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OsNAC129 Regulates Seed Development and Plant Growth and Participates in the Brassinosteroid Signaling Pathway

Grain size and the endosperm starch content determine grain yield and quality in rice. Although these yield components have been intensively studied, their regulatory mechanisms are still largely unknown. In this study, we show that loss-of-function of OsNAC129, a member of the NAC transcription fac...

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Autores principales: Jin, Su-Kui, Zhang, Ming-Qiu, Leng, Yu-Jia, Xu, Li-Na, Jia, Shu-Wen, Wang, Shui-Lian, Song, Tao, Wang, Ruo-An, Yang, Qing-Qing, Tao, Tao, Cai, Xiu-Ling, Gao, Ji-Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9149566/
https://www.ncbi.nlm.nih.gov/pubmed/35651773
http://dx.doi.org/10.3389/fpls.2022.905148
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author Jin, Su-Kui
Zhang, Ming-Qiu
Leng, Yu-Jia
Xu, Li-Na
Jia, Shu-Wen
Wang, Shui-Lian
Song, Tao
Wang, Ruo-An
Yang, Qing-Qing
Tao, Tao
Cai, Xiu-Ling
Gao, Ji-Ping
author_facet Jin, Su-Kui
Zhang, Ming-Qiu
Leng, Yu-Jia
Xu, Li-Na
Jia, Shu-Wen
Wang, Shui-Lian
Song, Tao
Wang, Ruo-An
Yang, Qing-Qing
Tao, Tao
Cai, Xiu-Ling
Gao, Ji-Ping
author_sort Jin, Su-Kui
collection PubMed
description Grain size and the endosperm starch content determine grain yield and quality in rice. Although these yield components have been intensively studied, their regulatory mechanisms are still largely unknown. In this study, we show that loss-of-function of OsNAC129, a member of the NAC transcription factor gene family that has its highest expression in the immature seed, greatly increased grain length, grain weight, apparent amylose content (AAC), and plant height. Overexpression of OsNAC129 had the opposite effect, significantly decreasing grain width, grain weight, AAC, and plant height. Cytological observation of the outer epidermal cells of the lemma using a scanning electron microscope (SEM) revealed that increased grain length in the osnac129 mutant was due to increased cell length compared with wild-type (WT) plants. The expression of OsPGL1 and OsPGL2, two positive grain-size regulators that control cell elongation, was consistently upregulated in osnac129 mutant plants but downregulated in OsNAC129 overexpression plants. Furthermore, we also found that several starch synthase-encoding genes, including OsGBSSI, were upregulated in the osnac129 mutant and downregulated in the overexpression plants compared with WT plants, implying a negative regulatory role for OsNAC129 both in grain size and starch biosynthesis. Additionally, we found that the expression of OsNAC129 was induced exclusively by abscisic acid (ABA) in seedlings, but OsNAC129-overexpressing plants displayed reduced sensitivity to exogenous brassinolide (BR). Therefore, the results of our study demonstrate that OsNAC129 negatively regulates seed development and plant growth, and further suggest that OsNAC129 participates in the BR signaling pathway.
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spelling pubmed-91495662022-05-31 OsNAC129 Regulates Seed Development and Plant Growth and Participates in the Brassinosteroid Signaling Pathway Jin, Su-Kui Zhang, Ming-Qiu Leng, Yu-Jia Xu, Li-Na Jia, Shu-Wen Wang, Shui-Lian Song, Tao Wang, Ruo-An Yang, Qing-Qing Tao, Tao Cai, Xiu-Ling Gao, Ji-Ping Front Plant Sci Plant Science Grain size and the endosperm starch content determine grain yield and quality in rice. Although these yield components have been intensively studied, their regulatory mechanisms are still largely unknown. In this study, we show that loss-of-function of OsNAC129, a member of the NAC transcription factor gene family that has its highest expression in the immature seed, greatly increased grain length, grain weight, apparent amylose content (AAC), and plant height. Overexpression of OsNAC129 had the opposite effect, significantly decreasing grain width, grain weight, AAC, and plant height. Cytological observation of the outer epidermal cells of the lemma using a scanning electron microscope (SEM) revealed that increased grain length in the osnac129 mutant was due to increased cell length compared with wild-type (WT) plants. The expression of OsPGL1 and OsPGL2, two positive grain-size regulators that control cell elongation, was consistently upregulated in osnac129 mutant plants but downregulated in OsNAC129 overexpression plants. Furthermore, we also found that several starch synthase-encoding genes, including OsGBSSI, were upregulated in the osnac129 mutant and downregulated in the overexpression plants compared with WT plants, implying a negative regulatory role for OsNAC129 both in grain size and starch biosynthesis. Additionally, we found that the expression of OsNAC129 was induced exclusively by abscisic acid (ABA) in seedlings, but OsNAC129-overexpressing plants displayed reduced sensitivity to exogenous brassinolide (BR). Therefore, the results of our study demonstrate that OsNAC129 negatively regulates seed development and plant growth, and further suggest that OsNAC129 participates in the BR signaling pathway. Frontiers Media S.A. 2022-05-16 /pmc/articles/PMC9149566/ /pubmed/35651773 http://dx.doi.org/10.3389/fpls.2022.905148 Text en Copyright © 2022 Jin, Zhang, Leng, Xu, Jia, Wang, Song, Wang, Yang, Tao, Cai and Gao. 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
Jin, Su-Kui
Zhang, Ming-Qiu
Leng, Yu-Jia
Xu, Li-Na
Jia, Shu-Wen
Wang, Shui-Lian
Song, Tao
Wang, Ruo-An
Yang, Qing-Qing
Tao, Tao
Cai, Xiu-Ling
Gao, Ji-Ping
OsNAC129 Regulates Seed Development and Plant Growth and Participates in the Brassinosteroid Signaling Pathway
title OsNAC129 Regulates Seed Development and Plant Growth and Participates in the Brassinosteroid Signaling Pathway
title_full OsNAC129 Regulates Seed Development and Plant Growth and Participates in the Brassinosteroid Signaling Pathway
title_fullStr OsNAC129 Regulates Seed Development and Plant Growth and Participates in the Brassinosteroid Signaling Pathway
title_full_unstemmed OsNAC129 Regulates Seed Development and Plant Growth and Participates in the Brassinosteroid Signaling Pathway
title_short OsNAC129 Regulates Seed Development and Plant Growth and Participates in the Brassinosteroid Signaling Pathway
title_sort osnac129 regulates seed development and plant growth and participates in the brassinosteroid signaling pathway
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9149566/
https://www.ncbi.nlm.nih.gov/pubmed/35651773
http://dx.doi.org/10.3389/fpls.2022.905148
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