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Multiple Small-Effect Alleles of Indica Origin Enhance High Iron-Associated Stress Tolerance in Rice Under Field Conditions in West Africa

Understanding the genetics of field-based tolerance to high iron-associated (HIA) stress in rice can accelerate the development of new varieties with enhanced yield performance in West African lowland ecosystems. To date, few field-based studies have been undertaken to rigorously evaluate rice yield...

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Autores principales: Melandri, Giovanni, Sikirou, Mouritala, Arbelaez, Juan D., Shittu, Afeez, Semwal, Vimal K., Konaté, Kadougoudiou A., Maji, Alhassan T., Ngaujah, Steven A., Akintayo, Inoussa, Govindaraj, Vishnu, Shi, Yuxin, Agosto-Peréz, Francisco J., Greenberg, Anthony J., Atlin, Gary, Ramaiah, Venuprasad, McCouch, Susan R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7874229/
https://www.ncbi.nlm.nih.gov/pubmed/33584748
http://dx.doi.org/10.3389/fpls.2020.604938
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author Melandri, Giovanni
Sikirou, Mouritala
Arbelaez, Juan D.
Shittu, Afeez
Semwal, Vimal K.
Konaté, Kadougoudiou A.
Maji, Alhassan T.
Ngaujah, Steven A.
Akintayo, Inoussa
Govindaraj, Vishnu
Shi, Yuxin
Agosto-Peréz, Francisco J.
Greenberg, Anthony J.
Atlin, Gary
Ramaiah, Venuprasad
McCouch, Susan R.
author_facet Melandri, Giovanni
Sikirou, Mouritala
Arbelaez, Juan D.
Shittu, Afeez
Semwal, Vimal K.
Konaté, Kadougoudiou A.
Maji, Alhassan T.
Ngaujah, Steven A.
Akintayo, Inoussa
Govindaraj, Vishnu
Shi, Yuxin
Agosto-Peréz, Francisco J.
Greenberg, Anthony J.
Atlin, Gary
Ramaiah, Venuprasad
McCouch, Susan R.
author_sort Melandri, Giovanni
collection PubMed
description Understanding the genetics of field-based tolerance to high iron-associated (HIA) stress in rice can accelerate the development of new varieties with enhanced yield performance in West African lowland ecosystems. To date, few field-based studies have been undertaken to rigorously evaluate rice yield performance under HIA stress conditions. In this study, two NERICA × O. sativa bi-parental rice populations and one O.sativa diversity panel consisting of 296 rice accessions were evaluated for grain yield and leaf bronzing symptoms over multiple years in four West African HIA stress and control sites. Mapping of these traits identified a large number of QTLs and single nucleotide polymorphisms (SNPs) associated with stress tolerance in the field. Favorable alleles associated with tolerance to high levels of iron in anaerobic rice soils were rare and almost exclusively derived from the indica subpopulation, including the most favorable alleles identified in NERICA varieties. These findings highlight the complex genetic architecture underlying rice response to HIA stress and suggest that a recurrent selection program focusing on an expanded indica genepool could be productively used in combination with genomic selection to increase the efficiency of selection in breeding programs designed to enhance tolerance to this prevalent abiotic stress in West Africa.
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spelling pubmed-78742292021-02-11 Multiple Small-Effect Alleles of Indica Origin Enhance High Iron-Associated Stress Tolerance in Rice Under Field Conditions in West Africa Melandri, Giovanni Sikirou, Mouritala Arbelaez, Juan D. Shittu, Afeez Semwal, Vimal K. Konaté, Kadougoudiou A. Maji, Alhassan T. Ngaujah, Steven A. Akintayo, Inoussa Govindaraj, Vishnu Shi, Yuxin Agosto-Peréz, Francisco J. Greenberg, Anthony J. Atlin, Gary Ramaiah, Venuprasad McCouch, Susan R. Front Plant Sci Plant Science Understanding the genetics of field-based tolerance to high iron-associated (HIA) stress in rice can accelerate the development of new varieties with enhanced yield performance in West African lowland ecosystems. To date, few field-based studies have been undertaken to rigorously evaluate rice yield performance under HIA stress conditions. In this study, two NERICA × O. sativa bi-parental rice populations and one O.sativa diversity panel consisting of 296 rice accessions were evaluated for grain yield and leaf bronzing symptoms over multiple years in four West African HIA stress and control sites. Mapping of these traits identified a large number of QTLs and single nucleotide polymorphisms (SNPs) associated with stress tolerance in the field. Favorable alleles associated with tolerance to high levels of iron in anaerobic rice soils were rare and almost exclusively derived from the indica subpopulation, including the most favorable alleles identified in NERICA varieties. These findings highlight the complex genetic architecture underlying rice response to HIA stress and suggest that a recurrent selection program focusing on an expanded indica genepool could be productively used in combination with genomic selection to increase the efficiency of selection in breeding programs designed to enhance tolerance to this prevalent abiotic stress in West Africa. Frontiers Media S.A. 2021-01-15 /pmc/articles/PMC7874229/ /pubmed/33584748 http://dx.doi.org/10.3389/fpls.2020.604938 Text en Copyright © 2021 Melandri, Sikirou, Arbelaez, Shittu, Semwal, Konaté, Maji, Ngaujah, Akintayo, Govindaraj, Shi, Agosto-Peréz, Greenberg, Atlin, Ramaiah and McCouch. 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 Plant Science
Melandri, Giovanni
Sikirou, Mouritala
Arbelaez, Juan D.
Shittu, Afeez
Semwal, Vimal K.
Konaté, Kadougoudiou A.
Maji, Alhassan T.
Ngaujah, Steven A.
Akintayo, Inoussa
Govindaraj, Vishnu
Shi, Yuxin
Agosto-Peréz, Francisco J.
Greenberg, Anthony J.
Atlin, Gary
Ramaiah, Venuprasad
McCouch, Susan R.
Multiple Small-Effect Alleles of Indica Origin Enhance High Iron-Associated Stress Tolerance in Rice Under Field Conditions in West Africa
title Multiple Small-Effect Alleles of Indica Origin Enhance High Iron-Associated Stress Tolerance in Rice Under Field Conditions in West Africa
title_full Multiple Small-Effect Alleles of Indica Origin Enhance High Iron-Associated Stress Tolerance in Rice Under Field Conditions in West Africa
title_fullStr Multiple Small-Effect Alleles of Indica Origin Enhance High Iron-Associated Stress Tolerance in Rice Under Field Conditions in West Africa
title_full_unstemmed Multiple Small-Effect Alleles of Indica Origin Enhance High Iron-Associated Stress Tolerance in Rice Under Field Conditions in West Africa
title_short Multiple Small-Effect Alleles of Indica Origin Enhance High Iron-Associated Stress Tolerance in Rice Under Field Conditions in West Africa
title_sort multiple small-effect alleles of indica origin enhance high iron-associated stress tolerance in rice under field conditions in west africa
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7874229/
https://www.ncbi.nlm.nih.gov/pubmed/33584748
http://dx.doi.org/10.3389/fpls.2020.604938
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