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Dynamic Transcriptome Analysis of Anther Response to Heat Stress during Anthesis in Thermotolerant Rice (Oryza sativa L.)

High temperature at anthesis is one of the most serious stress factors for rice (Oryza sativa L.) production, causing irreversible yield losses and reduces grain quality. Illustration of thermotolerance mechanism is of great importance to accelerate rice breeding aimed at thermotolerance improvement...

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Autores principales: Liu, Gang, Zha, Zhongping, Cai, Haiya, Qin, Dandan, Jia, Haitao, Liu, Changyan, Qiu, Dongfeng, Zhang, Zaijun, Wan, Zhenghuang, Yang, Yuanyuan, Wan, Bingliang, You, Aiqing, Jiao, Chunhai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7037497/
https://www.ncbi.nlm.nih.gov/pubmed/32050518
http://dx.doi.org/10.3390/ijms21031155
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author Liu, Gang
Zha, Zhongping
Cai, Haiya
Qin, Dandan
Jia, Haitao
Liu, Changyan
Qiu, Dongfeng
Zhang, Zaijun
Wan, Zhenghuang
Yang, Yuanyuan
Wan, Bingliang
You, Aiqing
Jiao, Chunhai
author_facet Liu, Gang
Zha, Zhongping
Cai, Haiya
Qin, Dandan
Jia, Haitao
Liu, Changyan
Qiu, Dongfeng
Zhang, Zaijun
Wan, Zhenghuang
Yang, Yuanyuan
Wan, Bingliang
You, Aiqing
Jiao, Chunhai
author_sort Liu, Gang
collection PubMed
description High temperature at anthesis is one of the most serious stress factors for rice (Oryza sativa L.) production, causing irreversible yield losses and reduces grain quality. Illustration of thermotolerance mechanism is of great importance to accelerate rice breeding aimed at thermotolerance improvement. Here, we identified a new thermotolerant germplasm, SDWG005. Microscopical analysis found that stable anther structure of SDWG005 under stress may contribute to its thermotolerance. Dynamic transcriptomic analysis totally identified 3559 differentially expressed genes (DEGs) in SDWG005 anthers at anthesis under heat treatments, including 477, 869, 2335, and 2210 for 1, 2, 6, and 12 h, respectively; however, only 131 were regulated across all four-time-points. The DEGs were divided into nine clusters according to their expressions in these heat treatments. Further analysis indicated that some main gene categories involved in heat-response of SDWG005 anthers, such as transcription factors, nucleic acid and protein metabolisms related genes, etc. Comparison with previous studies indicates that a core gene-set may exist for thermotolerance mechanism. Expression and polymorphic analysis of agmatine-coumarin-acyltransferase gene OsACT in different accessions suggested that it may involve in SDWG005 thermotolerance. This study improves our understanding of thermotolerance mechanisms in rice anthers during anthesis, and also lays foundation for breeding thermotolerant varieties via molecular breeding.
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spelling pubmed-70374972020-03-11 Dynamic Transcriptome Analysis of Anther Response to Heat Stress during Anthesis in Thermotolerant Rice (Oryza sativa L.) Liu, Gang Zha, Zhongping Cai, Haiya Qin, Dandan Jia, Haitao Liu, Changyan Qiu, Dongfeng Zhang, Zaijun Wan, Zhenghuang Yang, Yuanyuan Wan, Bingliang You, Aiqing Jiao, Chunhai Int J Mol Sci Article High temperature at anthesis is one of the most serious stress factors for rice (Oryza sativa L.) production, causing irreversible yield losses and reduces grain quality. Illustration of thermotolerance mechanism is of great importance to accelerate rice breeding aimed at thermotolerance improvement. Here, we identified a new thermotolerant germplasm, SDWG005. Microscopical analysis found that stable anther structure of SDWG005 under stress may contribute to its thermotolerance. Dynamic transcriptomic analysis totally identified 3559 differentially expressed genes (DEGs) in SDWG005 anthers at anthesis under heat treatments, including 477, 869, 2335, and 2210 for 1, 2, 6, and 12 h, respectively; however, only 131 were regulated across all four-time-points. The DEGs were divided into nine clusters according to their expressions in these heat treatments. Further analysis indicated that some main gene categories involved in heat-response of SDWG005 anthers, such as transcription factors, nucleic acid and protein metabolisms related genes, etc. Comparison with previous studies indicates that a core gene-set may exist for thermotolerance mechanism. Expression and polymorphic analysis of agmatine-coumarin-acyltransferase gene OsACT in different accessions suggested that it may involve in SDWG005 thermotolerance. This study improves our understanding of thermotolerance mechanisms in rice anthers during anthesis, and also lays foundation for breeding thermotolerant varieties via molecular breeding. MDPI 2020-02-10 /pmc/articles/PMC7037497/ /pubmed/32050518 http://dx.doi.org/10.3390/ijms21031155 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Gang
Zha, Zhongping
Cai, Haiya
Qin, Dandan
Jia, Haitao
Liu, Changyan
Qiu, Dongfeng
Zhang, Zaijun
Wan, Zhenghuang
Yang, Yuanyuan
Wan, Bingliang
You, Aiqing
Jiao, Chunhai
Dynamic Transcriptome Analysis of Anther Response to Heat Stress during Anthesis in Thermotolerant Rice (Oryza sativa L.)
title Dynamic Transcriptome Analysis of Anther Response to Heat Stress during Anthesis in Thermotolerant Rice (Oryza sativa L.)
title_full Dynamic Transcriptome Analysis of Anther Response to Heat Stress during Anthesis in Thermotolerant Rice (Oryza sativa L.)
title_fullStr Dynamic Transcriptome Analysis of Anther Response to Heat Stress during Anthesis in Thermotolerant Rice (Oryza sativa L.)
title_full_unstemmed Dynamic Transcriptome Analysis of Anther Response to Heat Stress during Anthesis in Thermotolerant Rice (Oryza sativa L.)
title_short Dynamic Transcriptome Analysis of Anther Response to Heat Stress during Anthesis in Thermotolerant Rice (Oryza sativa L.)
title_sort dynamic transcriptome analysis of anther response to heat stress during anthesis in thermotolerant rice (oryza sativa l.)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7037497/
https://www.ncbi.nlm.nih.gov/pubmed/32050518
http://dx.doi.org/10.3390/ijms21031155
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