vigor and stress response
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5968616/
https://www.ncbi.nlm.nih.gov/pubmed/29868102
http://dx.doi.org/10.3389/fpls.2018.00658
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