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Molecular regulation of ZmMs7 required for maize male fertility and development of a dominant male-sterility system in multiple species

Understanding the molecular basis of male sterility and developing practical male-sterility systems are essential for heterosis utilization and commercial hybrid seed production in crops. Here, we report molecular regulation by genic male-sterility gene maize male sterility 7 (ZmMs7) and its applica...

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Autores principales: An, Xueli, Ma, Biao, Duan, Meijuan, Dong, Zhenying, Liu, Ruogu, Yuan, Dingyang, Hou, Quancan, Wu, Suowei, Zhang, Danfeng, Liu, Dongcheng, Yu, Dong, Zhang, Yuwen, Xie, Ke, Zhu, Taotao, Li, Ziwen, Zhang, Simiao, Tian, Youhui, Liu, Chang, Li, Jinping, Yuan, Longping, Wan, Xiangyuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7519223/
https://www.ncbi.nlm.nih.gov/pubmed/32907946
http://dx.doi.org/10.1073/pnas.2010255117
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author An, Xueli
Ma, Biao
Duan, Meijuan
Dong, Zhenying
Liu, Ruogu
Yuan, Dingyang
Hou, Quancan
Wu, Suowei
Zhang, Danfeng
Liu, Dongcheng
Yu, Dong
Zhang, Yuwen
Xie, Ke
Zhu, Taotao
Li, Ziwen
Zhang, Simiao
Tian, Youhui
Liu, Chang
Li, Jinping
Yuan, Longping
Wan, Xiangyuan
author_facet An, Xueli
Ma, Biao
Duan, Meijuan
Dong, Zhenying
Liu, Ruogu
Yuan, Dingyang
Hou, Quancan
Wu, Suowei
Zhang, Danfeng
Liu, Dongcheng
Yu, Dong
Zhang, Yuwen
Xie, Ke
Zhu, Taotao
Li, Ziwen
Zhang, Simiao
Tian, Youhui
Liu, Chang
Li, Jinping
Yuan, Longping
Wan, Xiangyuan
author_sort An, Xueli
collection PubMed
description Understanding the molecular basis of male sterility and developing practical male-sterility systems are essential for heterosis utilization and commercial hybrid seed production in crops. Here, we report molecular regulation by genic male-sterility gene maize male sterility 7 (ZmMs7) and its application for developing a dominant male-sterility system in multiple species. ZmMs7 is specifically expressed in maize anthers, encodes a plant homeodomain (PHD) finger protein that functions as a transcriptional activator, and plays a key role in tapetal development and pollen exine formation. ZmMs7 can interact with maize nuclear factor Y (NF-Y) subunits to form ZmMs7-NF-YA6-YB2-YC9/12/15 protein complexes that activate target genes by directly binding to CCAAT box in their promoter regions. Premature expression of ZmMs7 in maize by an anther-specific promoter p5126 results in dominant and complete male sterility but normal vegetative growth and female fertility. Early expression of ZmMs7 downstream genes induced by prematurely expressed ZmMs7 leads to abnormal tapetal development and pollen exine formation in p5126-ZmMs7 maize lines. The p5126-ZmMs7 transgenic rice and Arabidopsis plants display similar dominant male sterility. Meanwhile, the mCherry gene coupled with p5126-ZmMs7 facilitates the sorting of dominant sterility seeds based on fluorescent selection. In addition, both the ms7-6007 recessive male-sterility line and p5126-ZmMs7M dominant male-sterility line are highly stable under different genetic germplasms and thus applicable for hybrid maize breeding. Together, our work provides insight into the mechanisms of anther and pollen development and a promising technology for hybrid seed production in crops.
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spelling pubmed-75192232020-10-07 Molecular regulation of ZmMs7 required for maize male fertility and development of a dominant male-sterility system in multiple species An, Xueli Ma, Biao Duan, Meijuan Dong, Zhenying Liu, Ruogu Yuan, Dingyang Hou, Quancan Wu, Suowei Zhang, Danfeng Liu, Dongcheng Yu, Dong Zhang, Yuwen Xie, Ke Zhu, Taotao Li, Ziwen Zhang, Simiao Tian, Youhui Liu, Chang Li, Jinping Yuan, Longping Wan, Xiangyuan Proc Natl Acad Sci U S A Biological Sciences Understanding the molecular basis of male sterility and developing practical male-sterility systems are essential for heterosis utilization and commercial hybrid seed production in crops. Here, we report molecular regulation by genic male-sterility gene maize male sterility 7 (ZmMs7) and its application for developing a dominant male-sterility system in multiple species. ZmMs7 is specifically expressed in maize anthers, encodes a plant homeodomain (PHD) finger protein that functions as a transcriptional activator, and plays a key role in tapetal development and pollen exine formation. ZmMs7 can interact with maize nuclear factor Y (NF-Y) subunits to form ZmMs7-NF-YA6-YB2-YC9/12/15 protein complexes that activate target genes by directly binding to CCAAT box in their promoter regions. Premature expression of ZmMs7 in maize by an anther-specific promoter p5126 results in dominant and complete male sterility but normal vegetative growth and female fertility. Early expression of ZmMs7 downstream genes induced by prematurely expressed ZmMs7 leads to abnormal tapetal development and pollen exine formation in p5126-ZmMs7 maize lines. The p5126-ZmMs7 transgenic rice and Arabidopsis plants display similar dominant male sterility. Meanwhile, the mCherry gene coupled with p5126-ZmMs7 facilitates the sorting of dominant sterility seeds based on fluorescent selection. In addition, both the ms7-6007 recessive male-sterility line and p5126-ZmMs7M dominant male-sterility line are highly stable under different genetic germplasms and thus applicable for hybrid maize breeding. Together, our work provides insight into the mechanisms of anther and pollen development and a promising technology for hybrid seed production in crops. National Academy of Sciences 2020-09-22 2020-09-09 /pmc/articles/PMC7519223/ /pubmed/32907946 http://dx.doi.org/10.1073/pnas.2010255117 Text en Copyright © 2020 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
An, Xueli
Ma, Biao
Duan, Meijuan
Dong, Zhenying
Liu, Ruogu
Yuan, Dingyang
Hou, Quancan
Wu, Suowei
Zhang, Danfeng
Liu, Dongcheng
Yu, Dong
Zhang, Yuwen
Xie, Ke
Zhu, Taotao
Li, Ziwen
Zhang, Simiao
Tian, Youhui
Liu, Chang
Li, Jinping
Yuan, Longping
Wan, Xiangyuan
Molecular regulation of ZmMs7 required for maize male fertility and development of a dominant male-sterility system in multiple species
title Molecular regulation of ZmMs7 required for maize male fertility and development of a dominant male-sterility system in multiple species
title_full Molecular regulation of ZmMs7 required for maize male fertility and development of a dominant male-sterility system in multiple species
title_fullStr Molecular regulation of ZmMs7 required for maize male fertility and development of a dominant male-sterility system in multiple species
title_full_unstemmed Molecular regulation of ZmMs7 required for maize male fertility and development of a dominant male-sterility system in multiple species
title_short Molecular regulation of ZmMs7 required for maize male fertility and development of a dominant male-sterility system in multiple species
title_sort molecular regulation of zmms7 required for maize male fertility and development of a dominant male-sterility system in multiple species
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7519223/
https://www.ncbi.nlm.nih.gov/pubmed/32907946
http://dx.doi.org/10.1073/pnas.2010255117
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