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Integrated Analysis of Microarray, Small RNA, and Degradome Datasets Uncovers the Role of MicroRNAs in Temperature-Sensitive Genic Male Sterility in Wheat

Temperature-sensitive genic male sterile (TGMS) line Beijing Sterility 366 (BS366) has been utilized in hybrid breeding for a long time, but the molecular mechanism underlying male sterility remains unclear. Expression arrays, small RNA, and degradome sequencing were used in this study to explore th...

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Autores principales: Liu, Yongjie, Li, Dan, Zhang, Shengquan, Zhang, Liping, Gong, Jie, Li, Yanhong, Chen, Jiamin, Zhang, Fengting, Liao, Xiangzheng, Chen, Zhaobo, Wang, Yongbo, Pang, Binshuang, Ma, Jinxiu, Chen, Xianchao, Gao, Jiangang, Zhao, Changping, Gao, Shiqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9332412/
https://www.ncbi.nlm.nih.gov/pubmed/35897633
http://dx.doi.org/10.3390/ijms23158057
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author Liu, Yongjie
Li, Dan
Zhang, Shengquan
Zhang, Liping
Gong, Jie
Li, Yanhong
Chen, Jiamin
Zhang, Fengting
Liao, Xiangzheng
Chen, Zhaobo
Wang, Yongbo
Pang, Binshuang
Ma, Jinxiu
Chen, Xianchao
Gao, Jiangang
Zhao, Changping
Gao, Shiqing
author_facet Liu, Yongjie
Li, Dan
Zhang, Shengquan
Zhang, Liping
Gong, Jie
Li, Yanhong
Chen, Jiamin
Zhang, Fengting
Liao, Xiangzheng
Chen, Zhaobo
Wang, Yongbo
Pang, Binshuang
Ma, Jinxiu
Chen, Xianchao
Gao, Jiangang
Zhao, Changping
Gao, Shiqing
author_sort Liu, Yongjie
collection PubMed
description Temperature-sensitive genic male sterile (TGMS) line Beijing Sterility 366 (BS366) has been utilized in hybrid breeding for a long time, but the molecular mechanism underlying male sterility remains unclear. Expression arrays, small RNA, and degradome sequencing were used in this study to explore the potential role of miRNA in the cold-induced male sterility of BS366. Microspore observation showed defective cell plates in dyads and tetrads and shrunken microspores at the vacuolated stage. Differential regulation of Golgi vesicle transport, phragmoplast formation, sporopollenin biosynthesis, pollen exine formation, and lipid metabolism were observed between cold and control conditions. Pollen development was significantly represented in the 352 antagonistic miRNA-target pairs in the integrated analysis of miRNA and mRNA profiles. The specific cleavage of ARF17 and TIR1 by miR160 and miR393 were found in the cold-treated BS366 degradome, respectively. Thus, the cold-mediated miRNAs impaired cell plate formation through repression of Golgi vesicle transport and phragmoplast formation. The repressed expression of ARF17 and TIR1 impaired pollen exine formation. The results of this study will contribute to our understanding of the roles of miRNAs in male sterility in wheat.
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spelling pubmed-93324122022-07-29 Integrated Analysis of Microarray, Small RNA, and Degradome Datasets Uncovers the Role of MicroRNAs in Temperature-Sensitive Genic Male Sterility in Wheat Liu, Yongjie Li, Dan Zhang, Shengquan Zhang, Liping Gong, Jie Li, Yanhong Chen, Jiamin Zhang, Fengting Liao, Xiangzheng Chen, Zhaobo Wang, Yongbo Pang, Binshuang Ma, Jinxiu Chen, Xianchao Gao, Jiangang Zhao, Changping Gao, Shiqing Int J Mol Sci Article Temperature-sensitive genic male sterile (TGMS) line Beijing Sterility 366 (BS366) has been utilized in hybrid breeding for a long time, but the molecular mechanism underlying male sterility remains unclear. Expression arrays, small RNA, and degradome sequencing were used in this study to explore the potential role of miRNA in the cold-induced male sterility of BS366. Microspore observation showed defective cell plates in dyads and tetrads and shrunken microspores at the vacuolated stage. Differential regulation of Golgi vesicle transport, phragmoplast formation, sporopollenin biosynthesis, pollen exine formation, and lipid metabolism were observed between cold and control conditions. Pollen development was significantly represented in the 352 antagonistic miRNA-target pairs in the integrated analysis of miRNA and mRNA profiles. The specific cleavage of ARF17 and TIR1 by miR160 and miR393 were found in the cold-treated BS366 degradome, respectively. Thus, the cold-mediated miRNAs impaired cell plate formation through repression of Golgi vesicle transport and phragmoplast formation. The repressed expression of ARF17 and TIR1 impaired pollen exine formation. The results of this study will contribute to our understanding of the roles of miRNAs in male sterility in wheat. MDPI 2022-07-22 /pmc/articles/PMC9332412/ /pubmed/35897633 http://dx.doi.org/10.3390/ijms23158057 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Yongjie
Li, Dan
Zhang, Shengquan
Zhang, Liping
Gong, Jie
Li, Yanhong
Chen, Jiamin
Zhang, Fengting
Liao, Xiangzheng
Chen, Zhaobo
Wang, Yongbo
Pang, Binshuang
Ma, Jinxiu
Chen, Xianchao
Gao, Jiangang
Zhao, Changping
Gao, Shiqing
Integrated Analysis of Microarray, Small RNA, and Degradome Datasets Uncovers the Role of MicroRNAs in Temperature-Sensitive Genic Male Sterility in Wheat
title Integrated Analysis of Microarray, Small RNA, and Degradome Datasets Uncovers the Role of MicroRNAs in Temperature-Sensitive Genic Male Sterility in Wheat
title_full Integrated Analysis of Microarray, Small RNA, and Degradome Datasets Uncovers the Role of MicroRNAs in Temperature-Sensitive Genic Male Sterility in Wheat
title_fullStr Integrated Analysis of Microarray, Small RNA, and Degradome Datasets Uncovers the Role of MicroRNAs in Temperature-Sensitive Genic Male Sterility in Wheat
title_full_unstemmed Integrated Analysis of Microarray, Small RNA, and Degradome Datasets Uncovers the Role of MicroRNAs in Temperature-Sensitive Genic Male Sterility in Wheat
title_short Integrated Analysis of Microarray, Small RNA, and Degradome Datasets Uncovers the Role of MicroRNAs in Temperature-Sensitive Genic Male Sterility in Wheat
title_sort integrated analysis of microarray, small rna, and degradome datasets uncovers the role of micrornas in temperature-sensitive genic male sterility in wheat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9332412/
https://www.ncbi.nlm.nih.gov/pubmed/35897633
http://dx.doi.org/10.3390/ijms23158057
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