Natural variation in CTB4a enhances rice adaptation to cold habitats

Low temperature is a major factor limiting productivity in rice. Here the authors show that theCTB4a gene confers cold tolerance to japonicavarieties adapted to cold habitats at the booting stage of development, and propose that CTB4a acts via an interaction with the beta subunit of ATP synthase.

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Autores principales: Zhanying Zhang, Jinjie Li, Yinghua Pan, Jilong Li, Lei zhou, Hongli Shi, Yawen Zeng, Haifeng Guo, Shuming Yang, Weiwei Zheng, Jianping Yu, Xingming Sun, Gangling Li, Yanglin Ding, Liang Ma, Shiquan Shen, Luyuan Dai, Hongliang Zhang, Shuhua Yang, Yan Guo, Zichao Li
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/904f0dcea42841b08ba234d14174db9c
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spelling oai:doaj.org-article:904f0dcea42841b08ba234d14174db9c2021-12-02T17:06:13ZNatural variation in CTB4a enhances rice adaptation to cold habitats10.1038/ncomms147882041-1723https://doaj.org/article/904f0dcea42841b08ba234d14174db9c2017-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms14788https://doaj.org/toc/2041-1723Low temperature is a major factor limiting productivity in rice. Here the authors show that theCTB4a gene confers cold tolerance to japonicavarieties adapted to cold habitats at the booting stage of development, and propose that CTB4a acts via an interaction with the beta subunit of ATP synthase.Zhanying ZhangJinjie LiYinghua PanJilong LiLei zhouHongli ShiYawen ZengHaifeng GuoShuming YangWeiwei ZhengJianping YuXingming SunGangling LiYanglin DingLiang MaShiquan ShenLuyuan DaiHongliang ZhangShuhua YangYan GuoZichao LiNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-13 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zhanying Zhang
Jinjie Li
Yinghua Pan
Jilong Li
Lei zhou
Hongli Shi
Yawen Zeng
Haifeng Guo
Shuming Yang
Weiwei Zheng
Jianping Yu
Xingming Sun
Gangling Li
Yanglin Ding
Liang Ma
Shiquan Shen
Luyuan Dai
Hongliang Zhang
Shuhua Yang
Yan Guo
Zichao Li
Natural variation in CTB4a enhances rice adaptation to cold habitats
description Low temperature is a major factor limiting productivity in rice. Here the authors show that theCTB4a gene confers cold tolerance to japonicavarieties adapted to cold habitats at the booting stage of development, and propose that CTB4a acts via an interaction with the beta subunit of ATP synthase.
format article
author Zhanying Zhang
Jinjie Li
Yinghua Pan
Jilong Li
Lei zhou
Hongli Shi
Yawen Zeng
Haifeng Guo
Shuming Yang
Weiwei Zheng
Jianping Yu
Xingming Sun
Gangling Li
Yanglin Ding
Liang Ma
Shiquan Shen
Luyuan Dai
Hongliang Zhang
Shuhua Yang
Yan Guo
Zichao Li
author_facet Zhanying Zhang
Jinjie Li
Yinghua Pan
Jilong Li
Lei zhou
Hongli Shi
Yawen Zeng
Haifeng Guo
Shuming Yang
Weiwei Zheng
Jianping Yu
Xingming Sun
Gangling Li
Yanglin Ding
Liang Ma
Shiquan Shen
Luyuan Dai
Hongliang Zhang
Shuhua Yang
Yan Guo
Zichao Li
author_sort Zhanying Zhang
title Natural variation in CTB4a enhances rice adaptation to cold habitats
title_short Natural variation in CTB4a enhances rice adaptation to cold habitats
title_full Natural variation in CTB4a enhances rice adaptation to cold habitats
title_fullStr Natural variation in CTB4a enhances rice adaptation to cold habitats
title_full_unstemmed Natural variation in CTB4a enhances rice adaptation to cold habitats
title_sort natural variation in ctb4a enhances rice adaptation to cold habitats
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/904f0dcea42841b08ba234d14174db9c
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