Dissecting a heterotic gene through GradedPool-Seq mapping informs a rice-improvement strategy
Developing hybrid rice cultivars requires time consuming random crossing. Here, the authors develop a new next generation sequencing-based quantitative trait locus mapping method to dissect heterotic gene OsMADS1 and demonstrate the feasibility of pyramiding two genes to achieve large heterotic effe...
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Nature Portfolio
2019
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oai:doaj.org-article:975226e2341241df87881ec2e7bc4b4c2021-12-02T16:57:31ZDissecting a heterotic gene through GradedPool-Seq mapping informs a rice-improvement strategy10.1038/s41467-019-11017-y2041-1723https://doaj.org/article/975226e2341241df87881ec2e7bc4b4c2019-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-11017-yhttps://doaj.org/toc/2041-1723Developing hybrid rice cultivars requires time consuming random crossing. Here, the authors develop a new next generation sequencing-based quantitative trait locus mapping method to dissect heterotic gene OsMADS1 and demonstrate the feasibility of pyramiding two genes to achieve large heterotic effect.Changsheng WangShican TangQilin ZhanQingqing HouYan ZhaoQiang ZhaoQi FengCongcong ZhouDanfeng LyuLingling CuiYan LiJiashun MiaoChuanrang ZhuYiqi LuYongchun WangZiqun WangJingjie ZhuYingying ShangguanJunyi GongShihua YangWuqi WangJianfu ZhangHuaan XieXuehui HuangBin HanNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-12 (2019) |
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Science Q Changsheng Wang Shican Tang Qilin Zhan Qingqing Hou Yan Zhao Qiang Zhao Qi Feng Congcong Zhou Danfeng Lyu Lingling Cui Yan Li Jiashun Miao Chuanrang Zhu Yiqi Lu Yongchun Wang Ziqun Wang Jingjie Zhu Yingying Shangguan Junyi Gong Shihua Yang Wuqi Wang Jianfu Zhang Huaan Xie Xuehui Huang Bin Han Dissecting a heterotic gene through GradedPool-Seq mapping informs a rice-improvement strategy |
description |
Developing hybrid rice cultivars requires time consuming random crossing. Here, the authors develop a new next generation sequencing-based quantitative trait locus mapping method to dissect heterotic gene OsMADS1 and demonstrate the feasibility of pyramiding two genes to achieve large heterotic effect. |
format |
article |
author |
Changsheng Wang Shican Tang Qilin Zhan Qingqing Hou Yan Zhao Qiang Zhao Qi Feng Congcong Zhou Danfeng Lyu Lingling Cui Yan Li Jiashun Miao Chuanrang Zhu Yiqi Lu Yongchun Wang Ziqun Wang Jingjie Zhu Yingying Shangguan Junyi Gong Shihua Yang Wuqi Wang Jianfu Zhang Huaan Xie Xuehui Huang Bin Han |
author_facet |
Changsheng Wang Shican Tang Qilin Zhan Qingqing Hou Yan Zhao Qiang Zhao Qi Feng Congcong Zhou Danfeng Lyu Lingling Cui Yan Li Jiashun Miao Chuanrang Zhu Yiqi Lu Yongchun Wang Ziqun Wang Jingjie Zhu Yingying Shangguan Junyi Gong Shihua Yang Wuqi Wang Jianfu Zhang Huaan Xie Xuehui Huang Bin Han |
author_sort |
Changsheng Wang |
title |
Dissecting a heterotic gene through GradedPool-Seq mapping informs a rice-improvement strategy |
title_short |
Dissecting a heterotic gene through GradedPool-Seq mapping informs a rice-improvement strategy |
title_full |
Dissecting a heterotic gene through GradedPool-Seq mapping informs a rice-improvement strategy |
title_fullStr |
Dissecting a heterotic gene through GradedPool-Seq mapping informs a rice-improvement strategy |
title_full_unstemmed |
Dissecting a heterotic gene through GradedPool-Seq mapping informs a rice-improvement strategy |
title_sort |
dissecting a heterotic gene through gradedpool-seq mapping informs a rice-improvement strategy |
publisher |
Nature Portfolio |
publishDate |
2019 |
url |
https://doaj.org/article/975226e2341241df87881ec2e7bc4b4c |
work_keys_str_mv |
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