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Unraveling the genomic regions controlling the seed vigour index, root growth parameters and germination per cent in rice

High seed vigour ensures good quality seed and higher productivity. Early seedling growth parameters indicate seed vigour in rice. Seed vigour via physiological growth parameters is a complex trait controlled by many quantitative trait loci. A panel was prepared representing a population of 274 rice...

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Autores principales: Barik, Saumya Ranjan, Pandit, Elssa, Sanghamitra, Priyadarshini, Mohanty, Shakti Prakash, Behera, Abhisarika, Mishra, Jyotirmayee, Nayak, Deepak Kumar, Bastia, Ramakrushna, Moharana, Arpita, Sahoo, Auromira, Pradhan, Sharat Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9321372/
https://www.ncbi.nlm.nih.gov/pubmed/35881571
http://dx.doi.org/10.1371/journal.pone.0267303
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author Barik, Saumya Ranjan
Pandit, Elssa
Sanghamitra, Priyadarshini
Mohanty, Shakti Prakash
Behera, Abhisarika
Mishra, Jyotirmayee
Nayak, Deepak Kumar
Bastia, Ramakrushna
Moharana, Arpita
Sahoo, Auromira
Pradhan, Sharat Kumar
author_facet Barik, Saumya Ranjan
Pandit, Elssa
Sanghamitra, Priyadarshini
Mohanty, Shakti Prakash
Behera, Abhisarika
Mishra, Jyotirmayee
Nayak, Deepak Kumar
Bastia, Ramakrushna
Moharana, Arpita
Sahoo, Auromira
Pradhan, Sharat Kumar
author_sort Barik, Saumya Ranjan
collection PubMed
description High seed vigour ensures good quality seed and higher productivity. Early seedling growth parameters indicate seed vigour in rice. Seed vigour via physiological growth parameters is a complex trait controlled by many quantitative trait loci. A panel was prepared representing a population of 274 rice landraces by including genotypes from all the phenotypic groups of sixseedling stage physiological parameters including germination % for association mapping. Wide variations for the six studiedtraits were observed in the population. The population was classified into 3 genetic groups. Fixation indices indicated the presence of linkage disequilibrium in the population. The population was classified into subpopulations and each subpopulation showed correspondence with the 6 physiological traits. A total of 5 reported QTLs viz., qGP8.1 for germination % (GP); qSVII2.1, qSVII6.1 and qSVII6.2 for seed vigour index II (SVII), and qRSR11.1 for root-shoot ratio (RSR) were validated in this mapping population. In addition, 13 QTLs regulating the physiological parameters such as qSVI 11.1 for seed vigour index I; qSVI11.1 and qSVI12.1 for seed vigour index II; qRRG10.1, qRRG8.1, qRRG8.2, qRRG6.1 and qRRG4.1 for rate of root growth (RRG); qRSR2.1, qRSR3.1 and qRSR5.1 for root-shoot ratio (RSR) while qGP6.2 and qGP6.3 for germination %were identified. Additionally, co-localization or co-inheritance of QTLs, qGP8.1 and qSVI8.1 for GP and SVI-1; qGP6.2 and qRRG6.1 for GP and RRG, and qSVI11.1 and qRSR11.1 for SVI and RSR were detected. The QTLs identified in this study will be useful for improvement of seed vigour trait in rice.
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spelling pubmed-93213722022-07-27 Unraveling the genomic regions controlling the seed vigour index, root growth parameters and germination per cent in rice Barik, Saumya Ranjan Pandit, Elssa Sanghamitra, Priyadarshini Mohanty, Shakti Prakash Behera, Abhisarika Mishra, Jyotirmayee Nayak, Deepak Kumar Bastia, Ramakrushna Moharana, Arpita Sahoo, Auromira Pradhan, Sharat Kumar PLoS One Research Article High seed vigour ensures good quality seed and higher productivity. Early seedling growth parameters indicate seed vigour in rice. Seed vigour via physiological growth parameters is a complex trait controlled by many quantitative trait loci. A panel was prepared representing a population of 274 rice landraces by including genotypes from all the phenotypic groups of sixseedling stage physiological parameters including germination % for association mapping. Wide variations for the six studiedtraits were observed in the population. The population was classified into 3 genetic groups. Fixation indices indicated the presence of linkage disequilibrium in the population. The population was classified into subpopulations and each subpopulation showed correspondence with the 6 physiological traits. A total of 5 reported QTLs viz., qGP8.1 for germination % (GP); qSVII2.1, qSVII6.1 and qSVII6.2 for seed vigour index II (SVII), and qRSR11.1 for root-shoot ratio (RSR) were validated in this mapping population. In addition, 13 QTLs regulating the physiological parameters such as qSVI 11.1 for seed vigour index I; qSVI11.1 and qSVI12.1 for seed vigour index II; qRRG10.1, qRRG8.1, qRRG8.2, qRRG6.1 and qRRG4.1 for rate of root growth (RRG); qRSR2.1, qRSR3.1 and qRSR5.1 for root-shoot ratio (RSR) while qGP6.2 and qGP6.3 for germination %were identified. Additionally, co-localization or co-inheritance of QTLs, qGP8.1 and qSVI8.1 for GP and SVI-1; qGP6.2 and qRRG6.1 for GP and RRG, and qSVI11.1 and qRSR11.1 for SVI and RSR were detected. The QTLs identified in this study will be useful for improvement of seed vigour trait in rice. Public Library of Science 2022-07-26 /pmc/articles/PMC9321372/ /pubmed/35881571 http://dx.doi.org/10.1371/journal.pone.0267303 Text en © 2022 Barik et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Barik, Saumya Ranjan
Pandit, Elssa
Sanghamitra, Priyadarshini
Mohanty, Shakti Prakash
Behera, Abhisarika
Mishra, Jyotirmayee
Nayak, Deepak Kumar
Bastia, Ramakrushna
Moharana, Arpita
Sahoo, Auromira
Pradhan, Sharat Kumar
Unraveling the genomic regions controlling the seed vigour index, root growth parameters and germination per cent in rice
title Unraveling the genomic regions controlling the seed vigour index, root growth parameters and germination per cent in rice
title_full Unraveling the genomic regions controlling the seed vigour index, root growth parameters and germination per cent in rice
title_fullStr Unraveling the genomic regions controlling the seed vigour index, root growth parameters and germination per cent in rice
title_full_unstemmed Unraveling the genomic regions controlling the seed vigour index, root growth parameters and germination per cent in rice
title_short Unraveling the genomic regions controlling the seed vigour index, root growth parameters and germination per cent in rice
title_sort unraveling the genomic regions controlling the seed vigour index, root growth parameters and germination per cent in rice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9321372/
https://www.ncbi.nlm.nih.gov/pubmed/35881571
http://dx.doi.org/10.1371/journal.pone.0267303
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