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A Predictive Model for Time-to-Flowering in the Common Bean Based on QTL and Environmental Variables

The common bean is a tropical facultative short-day legume that is now grown in tropical and temperate zones. This observation underscores how domestication and modern breeding can change the adaptive phenology of a species. A key adaptive trait is the optimal timing of the transition from the veget...

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Autores principales: Bhakta, Mehul S., Gezan, Salvador A., Clavijo Michelangeli, Jose A., Carvalho, Melissa, Zhang, Li, Jones, James W., Boote, Kenneth J., Correll, Melanie J., Beaver, James, Osorno, Juan M., Colbert, Raphael, Rao, Idupulapati, Beebe, Stephen, Gonzalez, Abiezer, Ricaurte, Jaumer, Vallejos, C. Eduardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5714487/
https://www.ncbi.nlm.nih.gov/pubmed/29025916
http://dx.doi.org/10.1534/g3.117.300229
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author Bhakta, Mehul S.
Gezan, Salvador A.
Clavijo Michelangeli, Jose A.
Carvalho, Melissa
Zhang, Li
Jones, James W.
Boote, Kenneth J.
Correll, Melanie J.
Beaver, James
Osorno, Juan M.
Colbert, Raphael
Rao, Idupulapati
Beebe, Stephen
Gonzalez, Abiezer
Ricaurte, Jaumer
Vallejos, C. Eduardo
author_facet Bhakta, Mehul S.
Gezan, Salvador A.
Clavijo Michelangeli, Jose A.
Carvalho, Melissa
Zhang, Li
Jones, James W.
Boote, Kenneth J.
Correll, Melanie J.
Beaver, James
Osorno, Juan M.
Colbert, Raphael
Rao, Idupulapati
Beebe, Stephen
Gonzalez, Abiezer
Ricaurte, Jaumer
Vallejos, C. Eduardo
author_sort Bhakta, Mehul S.
collection PubMed
description The common bean is a tropical facultative short-day legume that is now grown in tropical and temperate zones. This observation underscores how domestication and modern breeding can change the adaptive phenology of a species. A key adaptive trait is the optimal timing of the transition from the vegetative to the reproductive stage. This trait is responsive to genetically controlled signal transduction pathways and local climatic cues. A comprehensive characterization of this trait can be started by assessing the quantitative contribution of the genetic and environmental factors, and their interactions. This study aimed to locate significant QTL (G) and environmental (E) factors controlling time-to-flower in the common bean, and to identify and measure G × E interactions. Phenotypic data were collected from a biparental [Andean × Mesoamerican] recombinant inbred population (F(11:14), 188 genotypes) grown at five environmentally distinct sites. QTL analysis using a dense linkage map revealed 12 QTL, five of which showed significant interactions with the environment. Dissection of G × E interactions using a linear mixed-effect model revealed that temperature, solar radiation, and photoperiod play major roles in controlling common bean flowering time directly, and indirectly by modifying the effect of certain QTL. The model predicts flowering time across five sites with an adjusted r-square of 0.89 and root-mean square error of 2.52 d. The model provides the means to disentangle the environmental dependencies of complex traits, and presents an opportunity to identify in silico QTL allele combinations that could yield desired phenotypes under different climatic conditions.
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spelling pubmed-57144872017-12-05 A Predictive Model for Time-to-Flowering in the Common Bean Based on QTL and Environmental Variables Bhakta, Mehul S. Gezan, Salvador A. Clavijo Michelangeli, Jose A. Carvalho, Melissa Zhang, Li Jones, James W. Boote, Kenneth J. Correll, Melanie J. Beaver, James Osorno, Juan M. Colbert, Raphael Rao, Idupulapati Beebe, Stephen Gonzalez, Abiezer Ricaurte, Jaumer Vallejos, C. Eduardo G3 (Bethesda) Investigations The common bean is a tropical facultative short-day legume that is now grown in tropical and temperate zones. This observation underscores how domestication and modern breeding can change the adaptive phenology of a species. A key adaptive trait is the optimal timing of the transition from the vegetative to the reproductive stage. This trait is responsive to genetically controlled signal transduction pathways and local climatic cues. A comprehensive characterization of this trait can be started by assessing the quantitative contribution of the genetic and environmental factors, and their interactions. This study aimed to locate significant QTL (G) and environmental (E) factors controlling time-to-flower in the common bean, and to identify and measure G × E interactions. Phenotypic data were collected from a biparental [Andean × Mesoamerican] recombinant inbred population (F(11:14), 188 genotypes) grown at five environmentally distinct sites. QTL analysis using a dense linkage map revealed 12 QTL, five of which showed significant interactions with the environment. Dissection of G × E interactions using a linear mixed-effect model revealed that temperature, solar radiation, and photoperiod play major roles in controlling common bean flowering time directly, and indirectly by modifying the effect of certain QTL. The model predicts flowering time across five sites with an adjusted r-square of 0.89 and root-mean square error of 2.52 d. The model provides the means to disentangle the environmental dependencies of complex traits, and presents an opportunity to identify in silico QTL allele combinations that could yield desired phenotypes under different climatic conditions. Genetics Society of America 2017-10-12 /pmc/articles/PMC5714487/ /pubmed/29025916 http://dx.doi.org/10.1534/g3.117.300229 Text en Copyright © 2017 Bhakta et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigations
Bhakta, Mehul S.
Gezan, Salvador A.
Clavijo Michelangeli, Jose A.
Carvalho, Melissa
Zhang, Li
Jones, James W.
Boote, Kenneth J.
Correll, Melanie J.
Beaver, James
Osorno, Juan M.
Colbert, Raphael
Rao, Idupulapati
Beebe, Stephen
Gonzalez, Abiezer
Ricaurte, Jaumer
Vallejos, C. Eduardo
A Predictive Model for Time-to-Flowering in the Common Bean Based on QTL and Environmental Variables
title A Predictive Model for Time-to-Flowering in the Common Bean Based on QTL and Environmental Variables
title_full A Predictive Model for Time-to-Flowering in the Common Bean Based on QTL and Environmental Variables
title_fullStr A Predictive Model for Time-to-Flowering in the Common Bean Based on QTL and Environmental Variables
title_full_unstemmed A Predictive Model for Time-to-Flowering in the Common Bean Based on QTL and Environmental Variables
title_short A Predictive Model for Time-to-Flowering in the Common Bean Based on QTL and Environmental Variables
title_sort predictive model for time-to-flowering in the common bean based on qtl and environmental variables
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5714487/
https://www.ncbi.nlm.nih.gov/pubmed/29025916
http://dx.doi.org/10.1534/g3.117.300229
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