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OsDDM1b Controls Grain Size by Influencing Cell Cycling and Regulating Homeostasis and Signaling of Brassinosteroid in Rice

Snf2 family proteins are the crucial subunits of chromatin-remodeling complexes (CRCs), which contributes to the biological processes of transcription, replication, and DNA repair using ATP as energy. Some CRC subunits have been confirmed to be the critical regulators in various aspects of plant gro...

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Autores principales: Guo, Mingliang, Zhang, Wenchao, Mohammadi, Mohammad Aqa, He, Zhimei, She, Zeyuan, Yan, Maokai, Shi, Chao, Lin, Lingwei, Wang, Aqiong, Liu, Jindian, Tian, Dagang, Zhao, Heming, Qin, Yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9024357/
https://www.ncbi.nlm.nih.gov/pubmed/35463416
http://dx.doi.org/10.3389/fpls.2022.873993
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author Guo, Mingliang
Zhang, Wenchao
Mohammadi, Mohammad Aqa
He, Zhimei
She, Zeyuan
Yan, Maokai
Shi, Chao
Lin, Lingwei
Wang, Aqiong
Liu, Jindian
Tian, Dagang
Zhao, Heming
Qin, Yuan
author_facet Guo, Mingliang
Zhang, Wenchao
Mohammadi, Mohammad Aqa
He, Zhimei
She, Zeyuan
Yan, Maokai
Shi, Chao
Lin, Lingwei
Wang, Aqiong
Liu, Jindian
Tian, Dagang
Zhao, Heming
Qin, Yuan
author_sort Guo, Mingliang
collection PubMed
description Snf2 family proteins are the crucial subunits of chromatin-remodeling complexes (CRCs), which contributes to the biological processes of transcription, replication, and DNA repair using ATP as energy. Some CRC subunits have been confirmed to be the critical regulators in various aspects of plant growth and development and in epigenetic mechanisms such as histone modification, DNA methylation, and histone variants. However, the functions of Snf2 family genes in rice were poorly investigated. In this study, the relative expression profile of 40 members of Snf2 family in rice was studied at certain developmental stages of seed. Our results revealed that OsCHR741/OsDDM1b (Decrease in DNA methylation 1) was accumulated highly in the early developmental stage of seeds. We further analyzed the OsDDM1b T-DNA insertion loss-of-function of mutant, which exhibited dwarfism, smaller organ size, and shorter and wider grain size than the wild type (Hwayoung, HY), yet no difference in 1,000-grain weight. Consistent with the grain size, the outer parenchyma cell layers of lemma in osddm1b developed more cells with decreased size. OsDDM1b encoded a nucleus, membrane-localized protein and was distributed predominately in young spikelets and seeds, asserting its role in grain size. Meanwhile, the osddm1b was less sensitive to brassinosteroids (BRs) while the endogenous BR levels increased. We detected changes in the expression levels of the BR signaling pathway and feedback-inhibited genes with and without exogenous BR application, and the alterations of expression were also observed in grain size-related genes in the osddm1b. Altogether, our results suggest that OsDDM1b plays a crucial role in grain size via influencing cell proliferation and regulating BR signaling and homeostasis.
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spelling pubmed-90243572022-04-23 OsDDM1b Controls Grain Size by Influencing Cell Cycling and Regulating Homeostasis and Signaling of Brassinosteroid in Rice Guo, Mingliang Zhang, Wenchao Mohammadi, Mohammad Aqa He, Zhimei She, Zeyuan Yan, Maokai Shi, Chao Lin, Lingwei Wang, Aqiong Liu, Jindian Tian, Dagang Zhao, Heming Qin, Yuan Front Plant Sci Plant Science Snf2 family proteins are the crucial subunits of chromatin-remodeling complexes (CRCs), which contributes to the biological processes of transcription, replication, and DNA repair using ATP as energy. Some CRC subunits have been confirmed to be the critical regulators in various aspects of plant growth and development and in epigenetic mechanisms such as histone modification, DNA methylation, and histone variants. However, the functions of Snf2 family genes in rice were poorly investigated. In this study, the relative expression profile of 40 members of Snf2 family in rice was studied at certain developmental stages of seed. Our results revealed that OsCHR741/OsDDM1b (Decrease in DNA methylation 1) was accumulated highly in the early developmental stage of seeds. We further analyzed the OsDDM1b T-DNA insertion loss-of-function of mutant, which exhibited dwarfism, smaller organ size, and shorter and wider grain size than the wild type (Hwayoung, HY), yet no difference in 1,000-grain weight. Consistent with the grain size, the outer parenchyma cell layers of lemma in osddm1b developed more cells with decreased size. OsDDM1b encoded a nucleus, membrane-localized protein and was distributed predominately in young spikelets and seeds, asserting its role in grain size. Meanwhile, the osddm1b was less sensitive to brassinosteroids (BRs) while the endogenous BR levels increased. We detected changes in the expression levels of the BR signaling pathway and feedback-inhibited genes with and without exogenous BR application, and the alterations of expression were also observed in grain size-related genes in the osddm1b. Altogether, our results suggest that OsDDM1b plays a crucial role in grain size via influencing cell proliferation and regulating BR signaling and homeostasis. Frontiers Media S.A. 2022-04-08 /pmc/articles/PMC9024357/ /pubmed/35463416 http://dx.doi.org/10.3389/fpls.2022.873993 Text en Copyright © 2022 Guo, Zhang, Mohammadi, He, She, Yan, Shi, Lin, Wang, Liu, Tian, Zhao and Qin. 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
Guo, Mingliang
Zhang, Wenchao
Mohammadi, Mohammad Aqa
He, Zhimei
She, Zeyuan
Yan, Maokai
Shi, Chao
Lin, Lingwei
Wang, Aqiong
Liu, Jindian
Tian, Dagang
Zhao, Heming
Qin, Yuan
OsDDM1b Controls Grain Size by Influencing Cell Cycling and Regulating Homeostasis and Signaling of Brassinosteroid in Rice
title OsDDM1b Controls Grain Size by Influencing Cell Cycling and Regulating Homeostasis and Signaling of Brassinosteroid in Rice
title_full OsDDM1b Controls Grain Size by Influencing Cell Cycling and Regulating Homeostasis and Signaling of Brassinosteroid in Rice
title_fullStr OsDDM1b Controls Grain Size by Influencing Cell Cycling and Regulating Homeostasis and Signaling of Brassinosteroid in Rice
title_full_unstemmed OsDDM1b Controls Grain Size by Influencing Cell Cycling and Regulating Homeostasis and Signaling of Brassinosteroid in Rice
title_short OsDDM1b Controls Grain Size by Influencing Cell Cycling and Regulating Homeostasis and Signaling of Brassinosteroid in Rice
title_sort osddm1b controls grain size by influencing cell cycling and regulating homeostasis and signaling of brassinosteroid in rice
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9024357/
https://www.ncbi.nlm.nih.gov/pubmed/35463416
http://dx.doi.org/10.3389/fpls.2022.873993
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