Cargando…

EARLY FLOWERING 3 interactions with PHYTOCHROME B and PHOTOPERIOD1 are critical for the photoperiodic regulation of wheat heading time

The photoperiodic response is critical for plants to adjust their reproductive phase to the most favorable season. Wheat heads earlier under long days (LD) than under short days (SD) and this difference is mainly regulated by the PHOTOPERIOD1 (PPD1) gene. Tetraploid wheat plants carrying the Ppd-A1a...

Descripción completa

Detalles Bibliográficos
Autores principales: Alvarez, Maria Alejandra, Li, Chengxia, Lin, Huiqiong, Joe, Anna, Padilla, Mariana, Woods, Daniel P., Dubcovsky, Jorge
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10171656/
https://www.ncbi.nlm.nih.gov/pubmed/37163495
http://dx.doi.org/10.1371/journal.pgen.1010655
_version_ 1785039468497993728
author Alvarez, Maria Alejandra
Li, Chengxia
Lin, Huiqiong
Joe, Anna
Padilla, Mariana
Woods, Daniel P.
Dubcovsky, Jorge
author_facet Alvarez, Maria Alejandra
Li, Chengxia
Lin, Huiqiong
Joe, Anna
Padilla, Mariana
Woods, Daniel P.
Dubcovsky, Jorge
author_sort Alvarez, Maria Alejandra
collection PubMed
description The photoperiodic response is critical for plants to adjust their reproductive phase to the most favorable season. Wheat heads earlier under long days (LD) than under short days (SD) and this difference is mainly regulated by the PHOTOPERIOD1 (PPD1) gene. Tetraploid wheat plants carrying the Ppd-A1a allele with a large deletion in the promoter head earlier under SD than plants carrying the wildtype Ppd-A1b allele with an intact promoter. Phytochromes PHYB and PHYC are necessary for the light activation of PPD1, and mutations in either of these genes result in the downregulation of PPD1 and very late heading time. We show here that both effects are reverted when the phyB mutant is combined with loss-of-function mutations in EARLY FLOWERING 3 (ELF3), a component of the Evening Complex (EC) in the circadian clock. We also show that the wheat ELF3 protein interacts with PHYB and PHYC, is rapidly modified by light, and binds to the PPD1 promoter in planta (likely as part of the EC). Deletion of the ELF3 binding region in the Ppd-A1a promoter results in PPD1 upregulation at dawn, similar to PPD1 alleles with intact promoters in the elf3 mutant background. The upregulation of PPD1 is correlated with the upregulation of the florigen gene FLOWERING LOCUS T1 (FT1) and early heading time. Loss-of-function mutations in PPD1 result in the downregulation of FT1 and delayed heading, even when combined with the elf3 mutation. Taken together, these results indicate that ELF3 operates downstream of PHYB as a direct transcriptional repressor of PPD1, and that this repression is relaxed both by light and by the deletion of the ELF3 binding region in the Ppd-A1a promoter. In summary, the regulation of the light mediated activation of PPD1 by ELF3 is critical for the photoperiodic regulation of wheat heading time.
format Online
Article
Text
id pubmed-10171656
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-101716562023-05-11 EARLY FLOWERING 3 interactions with PHYTOCHROME B and PHOTOPERIOD1 are critical for the photoperiodic regulation of wheat heading time Alvarez, Maria Alejandra Li, Chengxia Lin, Huiqiong Joe, Anna Padilla, Mariana Woods, Daniel P. Dubcovsky, Jorge PLoS Genet Research Article The photoperiodic response is critical for plants to adjust their reproductive phase to the most favorable season. Wheat heads earlier under long days (LD) than under short days (SD) and this difference is mainly regulated by the PHOTOPERIOD1 (PPD1) gene. Tetraploid wheat plants carrying the Ppd-A1a allele with a large deletion in the promoter head earlier under SD than plants carrying the wildtype Ppd-A1b allele with an intact promoter. Phytochromes PHYB and PHYC are necessary for the light activation of PPD1, and mutations in either of these genes result in the downregulation of PPD1 and very late heading time. We show here that both effects are reverted when the phyB mutant is combined with loss-of-function mutations in EARLY FLOWERING 3 (ELF3), a component of the Evening Complex (EC) in the circadian clock. We also show that the wheat ELF3 protein interacts with PHYB and PHYC, is rapidly modified by light, and binds to the PPD1 promoter in planta (likely as part of the EC). Deletion of the ELF3 binding region in the Ppd-A1a promoter results in PPD1 upregulation at dawn, similar to PPD1 alleles with intact promoters in the elf3 mutant background. The upregulation of PPD1 is correlated with the upregulation of the florigen gene FLOWERING LOCUS T1 (FT1) and early heading time. Loss-of-function mutations in PPD1 result in the downregulation of FT1 and delayed heading, even when combined with the elf3 mutation. Taken together, these results indicate that ELF3 operates downstream of PHYB as a direct transcriptional repressor of PPD1, and that this repression is relaxed both by light and by the deletion of the ELF3 binding region in the Ppd-A1a promoter. In summary, the regulation of the light mediated activation of PPD1 by ELF3 is critical for the photoperiodic regulation of wheat heading time. Public Library of Science 2023-05-10 /pmc/articles/PMC10171656/ /pubmed/37163495 http://dx.doi.org/10.1371/journal.pgen.1010655 Text en © 2023 Alvarez et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Alvarez, Maria Alejandra
Li, Chengxia
Lin, Huiqiong
Joe, Anna
Padilla, Mariana
Woods, Daniel P.
Dubcovsky, Jorge
EARLY FLOWERING 3 interactions with PHYTOCHROME B and PHOTOPERIOD1 are critical for the photoperiodic regulation of wheat heading time
title EARLY FLOWERING 3 interactions with PHYTOCHROME B and PHOTOPERIOD1 are critical for the photoperiodic regulation of wheat heading time
title_full EARLY FLOWERING 3 interactions with PHYTOCHROME B and PHOTOPERIOD1 are critical for the photoperiodic regulation of wheat heading time
title_fullStr EARLY FLOWERING 3 interactions with PHYTOCHROME B and PHOTOPERIOD1 are critical for the photoperiodic regulation of wheat heading time
title_full_unstemmed EARLY FLOWERING 3 interactions with PHYTOCHROME B and PHOTOPERIOD1 are critical for the photoperiodic regulation of wheat heading time
title_short EARLY FLOWERING 3 interactions with PHYTOCHROME B and PHOTOPERIOD1 are critical for the photoperiodic regulation of wheat heading time
title_sort early flowering 3 interactions with phytochrome b and photoperiod1 are critical for the photoperiodic regulation of wheat heading time
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10171656/
https://www.ncbi.nlm.nih.gov/pubmed/37163495
http://dx.doi.org/10.1371/journal.pgen.1010655
work_keys_str_mv AT alvarezmariaalejandra earlyflowering3interactionswithphytochromebandphotoperiod1arecriticalforthephotoperiodicregulationofwheatheadingtime
AT lichengxia earlyflowering3interactionswithphytochromebandphotoperiod1arecriticalforthephotoperiodicregulationofwheatheadingtime
AT linhuiqiong earlyflowering3interactionswithphytochromebandphotoperiod1arecriticalforthephotoperiodicregulationofwheatheadingtime
AT joeanna earlyflowering3interactionswithphytochromebandphotoperiod1arecriticalforthephotoperiodicregulationofwheatheadingtime
AT padillamariana earlyflowering3interactionswithphytochromebandphotoperiod1arecriticalforthephotoperiodicregulationofwheatheadingtime
AT woodsdanielp earlyflowering3interactionswithphytochromebandphotoperiod1arecriticalforthephotoperiodicregulationofwheatheadingtime
AT dubcovskyjorge earlyflowering3interactionswithphytochromebandphotoperiod1arecriticalforthephotoperiodicregulationofwheatheadingtime