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Quantitative trait locus analysis of resistance to panicle blast in the rice cultivar Miyazakimochi

BACKGROUND: Rice blast is a destructive disease caused by Magnaporthe oryzae, and it has a large impact on rice production worldwide. Compared with leaf blast resistance, our understanding of panicle blast resistance is limited, with only one panicle blast resistance gene, Pb1, isolated so far. The...

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Autores principales: Ishihara, Takeaki, Hayano-Saito, Yuriko, Oide, Shinichi, Ebana, Kaworu, La, Nghia Tuan, Hayashi, Keiko, Ashizawa, Taketo, Suzuki, Fumihiko, Koizumi, Shinzo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4052777/
https://www.ncbi.nlm.nih.gov/pubmed/24920970
http://dx.doi.org/10.1186/s12284-014-0002-9
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author Ishihara, Takeaki
Hayano-Saito, Yuriko
Oide, Shinichi
Ebana, Kaworu
La, Nghia Tuan
Hayashi, Keiko
Ashizawa, Taketo
Suzuki, Fumihiko
Koizumi, Shinzo
author_facet Ishihara, Takeaki
Hayano-Saito, Yuriko
Oide, Shinichi
Ebana, Kaworu
La, Nghia Tuan
Hayashi, Keiko
Ashizawa, Taketo
Suzuki, Fumihiko
Koizumi, Shinzo
author_sort Ishihara, Takeaki
collection PubMed
description BACKGROUND: Rice blast is a destructive disease caused by Magnaporthe oryzae, and it has a large impact on rice production worldwide. Compared with leaf blast resistance, our understanding of panicle blast resistance is limited, with only one panicle blast resistance gene, Pb1, isolated so far. The japonica cultivar Miyazakimochi shows resistance to panicle blast, yet the genetic components accounting for this resistance remain to be determined. RESULTS: In this study, we evaluated the panicle blast resistance of populations derived from a cross between Miyazakimochi and the Bikei 22 cultivar, which is susceptible to both leaf and panicle blast. The phenotypic analyses revealed no correlation between panicle blast resistance and leaf blast resistance. Quantitative trait locus (QTL) analysis of 158 recombinant inbred lines using 112 developed genome-wide and 35 previously reported polymerase chain reaction (PCR) markers revealed the presence of two QTLs conferring panicle blast resistance in Miyazakimochi: a major QTL, qPbm11, on chromosome 11; and a minor QTL, qPbm9, on chromosome 9. To clarify the contribution of these QTLs to panicle blast resistance, 24 lines homozygous for each QTL were selected from 2,818 progeny of a BC(2)F(7) backcrossed population, and characterized for disease phenotypes. The panicle blast resistance of the lines harboring qPbm11 was very similar to the resistant donor parental cultivar Miyazakimochi, whereas the contribution of qPbm9 to the resistance was small. Genotyping of the BC(2)F(7) individuals highlighted the overlap between the qPbm11 region and a locus of the panicle blast resistance gene, Pb1. Reverse transcriptase PCR analysis revealed that the Pb1 transcript was absent in the panicles of Miyazakimochi, demonstrating that qPbm11 is a novel genetic component of panicle blast resistance. CONCLUSIONS: This study revealed that Miyazakimochi harbors a novel panicle blast resistance controlled mainly by the major QTL qPbm11. qPbm11 is distinct from Pb1 and could be a genetic source for breeding panicle blast resistance, and will improve understanding of the molecular basis of host resistance to panicle blast.
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spelling pubmed-40527772014-06-12 Quantitative trait locus analysis of resistance to panicle blast in the rice cultivar Miyazakimochi Ishihara, Takeaki Hayano-Saito, Yuriko Oide, Shinichi Ebana, Kaworu La, Nghia Tuan Hayashi, Keiko Ashizawa, Taketo Suzuki, Fumihiko Koizumi, Shinzo Rice (N Y) Research Article BACKGROUND: Rice blast is a destructive disease caused by Magnaporthe oryzae, and it has a large impact on rice production worldwide. Compared with leaf blast resistance, our understanding of panicle blast resistance is limited, with only one panicle blast resistance gene, Pb1, isolated so far. The japonica cultivar Miyazakimochi shows resistance to panicle blast, yet the genetic components accounting for this resistance remain to be determined. RESULTS: In this study, we evaluated the panicle blast resistance of populations derived from a cross between Miyazakimochi and the Bikei 22 cultivar, which is susceptible to both leaf and panicle blast. The phenotypic analyses revealed no correlation between panicle blast resistance and leaf blast resistance. Quantitative trait locus (QTL) analysis of 158 recombinant inbred lines using 112 developed genome-wide and 35 previously reported polymerase chain reaction (PCR) markers revealed the presence of two QTLs conferring panicle blast resistance in Miyazakimochi: a major QTL, qPbm11, on chromosome 11; and a minor QTL, qPbm9, on chromosome 9. To clarify the contribution of these QTLs to panicle blast resistance, 24 lines homozygous for each QTL were selected from 2,818 progeny of a BC(2)F(7) backcrossed population, and characterized for disease phenotypes. The panicle blast resistance of the lines harboring qPbm11 was very similar to the resistant donor parental cultivar Miyazakimochi, whereas the contribution of qPbm9 to the resistance was small. Genotyping of the BC(2)F(7) individuals highlighted the overlap between the qPbm11 region and a locus of the panicle blast resistance gene, Pb1. Reverse transcriptase PCR analysis revealed that the Pb1 transcript was absent in the panicles of Miyazakimochi, demonstrating that qPbm11 is a novel genetic component of panicle blast resistance. CONCLUSIONS: This study revealed that Miyazakimochi harbors a novel panicle blast resistance controlled mainly by the major QTL qPbm11. qPbm11 is distinct from Pb1 and could be a genetic source for breeding panicle blast resistance, and will improve understanding of the molecular basis of host resistance to panicle blast. Springer 2014-04-10 /pmc/articles/PMC4052777/ /pubmed/24920970 http://dx.doi.org/10.1186/s12284-014-0002-9 Text en Copyright © 2014 Ishihara et al; licensee Springer http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited.
spellingShingle Research Article
Ishihara, Takeaki
Hayano-Saito, Yuriko
Oide, Shinichi
Ebana, Kaworu
La, Nghia Tuan
Hayashi, Keiko
Ashizawa, Taketo
Suzuki, Fumihiko
Koizumi, Shinzo
Quantitative trait locus analysis of resistance to panicle blast in the rice cultivar Miyazakimochi
title Quantitative trait locus analysis of resistance to panicle blast in the rice cultivar Miyazakimochi
title_full Quantitative trait locus analysis of resistance to panicle blast in the rice cultivar Miyazakimochi
title_fullStr Quantitative trait locus analysis of resistance to panicle blast in the rice cultivar Miyazakimochi
title_full_unstemmed Quantitative trait locus analysis of resistance to panicle blast in the rice cultivar Miyazakimochi
title_short Quantitative trait locus analysis of resistance to panicle blast in the rice cultivar Miyazakimochi
title_sort quantitative trait locus analysis of resistance to panicle blast in the rice cultivar miyazakimochi
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4052777/
https://www.ncbi.nlm.nih.gov/pubmed/24920970
http://dx.doi.org/10.1186/s12284-014-0002-9
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