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Response to early drought stress and identification of QTLs controlling biomass production under drought in pearl millet

Pearl millet plays a major role in food security in arid and semi-arid areas of Africa and India. However, it lags behind the other cereal crops in terms of genetic improvement. The recent sequencing of its genome opens the way to the use of modern genomic tools for breeding. Our study aimed at iden...

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Autores principales: Debieu, Marilyne, Sine, Bassirou, Passot, Sixtine, Grondin, Alexandre, Akata, Eyanawa, Gangashetty, Prakash, Vadez, Vincent, Gantet, Pascal, Foncéka, Daniel, Cournac, Laurent, Hash, Charles Tom, Kane, Ndjido Ardo, Vigouroux, Yves, Laplaze, Laurent
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6201870/
https://www.ncbi.nlm.nih.gov/pubmed/30359386
http://dx.doi.org/10.1371/journal.pone.0201635
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author Debieu, Marilyne
Sine, Bassirou
Passot, Sixtine
Grondin, Alexandre
Akata, Eyanawa
Gangashetty, Prakash
Vadez, Vincent
Gantet, Pascal
Foncéka, Daniel
Cournac, Laurent
Hash, Charles Tom
Kane, Ndjido Ardo
Vigouroux, Yves
Laplaze, Laurent
author_facet Debieu, Marilyne
Sine, Bassirou
Passot, Sixtine
Grondin, Alexandre
Akata, Eyanawa
Gangashetty, Prakash
Vadez, Vincent
Gantet, Pascal
Foncéka, Daniel
Cournac, Laurent
Hash, Charles Tom
Kane, Ndjido Ardo
Vigouroux, Yves
Laplaze, Laurent
author_sort Debieu, Marilyne
collection PubMed
description Pearl millet plays a major role in food security in arid and semi-arid areas of Africa and India. However, it lags behind the other cereal crops in terms of genetic improvement. The recent sequencing of its genome opens the way to the use of modern genomic tools for breeding. Our study aimed at identifying genetic components involved in early drought stress tolerance as a first step toward the development of improved pearl millet varieties or hybrids. A panel of 188 inbred lines from West Africa was phenotyped under early drought stress and well-irrigated conditions. We found a strong impact of drought stress on yield components. This impact was variable between inbred lines. We then performed an association analysis with a total of 392,493 SNPs identified using Genotyping-by-Sequencing (GBS). Correcting for genetic relatedness, genome wide association study identified QTLs for biomass production in early drought stress conditions and for stay-green trait. In particular, genes involved in the sirohaem and wax biosynthesis pathways were found to co-locate with two of these QTLs. Our results might contribute to breed pearl millet lines with improved yield under drought stress.
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spelling pubmed-62018702018-11-19 Response to early drought stress and identification of QTLs controlling biomass production under drought in pearl millet Debieu, Marilyne Sine, Bassirou Passot, Sixtine Grondin, Alexandre Akata, Eyanawa Gangashetty, Prakash Vadez, Vincent Gantet, Pascal Foncéka, Daniel Cournac, Laurent Hash, Charles Tom Kane, Ndjido Ardo Vigouroux, Yves Laplaze, Laurent PLoS One Research Article Pearl millet plays a major role in food security in arid and semi-arid areas of Africa and India. However, it lags behind the other cereal crops in terms of genetic improvement. The recent sequencing of its genome opens the way to the use of modern genomic tools for breeding. Our study aimed at identifying genetic components involved in early drought stress tolerance as a first step toward the development of improved pearl millet varieties or hybrids. A panel of 188 inbred lines from West Africa was phenotyped under early drought stress and well-irrigated conditions. We found a strong impact of drought stress on yield components. This impact was variable between inbred lines. We then performed an association analysis with a total of 392,493 SNPs identified using Genotyping-by-Sequencing (GBS). Correcting for genetic relatedness, genome wide association study identified QTLs for biomass production in early drought stress conditions and for stay-green trait. In particular, genes involved in the sirohaem and wax biosynthesis pathways were found to co-locate with two of these QTLs. Our results might contribute to breed pearl millet lines with improved yield under drought stress. Public Library of Science 2018-10-25 /pmc/articles/PMC6201870/ /pubmed/30359386 http://dx.doi.org/10.1371/journal.pone.0201635 Text en © 2018 Debieu 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 (http://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
Debieu, Marilyne
Sine, Bassirou
Passot, Sixtine
Grondin, Alexandre
Akata, Eyanawa
Gangashetty, Prakash
Vadez, Vincent
Gantet, Pascal
Foncéka, Daniel
Cournac, Laurent
Hash, Charles Tom
Kane, Ndjido Ardo
Vigouroux, Yves
Laplaze, Laurent
Response to early drought stress and identification of QTLs controlling biomass production under drought in pearl millet
title Response to early drought stress and identification of QTLs controlling biomass production under drought in pearl millet
title_full Response to early drought stress and identification of QTLs controlling biomass production under drought in pearl millet
title_fullStr Response to early drought stress and identification of QTLs controlling biomass production under drought in pearl millet
title_full_unstemmed Response to early drought stress and identification of QTLs controlling biomass production under drought in pearl millet
title_short Response to early drought stress and identification of QTLs controlling biomass production under drought in pearl millet
title_sort response to early drought stress and identification of qtls controlling biomass production under drought in pearl millet
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6201870/
https://www.ncbi.nlm.nih.gov/pubmed/30359386
http://dx.doi.org/10.1371/journal.pone.0201635
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