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Fujian cytoplasmic male sterility and the fertility restorer gene OsRf19 provide a promising breeding system for hybrid rice

Cytoplasmic male sterility (CMS) determined by mitochondrial genes and restorer of fertility (Rf) controlled by nuclear-encoded genes provide the breeding systems of many hybrid crops for the utilization of heterosis. Although several CMS/Rf systems have been widely exploited in rice, hybrid breedin...

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Autores principales: Jiang, Haichao, Lu, Qing, Qiu, Shuqing, Yu, Huihui, Wang, Zhengji, Yu, Zhichao, Lu, Yunrui, Wang, Lei, Xia, Fan, Wu, Yuying, Li, Fan, Zhang, Qinglu, Liu, Gang, Song, Dingding, Ma, Chonglie, Ding, Qi, Zhang, Xiaobo, Zhang, Lin, Zhang, Xuetang, Li, Xu, Zhang, Jianwei, Xiao, Jinghua, Li, Xianghua, Wang, Naiyuan, Ouyang, Yidan, Zhou, Fasong, Zhang, Qifa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9407659/
https://www.ncbi.nlm.nih.gov/pubmed/35969741
http://dx.doi.org/10.1073/pnas.2208759119
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author Jiang, Haichao
Lu, Qing
Qiu, Shuqing
Yu, Huihui
Wang, Zhengji
Yu, Zhichao
Lu, Yunrui
Wang, Lei
Xia, Fan
Wu, Yuying
Li, Fan
Zhang, Qinglu
Liu, Gang
Song, Dingding
Ma, Chonglie
Ding, Qi
Zhang, Xiaobo
Zhang, Lin
Zhang, Xuetang
Li, Xu
Zhang, Jianwei
Xiao, Jinghua
Li, Xianghua
Wang, Naiyuan
Ouyang, Yidan
Zhou, Fasong
Zhang, Qifa
author_facet Jiang, Haichao
Lu, Qing
Qiu, Shuqing
Yu, Huihui
Wang, Zhengji
Yu, Zhichao
Lu, Yunrui
Wang, Lei
Xia, Fan
Wu, Yuying
Li, Fan
Zhang, Qinglu
Liu, Gang
Song, Dingding
Ma, Chonglie
Ding, Qi
Zhang, Xiaobo
Zhang, Lin
Zhang, Xuetang
Li, Xu
Zhang, Jianwei
Xiao, Jinghua
Li, Xianghua
Wang, Naiyuan
Ouyang, Yidan
Zhou, Fasong
Zhang, Qifa
author_sort Jiang, Haichao
collection PubMed
description Cytoplasmic male sterility (CMS) determined by mitochondrial genes and restorer of fertility (Rf) controlled by nuclear-encoded genes provide the breeding systems of many hybrid crops for the utilization of heterosis. Although several CMS/Rf systems have been widely exploited in rice, hybrid breeding using these systems has encountered difficulties due to either fertility instability or complications of two-locus inheritance or both. In this work, we characterized a type of CMS, Fujian Abortive cytoplasmic male sterility (CMS-FA), with stable sporophytic male sterility and a nuclear restorer gene that completely restores hybrid fertility. CMS is caused by the chimeric open reading frame FA182 that specifically occurs in the mitochondrial genome of CMS-FA rice. The restorer gene OsRf19 encodes a pentatricopeptide repeat (PPR) protein targeted to mitochondria, where it mediates the cleavage of FA182 transcripts, thus restoring male fertility. Comparative sequence analysis revealed that OsRf19 originated through a recent duplication in wild rice relatives, sharing a common ancestor with OsRf1a/OsRf5, a fertility restorer gene for Boro II and Hong-Lian CMS. We developed six restorer lines by introgressing OsRf19 into parental lines of elite CMS-WA hybrids; hybrids produced from these lines showed equivalent or better agronomic performance relative to their counterparts based on the CMS-WA system. These results demonstrate that CMS-FA/OsRf19 provides a highly promising system for future hybrid rice breeding.
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spelling pubmed-94076592022-08-26 Fujian cytoplasmic male sterility and the fertility restorer gene OsRf19 provide a promising breeding system for hybrid rice Jiang, Haichao Lu, Qing Qiu, Shuqing Yu, Huihui Wang, Zhengji Yu, Zhichao Lu, Yunrui Wang, Lei Xia, Fan Wu, Yuying Li, Fan Zhang, Qinglu Liu, Gang Song, Dingding Ma, Chonglie Ding, Qi Zhang, Xiaobo Zhang, Lin Zhang, Xuetang Li, Xu Zhang, Jianwei Xiao, Jinghua Li, Xianghua Wang, Naiyuan Ouyang, Yidan Zhou, Fasong Zhang, Qifa Proc Natl Acad Sci U S A Biological Sciences Cytoplasmic male sterility (CMS) determined by mitochondrial genes and restorer of fertility (Rf) controlled by nuclear-encoded genes provide the breeding systems of many hybrid crops for the utilization of heterosis. Although several CMS/Rf systems have been widely exploited in rice, hybrid breeding using these systems has encountered difficulties due to either fertility instability or complications of two-locus inheritance or both. In this work, we characterized a type of CMS, Fujian Abortive cytoplasmic male sterility (CMS-FA), with stable sporophytic male sterility and a nuclear restorer gene that completely restores hybrid fertility. CMS is caused by the chimeric open reading frame FA182 that specifically occurs in the mitochondrial genome of CMS-FA rice. The restorer gene OsRf19 encodes a pentatricopeptide repeat (PPR) protein targeted to mitochondria, where it mediates the cleavage of FA182 transcripts, thus restoring male fertility. Comparative sequence analysis revealed that OsRf19 originated through a recent duplication in wild rice relatives, sharing a common ancestor with OsRf1a/OsRf5, a fertility restorer gene for Boro II and Hong-Lian CMS. We developed six restorer lines by introgressing OsRf19 into parental lines of elite CMS-WA hybrids; hybrids produced from these lines showed equivalent or better agronomic performance relative to their counterparts based on the CMS-WA system. These results demonstrate that CMS-FA/OsRf19 provides a highly promising system for future hybrid rice breeding. National Academy of Sciences 2022-08-15 2022-08-23 /pmc/articles/PMC9407659/ /pubmed/35969741 http://dx.doi.org/10.1073/pnas.2208759119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Jiang, Haichao
Lu, Qing
Qiu, Shuqing
Yu, Huihui
Wang, Zhengji
Yu, Zhichao
Lu, Yunrui
Wang, Lei
Xia, Fan
Wu, Yuying
Li, Fan
Zhang, Qinglu
Liu, Gang
Song, Dingding
Ma, Chonglie
Ding, Qi
Zhang, Xiaobo
Zhang, Lin
Zhang, Xuetang
Li, Xu
Zhang, Jianwei
Xiao, Jinghua
Li, Xianghua
Wang, Naiyuan
Ouyang, Yidan
Zhou, Fasong
Zhang, Qifa
Fujian cytoplasmic male sterility and the fertility restorer gene OsRf19 provide a promising breeding system for hybrid rice
title Fujian cytoplasmic male sterility and the fertility restorer gene OsRf19 provide a promising breeding system for hybrid rice
title_full Fujian cytoplasmic male sterility and the fertility restorer gene OsRf19 provide a promising breeding system for hybrid rice
title_fullStr Fujian cytoplasmic male sterility and the fertility restorer gene OsRf19 provide a promising breeding system for hybrid rice
title_full_unstemmed Fujian cytoplasmic male sterility and the fertility restorer gene OsRf19 provide a promising breeding system for hybrid rice
title_short Fujian cytoplasmic male sterility and the fertility restorer gene OsRf19 provide a promising breeding system for hybrid rice
title_sort fujian cytoplasmic male sterility and the fertility restorer gene osrf19 provide a promising breeding system for hybrid rice
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9407659/
https://www.ncbi.nlm.nih.gov/pubmed/35969741
http://dx.doi.org/10.1073/pnas.2208759119
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