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Strong photoperiod sensitivity is controlled by cooperation and competition among Hd1, Ghd7 and DTH8 in rice heading

Rice (Oryza sativa) is a short‐day (SD) plant originally having strong photoperiod sensitivity (PS), with SDs promoting and long days (LDs) suppressing flowering. Although the evolution of PS in rice has been extensively studied, there are few studies that combine the genetic effects and underlying...

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Autores principales: Zong, Wubei, Ren, Ding, Huang, Minghui, Sun, Kangli, Feng, Jinglei, Zhao, Jing, Xiao, Dongdong, Xie, Wenhao, Liu, Shiqi, Zhang, Han, Qiu, Rong, Tang, Wenjing, Yang, Ruqi, Chen, Hongyi, Xie, Xianrong, Chen, Letian, Liu, Yao‐Guang, Guo, Jingxin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7821112/
https://www.ncbi.nlm.nih.gov/pubmed/33089895
http://dx.doi.org/10.1111/nph.16946
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author Zong, Wubei
Ren, Ding
Huang, Minghui
Sun, Kangli
Feng, Jinglei
Zhao, Jing
Xiao, Dongdong
Xie, Wenhao
Liu, Shiqi
Zhang, Han
Qiu, Rong
Tang, Wenjing
Yang, Ruqi
Chen, Hongyi
Xie, Xianrong
Chen, Letian
Liu, Yao‐Guang
Guo, Jingxin
author_facet Zong, Wubei
Ren, Ding
Huang, Minghui
Sun, Kangli
Feng, Jinglei
Zhao, Jing
Xiao, Dongdong
Xie, Wenhao
Liu, Shiqi
Zhang, Han
Qiu, Rong
Tang, Wenjing
Yang, Ruqi
Chen, Hongyi
Xie, Xianrong
Chen, Letian
Liu, Yao‐Guang
Guo, Jingxin
author_sort Zong, Wubei
collection PubMed
description Rice (Oryza sativa) is a short‐day (SD) plant originally having strong photoperiod sensitivity (PS), with SDs promoting and long days (LDs) suppressing flowering. Although the evolution of PS in rice has been extensively studied, there are few studies that combine the genetic effects and underlying mechanism of different PS gene combinations with variations in PS. We created a set of isogenic lines among the core PS‐flowering genes Hd1, Ghd7 and DTH8 using CRISPR mutagenesis, to systematically dissect their genetic relationships under different day‐lengths. We investigated their monogenic, digenic, and trigenic effects on target gene regulation and PS variation. We found that Hd1 and Ghd7 have the primary functions for promoting and repressing flowering, respectively, regardless of day‐length. However, under LD conditions, Hd1 promotes Ghd7 expression and is recruited by Ghd7 and/or DTH8 to form repressive complexes that collaboratively suppress the Ehd1‐Hd3a/RFT1 pathway to block heading, but under SD conditions Hd1 competes with the complexes to promote Hd3a/RFT1 expression, playing a tradeoff relationship with PS flowering. Natural allelic variations of Hd1, Ghd7 and DTH8 in rice populations have resulted in various PS performances. Our findings reveal that rice PS flowering is controlled by crosstalk of two modules – Hd1–Hd3a/RFT1 in SD conditions and (Hd1/Ghd7/DTH8)–Ehd1–Hd3a/RFT1 in LD conditions – and the divergences of these genes provide the basis for rice adaptation to broad regions.
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spelling pubmed-78211122021-01-26 Strong photoperiod sensitivity is controlled by cooperation and competition among Hd1, Ghd7 and DTH8 in rice heading Zong, Wubei Ren, Ding Huang, Minghui Sun, Kangli Feng, Jinglei Zhao, Jing Xiao, Dongdong Xie, Wenhao Liu, Shiqi Zhang, Han Qiu, Rong Tang, Wenjing Yang, Ruqi Chen, Hongyi Xie, Xianrong Chen, Letian Liu, Yao‐Guang Guo, Jingxin New Phytol Research Rice (Oryza sativa) is a short‐day (SD) plant originally having strong photoperiod sensitivity (PS), with SDs promoting and long days (LDs) suppressing flowering. Although the evolution of PS in rice has been extensively studied, there are few studies that combine the genetic effects and underlying mechanism of different PS gene combinations with variations in PS. We created a set of isogenic lines among the core PS‐flowering genes Hd1, Ghd7 and DTH8 using CRISPR mutagenesis, to systematically dissect their genetic relationships under different day‐lengths. We investigated their monogenic, digenic, and trigenic effects on target gene regulation and PS variation. We found that Hd1 and Ghd7 have the primary functions for promoting and repressing flowering, respectively, regardless of day‐length. However, under LD conditions, Hd1 promotes Ghd7 expression and is recruited by Ghd7 and/or DTH8 to form repressive complexes that collaboratively suppress the Ehd1‐Hd3a/RFT1 pathway to block heading, but under SD conditions Hd1 competes with the complexes to promote Hd3a/RFT1 expression, playing a tradeoff relationship with PS flowering. Natural allelic variations of Hd1, Ghd7 and DTH8 in rice populations have resulted in various PS performances. Our findings reveal that rice PS flowering is controlled by crosstalk of two modules – Hd1–Hd3a/RFT1 in SD conditions and (Hd1/Ghd7/DTH8)–Ehd1–Hd3a/RFT1 in LD conditions – and the divergences of these genes provide the basis for rice adaptation to broad regions. John Wiley and Sons Inc. 2020-10-22 2021-02 /pmc/articles/PMC7821112/ /pubmed/33089895 http://dx.doi.org/10.1111/nph.16946 Text en ©2020 The Authors New Phytologist ©2020 New Phytologist Foundation This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research
Zong, Wubei
Ren, Ding
Huang, Minghui
Sun, Kangli
Feng, Jinglei
Zhao, Jing
Xiao, Dongdong
Xie, Wenhao
Liu, Shiqi
Zhang, Han
Qiu, Rong
Tang, Wenjing
Yang, Ruqi
Chen, Hongyi
Xie, Xianrong
Chen, Letian
Liu, Yao‐Guang
Guo, Jingxin
Strong photoperiod sensitivity is controlled by cooperation and competition among Hd1, Ghd7 and DTH8 in rice heading
title Strong photoperiod sensitivity is controlled by cooperation and competition among Hd1, Ghd7 and DTH8 in rice heading
title_full Strong photoperiod sensitivity is controlled by cooperation and competition among Hd1, Ghd7 and DTH8 in rice heading
title_fullStr Strong photoperiod sensitivity is controlled by cooperation and competition among Hd1, Ghd7 and DTH8 in rice heading
title_full_unstemmed Strong photoperiod sensitivity is controlled by cooperation and competition among Hd1, Ghd7 and DTH8 in rice heading
title_short Strong photoperiod sensitivity is controlled by cooperation and competition among Hd1, Ghd7 and DTH8 in rice heading
title_sort strong photoperiod sensitivity is controlled by cooperation and competition among hd1, ghd7 and dth8 in rice heading
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7821112/
https://www.ncbi.nlm.nih.gov/pubmed/33089895
http://dx.doi.org/10.1111/nph.16946
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