Cargando…

Ehd4 Encodes a Novel and Oryza-Genus-Specific Regulator of Photoperiodic Flowering in Rice

Land plants have evolved increasingly complex regulatory modes of their flowering time (or heading date in crops). Rice (Oryza sativa L.) is a short-day plant that flowers more rapidly in short-day but delays under long-day conditions. Previous studies have shown that the CO-FT module initially iden...

Descripción completa

Detalles Bibliográficos
Autores principales: Gao, He, Zheng, Xiao-Ming, Fei, Guilin, Chen, Jun, Jin, Mingna, Ren, Yulong, Wu, Weixun, Zhou, Kunneng, Sheng, Peike, Zhou, Feng, Jiang, Ling, Wang, Jie, Zhang, Xin, Guo, Xiuping, Wang, Jiu-Lin, Cheng, Zhijun, Wu, Chuanyin, Wang, Haiyang, Wan, Jian-Min
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3578780/
https://www.ncbi.nlm.nih.gov/pubmed/23437005
http://dx.doi.org/10.1371/journal.pgen.1003281
_version_ 1782260038011715584
author Gao, He
Zheng, Xiao-Ming
Fei, Guilin
Chen, Jun
Jin, Mingna
Ren, Yulong
Wu, Weixun
Zhou, Kunneng
Sheng, Peike
Zhou, Feng
Jiang, Ling
Wang, Jie
Zhang, Xin
Guo, Xiuping
Wang, Jiu-Lin
Cheng, Zhijun
Wu, Chuanyin
Wang, Haiyang
Wan, Jian-Min
author_facet Gao, He
Zheng, Xiao-Ming
Fei, Guilin
Chen, Jun
Jin, Mingna
Ren, Yulong
Wu, Weixun
Zhou, Kunneng
Sheng, Peike
Zhou, Feng
Jiang, Ling
Wang, Jie
Zhang, Xin
Guo, Xiuping
Wang, Jiu-Lin
Cheng, Zhijun
Wu, Chuanyin
Wang, Haiyang
Wan, Jian-Min
author_sort Gao, He
collection PubMed
description Land plants have evolved increasingly complex regulatory modes of their flowering time (or heading date in crops). Rice (Oryza sativa L.) is a short-day plant that flowers more rapidly in short-day but delays under long-day conditions. Previous studies have shown that the CO-FT module initially identified in long-day plants (Arabidopsis) is evolutionary conserved in short-day plants (Hd1-Hd3a in rice). However, in rice, there is a unique Ehd1-dependent flowering pathway that is Hd1-independent. Here, we report isolation and characterization of a positive regulator of Ehd1, Early heading date 4 (Ehd4). ehd4 mutants showed a never flowering phenotype under natural long-day conditions. Map-based cloning revealed that Ehd4 encodes a novel CCCH-type zinc finger protein, which is localized to the nucleus and is able to bind to nucleic acids in vitro and transactivate transcription in yeast, suggesting that it likely functions as a transcriptional regulator. Ehd4 expression is most active in young leaves with a diurnal expression pattern similar to that of Ehd1 under both short-day and long-day conditions. We show that Ehd4 up-regulates the expression of the “florigen” genes Hd3a and RFT1 through Ehd1, but it acts independently of other known Ehd1 regulators. Strikingly, Ehd4 is highly conserved in the Oryza genus including wild and cultivated rice, but has no homologs in other species, suggesting that Ehd4 is originated along with the diversification of the Oryza genus from the grass family during evolution. We conclude that Ehd4 is a novel Oryza-genus-specific regulator of Ehd1, and it plays an essential role in photoperiodic control of flowering time in rice.
format Online
Article
Text
id pubmed-3578780
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35787802013-02-22 Ehd4 Encodes a Novel and Oryza-Genus-Specific Regulator of Photoperiodic Flowering in Rice Gao, He Zheng, Xiao-Ming Fei, Guilin Chen, Jun Jin, Mingna Ren, Yulong Wu, Weixun Zhou, Kunneng Sheng, Peike Zhou, Feng Jiang, Ling Wang, Jie Zhang, Xin Guo, Xiuping Wang, Jiu-Lin Cheng, Zhijun Wu, Chuanyin Wang, Haiyang Wan, Jian-Min PLoS Genet Research Article Land plants have evolved increasingly complex regulatory modes of their flowering time (or heading date in crops). Rice (Oryza sativa L.) is a short-day plant that flowers more rapidly in short-day but delays under long-day conditions. Previous studies have shown that the CO-FT module initially identified in long-day plants (Arabidopsis) is evolutionary conserved in short-day plants (Hd1-Hd3a in rice). However, in rice, there is a unique Ehd1-dependent flowering pathway that is Hd1-independent. Here, we report isolation and characterization of a positive regulator of Ehd1, Early heading date 4 (Ehd4). ehd4 mutants showed a never flowering phenotype under natural long-day conditions. Map-based cloning revealed that Ehd4 encodes a novel CCCH-type zinc finger protein, which is localized to the nucleus and is able to bind to nucleic acids in vitro and transactivate transcription in yeast, suggesting that it likely functions as a transcriptional regulator. Ehd4 expression is most active in young leaves with a diurnal expression pattern similar to that of Ehd1 under both short-day and long-day conditions. We show that Ehd4 up-regulates the expression of the “florigen” genes Hd3a and RFT1 through Ehd1, but it acts independently of other known Ehd1 regulators. Strikingly, Ehd4 is highly conserved in the Oryza genus including wild and cultivated rice, but has no homologs in other species, suggesting that Ehd4 is originated along with the diversification of the Oryza genus from the grass family during evolution. We conclude that Ehd4 is a novel Oryza-genus-specific regulator of Ehd1, and it plays an essential role in photoperiodic control of flowering time in rice. Public Library of Science 2013-02-21 /pmc/articles/PMC3578780/ /pubmed/23437005 http://dx.doi.org/10.1371/journal.pgen.1003281 Text en © 2013 Gao et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Gao, He
Zheng, Xiao-Ming
Fei, Guilin
Chen, Jun
Jin, Mingna
Ren, Yulong
Wu, Weixun
Zhou, Kunneng
Sheng, Peike
Zhou, Feng
Jiang, Ling
Wang, Jie
Zhang, Xin
Guo, Xiuping
Wang, Jiu-Lin
Cheng, Zhijun
Wu, Chuanyin
Wang, Haiyang
Wan, Jian-Min
Ehd4 Encodes a Novel and Oryza-Genus-Specific Regulator of Photoperiodic Flowering in Rice
title Ehd4 Encodes a Novel and Oryza-Genus-Specific Regulator of Photoperiodic Flowering in Rice
title_full Ehd4 Encodes a Novel and Oryza-Genus-Specific Regulator of Photoperiodic Flowering in Rice
title_fullStr Ehd4 Encodes a Novel and Oryza-Genus-Specific Regulator of Photoperiodic Flowering in Rice
title_full_unstemmed Ehd4 Encodes a Novel and Oryza-Genus-Specific Regulator of Photoperiodic Flowering in Rice
title_short Ehd4 Encodes a Novel and Oryza-Genus-Specific Regulator of Photoperiodic Flowering in Rice
title_sort ehd4 encodes a novel and oryza-genus-specific regulator of photoperiodic flowering in rice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3578780/
https://www.ncbi.nlm.nih.gov/pubmed/23437005
http://dx.doi.org/10.1371/journal.pgen.1003281
work_keys_str_mv AT gaohe ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT zhengxiaoming ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT feiguilin ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT chenjun ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT jinmingna ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT renyulong ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT wuweixun ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT zhoukunneng ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT shengpeike ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT zhoufeng ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT jiangling ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT wangjie ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT zhangxin ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT guoxiuping ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT wangjiulin ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT chengzhijun ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT wuchuanyin ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT wanghaiyang ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice
AT wanjianmin ehd4encodesanovelandoryzagenusspecificregulatorofphotoperiodicfloweringinrice