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The identification of new candidate genes Triticum aestivum FLOWERING LOCUS T3‐B1 (TaFT3‐B1) and TARGET OF EAT1 (TaTOE1‐B1) controlling the short‐day photoperiod response in bread wheat

Perception of photoperiod changes enables plants to flower under optimum conditions for survival. We used doubled haploid populations of crosses among Avalon × Cadenza, Charger × Badger and Spark × Rialto and identified short‐day flowering time response quantitative trait loci (QTL) on wheat chromos...

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Autores principales: Zikhali, Meluleki, Wingen, Luzie U., Leverington‐Waite, Michelle, Specel, Sebastien, Griffiths, Simon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5669021/
https://www.ncbi.nlm.nih.gov/pubmed/28667827
http://dx.doi.org/10.1111/pce.13018
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author Zikhali, Meluleki
Wingen, Luzie U.
Leverington‐Waite, Michelle
Specel, Sebastien
Griffiths, Simon
author_facet Zikhali, Meluleki
Wingen, Luzie U.
Leverington‐Waite, Michelle
Specel, Sebastien
Griffiths, Simon
author_sort Zikhali, Meluleki
collection PubMed
description Perception of photoperiod changes enables plants to flower under optimum conditions for survival. We used doubled haploid populations of crosses among Avalon × Cadenza, Charger × Badger and Spark × Rialto and identified short‐day flowering time response quantitative trait loci (QTL) on wheat chromosomes 1BS and 1BL. We used synteny between Brachypodium distachyon and wheat to identify potential candidates for both QTL. The 1BL QTL peak coincided with TaFT3‐B1, a homologue of the barley gene HvFT3, the most likely candidate gene. The 1BS QTL peak coincided with homologues of Arabidopsis thaliana S ENSITIVITY TO R ED LIGHT R EDUCED 1, WUSCHEL‐like and RAP2.7, which is also known as Zea mays TARGET OF EAT1, named TaSRR1‐B1, TaWUSCHELL‐B1 and TaTOE1‐B1, respectively. Gene expression assays suggest that TaTOE1‐B1 and TaFT3‐B1 are expressed more during short days. We identified four alleles of TaFT3‐B1 and three alleles of TaTOE1‐B1. We studied the effect of these alleles in the Watkins and GEDIFLUX diversity panels by using 936 and 431 accessions, respectively. Loss of TaFT3‐B1 by deletion was associated with late flowering. Increased TaFT3‐B1 copy number was associated with early flowering, suggesting that TaFT3‐B1 promotes flowering. Significant association was observed in the GEDIFLUX collection for TaTOE1‐B1, a putative flowering repressor.
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spelling pubmed-56690212017-11-15 The identification of new candidate genes Triticum aestivum FLOWERING LOCUS T3‐B1 (TaFT3‐B1) and TARGET OF EAT1 (TaTOE1‐B1) controlling the short‐day photoperiod response in bread wheat Zikhali, Meluleki Wingen, Luzie U. Leverington‐Waite, Michelle Specel, Sebastien Griffiths, Simon Plant Cell Environ Original Articles Perception of photoperiod changes enables plants to flower under optimum conditions for survival. We used doubled haploid populations of crosses among Avalon × Cadenza, Charger × Badger and Spark × Rialto and identified short‐day flowering time response quantitative trait loci (QTL) on wheat chromosomes 1BS and 1BL. We used synteny between Brachypodium distachyon and wheat to identify potential candidates for both QTL. The 1BL QTL peak coincided with TaFT3‐B1, a homologue of the barley gene HvFT3, the most likely candidate gene. The 1BS QTL peak coincided with homologues of Arabidopsis thaliana S ENSITIVITY TO R ED LIGHT R EDUCED 1, WUSCHEL‐like and RAP2.7, which is also known as Zea mays TARGET OF EAT1, named TaSRR1‐B1, TaWUSCHELL‐B1 and TaTOE1‐B1, respectively. Gene expression assays suggest that TaTOE1‐B1 and TaFT3‐B1 are expressed more during short days. We identified four alleles of TaFT3‐B1 and three alleles of TaTOE1‐B1. We studied the effect of these alleles in the Watkins and GEDIFLUX diversity panels by using 936 and 431 accessions, respectively. Loss of TaFT3‐B1 by deletion was associated with late flowering. Increased TaFT3‐B1 copy number was associated with early flowering, suggesting that TaFT3‐B1 promotes flowering. Significant association was observed in the GEDIFLUX collection for TaTOE1‐B1, a putative flowering repressor. John Wiley and Sons Inc. 2017-08-17 2017-11 /pmc/articles/PMC5669021/ /pubmed/28667827 http://dx.doi.org/10.1111/pce.13018 Text en © 2017 The Authors Plant, Cell & Environment Published by John Wiley & Sons Ltd This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Zikhali, Meluleki
Wingen, Luzie U.
Leverington‐Waite, Michelle
Specel, Sebastien
Griffiths, Simon
The identification of new candidate genes Triticum aestivum FLOWERING LOCUS T3‐B1 (TaFT3‐B1) and TARGET OF EAT1 (TaTOE1‐B1) controlling the short‐day photoperiod response in bread wheat
title The identification of new candidate genes Triticum aestivum FLOWERING LOCUS T3‐B1 (TaFT3‐B1) and TARGET OF EAT1 (TaTOE1‐B1) controlling the short‐day photoperiod response in bread wheat
title_full The identification of new candidate genes Triticum aestivum FLOWERING LOCUS T3‐B1 (TaFT3‐B1) and TARGET OF EAT1 (TaTOE1‐B1) controlling the short‐day photoperiod response in bread wheat
title_fullStr The identification of new candidate genes Triticum aestivum FLOWERING LOCUS T3‐B1 (TaFT3‐B1) and TARGET OF EAT1 (TaTOE1‐B1) controlling the short‐day photoperiod response in bread wheat
title_full_unstemmed The identification of new candidate genes Triticum aestivum FLOWERING LOCUS T3‐B1 (TaFT3‐B1) and TARGET OF EAT1 (TaTOE1‐B1) controlling the short‐day photoperiod response in bread wheat
title_short The identification of new candidate genes Triticum aestivum FLOWERING LOCUS T3‐B1 (TaFT3‐B1) and TARGET OF EAT1 (TaTOE1‐B1) controlling the short‐day photoperiod response in bread wheat
title_sort identification of new candidate genes triticum aestivum flowering locus t3‐b1 (taft3‐b1) and target of eat1 (tatoe1‐b1) controlling the short‐day photoperiod response in bread wheat
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5669021/
https://www.ncbi.nlm.nih.gov/pubmed/28667827
http://dx.doi.org/10.1111/pce.13018
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