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The General Transcription Repressor TaDr1 Is Co-expressed With TaVrn1 and TaFT1 in Bread Wheat Under Drought

The general transcription repressor, TaDr1 gene, was identified during screening of a wheat SNP database using the Amplifluor-like SNP marker KATU-W62. Together with two genes described earlier, TaDr1A and TaDr1B, they represent a set of three homeologous genes in the wheat genome. Under drought, th...

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Autores principales: Zotova, Lyudmila, Kurishbayev, Akhylbek, Jatayev, Satyvaldy, Goncharov, Nikolay P., Shamambayeva, Nazgul, Kashapov, Azamat, Nuralov, Arystan, Otemissova, Ainur, Sereda, Sergey, Shvidchenko, Vladimir, Lopato, Sergiy, Schramm, Carly, Jenkins, Colin, Soole, Kathleen, Langridge, Peter, Shavrukov, Yuri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6375888/
https://www.ncbi.nlm.nih.gov/pubmed/30800144
http://dx.doi.org/10.3389/fgene.2019.00063
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author Zotova, Lyudmila
Kurishbayev, Akhylbek
Jatayev, Satyvaldy
Goncharov, Nikolay P.
Shamambayeva, Nazgul
Kashapov, Azamat
Nuralov, Arystan
Otemissova, Ainur
Sereda, Sergey
Shvidchenko, Vladimir
Lopato, Sergiy
Schramm, Carly
Jenkins, Colin
Soole, Kathleen
Langridge, Peter
Shavrukov, Yuri
author_facet Zotova, Lyudmila
Kurishbayev, Akhylbek
Jatayev, Satyvaldy
Goncharov, Nikolay P.
Shamambayeva, Nazgul
Kashapov, Azamat
Nuralov, Arystan
Otemissova, Ainur
Sereda, Sergey
Shvidchenko, Vladimir
Lopato, Sergiy
Schramm, Carly
Jenkins, Colin
Soole, Kathleen
Langridge, Peter
Shavrukov, Yuri
author_sort Zotova, Lyudmila
collection PubMed
description The general transcription repressor, TaDr1 gene, was identified during screening of a wheat SNP database using the Amplifluor-like SNP marker KATU-W62. Together with two genes described earlier, TaDr1A and TaDr1B, they represent a set of three homeologous genes in the wheat genome. Under drought, the total expression profiles of all three genes varied between different bread wheat cultivars. Plants of four high-yielding cultivars exposed to drought showed a 2.0–2.4-fold increase in TaDr1 expression compared to controls. Less strong, but significant 1.3–1.8-fold up-regulation of the TaDr1 transcript levels was observed in four low-yielding cultivars. TaVrn1 and TaFT1, which controls the transition to flowering, revealed similar profiles of expression as TaDr1. Expression levels of all three genes were in good correlation with grain yields of evaluated cultivars growing in the field under water-limited conditions. The results could indicate the involvement of all three genes in the same regulatory pathway, where the general transcription repressor TaDr1 may control expression of TaVrn1 and TaFT1 and, consequently, flowering time. The strength of these genes expression can lead to phenological changes that affect plant productivity and hence explain differences in the adaptation of the examined wheat cultivars to the dry environment of Northern and Central Kazakhstan. The Amplifluor-like SNP marker KATU-W62 used in this work can be applied to the identification of wheat cultivars differing in alleles at the TaDr1 locus and in screening hybrids.
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spelling pubmed-63758882019-02-22 The General Transcription Repressor TaDr1 Is Co-expressed With TaVrn1 and TaFT1 in Bread Wheat Under Drought Zotova, Lyudmila Kurishbayev, Akhylbek Jatayev, Satyvaldy Goncharov, Nikolay P. Shamambayeva, Nazgul Kashapov, Azamat Nuralov, Arystan Otemissova, Ainur Sereda, Sergey Shvidchenko, Vladimir Lopato, Sergiy Schramm, Carly Jenkins, Colin Soole, Kathleen Langridge, Peter Shavrukov, Yuri Front Genet Genetics The general transcription repressor, TaDr1 gene, was identified during screening of a wheat SNP database using the Amplifluor-like SNP marker KATU-W62. Together with two genes described earlier, TaDr1A and TaDr1B, they represent a set of three homeologous genes in the wheat genome. Under drought, the total expression profiles of all three genes varied between different bread wheat cultivars. Plants of four high-yielding cultivars exposed to drought showed a 2.0–2.4-fold increase in TaDr1 expression compared to controls. Less strong, but significant 1.3–1.8-fold up-regulation of the TaDr1 transcript levels was observed in four low-yielding cultivars. TaVrn1 and TaFT1, which controls the transition to flowering, revealed similar profiles of expression as TaDr1. Expression levels of all three genes were in good correlation with grain yields of evaluated cultivars growing in the field under water-limited conditions. The results could indicate the involvement of all three genes in the same regulatory pathway, where the general transcription repressor TaDr1 may control expression of TaVrn1 and TaFT1 and, consequently, flowering time. The strength of these genes expression can lead to phenological changes that affect plant productivity and hence explain differences in the adaptation of the examined wheat cultivars to the dry environment of Northern and Central Kazakhstan. The Amplifluor-like SNP marker KATU-W62 used in this work can be applied to the identification of wheat cultivars differing in alleles at the TaDr1 locus and in screening hybrids. Frontiers Media S.A. 2019-02-08 /pmc/articles/PMC6375888/ /pubmed/30800144 http://dx.doi.org/10.3389/fgene.2019.00063 Text en Copyright © 2019 Zotova, Kurishbayev, Jatayev, Goncharov, Shamambayeva, Kashapov, Nuralov, Otemissova, Sereda, Shvidchenko, Lopato, Schramm, Jenkins, Soole, Langridge and Shavrukov. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Zotova, Lyudmila
Kurishbayev, Akhylbek
Jatayev, Satyvaldy
Goncharov, Nikolay P.
Shamambayeva, Nazgul
Kashapov, Azamat
Nuralov, Arystan
Otemissova, Ainur
Sereda, Sergey
Shvidchenko, Vladimir
Lopato, Sergiy
Schramm, Carly
Jenkins, Colin
Soole, Kathleen
Langridge, Peter
Shavrukov, Yuri
The General Transcription Repressor TaDr1 Is Co-expressed With TaVrn1 and TaFT1 in Bread Wheat Under Drought
title The General Transcription Repressor TaDr1 Is Co-expressed With TaVrn1 and TaFT1 in Bread Wheat Under Drought
title_full The General Transcription Repressor TaDr1 Is Co-expressed With TaVrn1 and TaFT1 in Bread Wheat Under Drought
title_fullStr The General Transcription Repressor TaDr1 Is Co-expressed With TaVrn1 and TaFT1 in Bread Wheat Under Drought
title_full_unstemmed The General Transcription Repressor TaDr1 Is Co-expressed With TaVrn1 and TaFT1 in Bread Wheat Under Drought
title_short The General Transcription Repressor TaDr1 Is Co-expressed With TaVrn1 and TaFT1 in Bread Wheat Under Drought
title_sort general transcription repressor tadr1 is co-expressed with tavrn1 and taft1 in bread wheat under drought
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6375888/
https://www.ncbi.nlm.nih.gov/pubmed/30800144
http://dx.doi.org/10.3389/fgene.2019.00063
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