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Identification and mapping of stable QTL with main and epistasis effect on rice grain yield under upland drought stress

BACKGROUND: Drought is one of the most important abiotic stresses that cause drastic reduction in rice grain yield (GY) in rainfed environments. The identification and introgression of QTL leading to high GY under drought have been advocated to be the preferred breeding strategy to improve drought t...

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Autores principales: Sandhu, Nitika, Singh, Anshuman, Dixit, Shalabh, Sta Cruz, Ma Teresa, Maturan, Paul Cornelio, Jain, Rajinder Kumar, Kumar, Arvind
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4048250/
https://www.ncbi.nlm.nih.gov/pubmed/24885990
http://dx.doi.org/10.1186/1471-2156-15-63
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author Sandhu, Nitika
Singh, Anshuman
Dixit, Shalabh
Sta Cruz, Ma Teresa
Maturan, Paul Cornelio
Jain, Rajinder Kumar
Kumar, Arvind
author_facet Sandhu, Nitika
Singh, Anshuman
Dixit, Shalabh
Sta Cruz, Ma Teresa
Maturan, Paul Cornelio
Jain, Rajinder Kumar
Kumar, Arvind
author_sort Sandhu, Nitika
collection PubMed
description BACKGROUND: Drought is one of the most important abiotic stresses that cause drastic reduction in rice grain yield (GY) in rainfed environments. The identification and introgression of QTL leading to high GY under drought have been advocated to be the preferred breeding strategy to improve drought tolerance of popular rice varieties. Genetic control of GY under reproductive-stage drought stress (RS) was studied in two BC(1)F(4) mapping populations derived from crosses of Kali Aus, a drought-tolerant aus cultivar, with high-yielding popular varieties MTU1010 and IR64. The aim was to identify QTL for GY under RS that show a large and consistent effect for the trait. Bulk segregant analysis (BSA) was used to identify significant markers putatively linked with high GY under drought. RESULTS: QTL analysis revealed major-effect GY QTL: qDTY( 1.2 ), qDTY( 2.2 ) and qDTY( 1.3 ), qDTY( 2.3 ) (DTY; Drought grain yield) under drought consistently over two seasons in Kali Aus/2*MTU1010 and Kali Aus/2*IR64 populations, respectively. qDTY( 1.2 ) and qDTY( 2.2 ) explained an additive effect of 288 kg ha(−1) and 567 kg ha(−1) in Kali Aus/2*MTU1010, whereas qDTY( 1.3 ) and qDTY( 2.3 ) explained an additive effect of 198 kg ha(−1) and 147 kg ha(−1) in Kali Aus/2*IR64 populations, respectively. Epistatic interaction was observed for DTF (days to flowering) between regions on chromosome 2 flanked by markers RM154–RM324 and RM263–RM573 and major epistatic QTL for GY showing interaction between genomic locations on chromosome 1 at marker interval RM488–RM315 and chromosome 2 at RM324–RM263 in 2012 DS and 2013 DS RS in Kali Aus/2*IR64 mapping populations. CONCLUSION: The QTL, qDTY( 1.2 ), qDTY( 1.3 ), qDTY( 2.2 ), and qDTY( 2.3,) identified in this study can be used to improve GY of mega varieties MTU1010 and IR64 under different degrees of severity of drought stress through marker-aided backcrossing and provide farmers with improved varieties that effectively combine high yield potential with good yield under drought. The observed epistatic interaction for GY and DTF will contribute to our understanding of the genetic basis of agronomically important traits and enhance predictive ability at an individualized level in agriculture.
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spelling pubmed-40482502014-06-23 Identification and mapping of stable QTL with main and epistasis effect on rice grain yield under upland drought stress Sandhu, Nitika Singh, Anshuman Dixit, Shalabh Sta Cruz, Ma Teresa Maturan, Paul Cornelio Jain, Rajinder Kumar Kumar, Arvind BMC Genet Research Article BACKGROUND: Drought is one of the most important abiotic stresses that cause drastic reduction in rice grain yield (GY) in rainfed environments. The identification and introgression of QTL leading to high GY under drought have been advocated to be the preferred breeding strategy to improve drought tolerance of popular rice varieties. Genetic control of GY under reproductive-stage drought stress (RS) was studied in two BC(1)F(4) mapping populations derived from crosses of Kali Aus, a drought-tolerant aus cultivar, with high-yielding popular varieties MTU1010 and IR64. The aim was to identify QTL for GY under RS that show a large and consistent effect for the trait. Bulk segregant analysis (BSA) was used to identify significant markers putatively linked with high GY under drought. RESULTS: QTL analysis revealed major-effect GY QTL: qDTY( 1.2 ), qDTY( 2.2 ) and qDTY( 1.3 ), qDTY( 2.3 ) (DTY; Drought grain yield) under drought consistently over two seasons in Kali Aus/2*MTU1010 and Kali Aus/2*IR64 populations, respectively. qDTY( 1.2 ) and qDTY( 2.2 ) explained an additive effect of 288 kg ha(−1) and 567 kg ha(−1) in Kali Aus/2*MTU1010, whereas qDTY( 1.3 ) and qDTY( 2.3 ) explained an additive effect of 198 kg ha(−1) and 147 kg ha(−1) in Kali Aus/2*IR64 populations, respectively. Epistatic interaction was observed for DTF (days to flowering) between regions on chromosome 2 flanked by markers RM154–RM324 and RM263–RM573 and major epistatic QTL for GY showing interaction between genomic locations on chromosome 1 at marker interval RM488–RM315 and chromosome 2 at RM324–RM263 in 2012 DS and 2013 DS RS in Kali Aus/2*IR64 mapping populations. CONCLUSION: The QTL, qDTY( 1.2 ), qDTY( 1.3 ), qDTY( 2.2 ), and qDTY( 2.3,) identified in this study can be used to improve GY of mega varieties MTU1010 and IR64 under different degrees of severity of drought stress through marker-aided backcrossing and provide farmers with improved varieties that effectively combine high yield potential with good yield under drought. The observed epistatic interaction for GY and DTF will contribute to our understanding of the genetic basis of agronomically important traits and enhance predictive ability at an individualized level in agriculture. BioMed Central 2014-05-27 /pmc/articles/PMC4048250/ /pubmed/24885990 http://dx.doi.org/10.1186/1471-2156-15-63 Text en Copyright © 2014 Sandhu et al.; licensee BioMed Central Ltd. 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 work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Sandhu, Nitika
Singh, Anshuman
Dixit, Shalabh
Sta Cruz, Ma Teresa
Maturan, Paul Cornelio
Jain, Rajinder Kumar
Kumar, Arvind
Identification and mapping of stable QTL with main and epistasis effect on rice grain yield under upland drought stress
title Identification and mapping of stable QTL with main and epistasis effect on rice grain yield under upland drought stress
title_full Identification and mapping of stable QTL with main and epistasis effect on rice grain yield under upland drought stress
title_fullStr Identification and mapping of stable QTL with main and epistasis effect on rice grain yield under upland drought stress
title_full_unstemmed Identification and mapping of stable QTL with main and epistasis effect on rice grain yield under upland drought stress
title_short Identification and mapping of stable QTL with main and epistasis effect on rice grain yield under upland drought stress
title_sort identification and mapping of stable qtl with main and epistasis effect on rice grain yield under upland drought stress
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4048250/
https://www.ncbi.nlm.nih.gov/pubmed/24885990
http://dx.doi.org/10.1186/1471-2156-15-63
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