Cargando…

A High-Density Linkage Map of the Forage Grass Eragrostis curvula and Localization of the Diplospory Locus

Eragrostis curvula (Schrad.) Nees (weeping lovegrass) is an apomictic species native to Southern Africa that is used as forage grass in semiarid regions of Argentina. Apomixis is a mechanism for clonal propagation through seeds that involves the avoidance of meiosis to generate an unreduced embryo s...

Descripción completa

Detalles Bibliográficos
Autores principales: Zappacosta, Diego, Gallardo, Jimena, Carballo, José, Meier, Mauro, Rodrigo, Juan Manuel, Gallo, Cristian A., Selva, Juan Pablo, Stein, Juliana, Ortiz, Juan Pablo A., Albertini, Emidio, Echenique, Viviana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6640543/
https://www.ncbi.nlm.nih.gov/pubmed/31354781
http://dx.doi.org/10.3389/fpls.2019.00918
_version_ 1783436611716907008
author Zappacosta, Diego
Gallardo, Jimena
Carballo, José
Meier, Mauro
Rodrigo, Juan Manuel
Gallo, Cristian A.
Selva, Juan Pablo
Stein, Juliana
Ortiz, Juan Pablo A.
Albertini, Emidio
Echenique, Viviana
author_facet Zappacosta, Diego
Gallardo, Jimena
Carballo, José
Meier, Mauro
Rodrigo, Juan Manuel
Gallo, Cristian A.
Selva, Juan Pablo
Stein, Juliana
Ortiz, Juan Pablo A.
Albertini, Emidio
Echenique, Viviana
author_sort Zappacosta, Diego
collection PubMed
description Eragrostis curvula (Schrad.) Nees (weeping lovegrass) is an apomictic species native to Southern Africa that is used as forage grass in semiarid regions of Argentina. Apomixis is a mechanism for clonal propagation through seeds that involves the avoidance of meiosis to generate an unreduced embryo sac (apomeiosis), parthenogenesis, and viable endosperm formation in a fertilization-dependent or -independent manner. Here, we constructed the first saturated linkage map of tetraploid E. curvula using both traditional (AFLP and SSR) and high-throughput molecular markers (GBS-SNP) and identified the locus controlling diplospory. We also identified putative regulatory regions affecting the expressivity of this trait and syntenic relationships with genomes of other grass species. We obtained a tetraploid mapping population from a cross between a full sexual genotype (OTA-S) with a facultative apomictic individual of cv. Don Walter. Phenotypic characterization of F(1) hybrids by cytoembryological analysis yielded a 1:1 ratio of apomictic vs. sexual plants (34:27, X(2) = 0.37), which agrees with the model of inheritance of a single dominant genetic factor. The final number of markers was 1,114 for OTA-S and 2,019 for Don Walter. These markers were distributed into 40 linkage groups per parental genotype, which is consistent with the number of E. curvula chromosomes (containing 2 to 123 markers per linkage group). The total length of the OTA-S map was 1,335 cM, with an average marker density of 1.22 cM per marker. The Don Walter map was 1,976.2 cM, with an average marker density of 0.98 cM/marker. The locus responsible for diplospory was mapped on Don Walter linkage group 3, with other 65 markers. QTL analyses of the expressivity of diplospory in the F(1) hybrids revealed the presence of two main QTLs, located 3.27 and 15 cM from the diplospory locus. Both QTLs explained 28.6% of phenotypic variation. Syntenic analysis allowed us to establish the groups of homologs/homeologs for each linkage map. The genetic linkage map reported in this study, the first such map for E. curvula, is the most saturated map for the genus Eragrostis and one of the most saturated maps for a polyploid forage grass species.
format Online
Article
Text
id pubmed-6640543
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-66405432019-07-26 A High-Density Linkage Map of the Forage Grass Eragrostis curvula and Localization of the Diplospory Locus Zappacosta, Diego Gallardo, Jimena Carballo, José Meier, Mauro Rodrigo, Juan Manuel Gallo, Cristian A. Selva, Juan Pablo Stein, Juliana Ortiz, Juan Pablo A. Albertini, Emidio Echenique, Viviana Front Plant Sci Plant Science Eragrostis curvula (Schrad.) Nees (weeping lovegrass) is an apomictic species native to Southern Africa that is used as forage grass in semiarid regions of Argentina. Apomixis is a mechanism for clonal propagation through seeds that involves the avoidance of meiosis to generate an unreduced embryo sac (apomeiosis), parthenogenesis, and viable endosperm formation in a fertilization-dependent or -independent manner. Here, we constructed the first saturated linkage map of tetraploid E. curvula using both traditional (AFLP and SSR) and high-throughput molecular markers (GBS-SNP) and identified the locus controlling diplospory. We also identified putative regulatory regions affecting the expressivity of this trait and syntenic relationships with genomes of other grass species. We obtained a tetraploid mapping population from a cross between a full sexual genotype (OTA-S) with a facultative apomictic individual of cv. Don Walter. Phenotypic characterization of F(1) hybrids by cytoembryological analysis yielded a 1:1 ratio of apomictic vs. sexual plants (34:27, X(2) = 0.37), which agrees with the model of inheritance of a single dominant genetic factor. The final number of markers was 1,114 for OTA-S and 2,019 for Don Walter. These markers were distributed into 40 linkage groups per parental genotype, which is consistent with the number of E. curvula chromosomes (containing 2 to 123 markers per linkage group). The total length of the OTA-S map was 1,335 cM, with an average marker density of 1.22 cM per marker. The Don Walter map was 1,976.2 cM, with an average marker density of 0.98 cM/marker. The locus responsible for diplospory was mapped on Don Walter linkage group 3, with other 65 markers. QTL analyses of the expressivity of diplospory in the F(1) hybrids revealed the presence of two main QTLs, located 3.27 and 15 cM from the diplospory locus. Both QTLs explained 28.6% of phenotypic variation. Syntenic analysis allowed us to establish the groups of homologs/homeologs for each linkage map. The genetic linkage map reported in this study, the first such map for E. curvula, is the most saturated map for the genus Eragrostis and one of the most saturated maps for a polyploid forage grass species. Frontiers Media S.A. 2019-07-12 /pmc/articles/PMC6640543/ /pubmed/31354781 http://dx.doi.org/10.3389/fpls.2019.00918 Text en Copyright © 2019 Zappacosta, Gallardo, Carballo, Meier, Rodrigo, Gallo, Selva, Stein, Ortiz, Albertini and Echenique. 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
Zappacosta, Diego
Gallardo, Jimena
Carballo, José
Meier, Mauro
Rodrigo, Juan Manuel
Gallo, Cristian A.
Selva, Juan Pablo
Stein, Juliana
Ortiz, Juan Pablo A.
Albertini, Emidio
Echenique, Viviana
A High-Density Linkage Map of the Forage Grass Eragrostis curvula and Localization of the Diplospory Locus
title A High-Density Linkage Map of the Forage Grass Eragrostis curvula and Localization of the Diplospory Locus
title_full A High-Density Linkage Map of the Forage Grass Eragrostis curvula and Localization of the Diplospory Locus
title_fullStr A High-Density Linkage Map of the Forage Grass Eragrostis curvula and Localization of the Diplospory Locus
title_full_unstemmed A High-Density Linkage Map of the Forage Grass Eragrostis curvula and Localization of the Diplospory Locus
title_short A High-Density Linkage Map of the Forage Grass Eragrostis curvula and Localization of the Diplospory Locus
title_sort high-density linkage map of the forage grass eragrostis curvula and localization of the diplospory locus
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6640543/
https://www.ncbi.nlm.nih.gov/pubmed/31354781
http://dx.doi.org/10.3389/fpls.2019.00918
work_keys_str_mv AT zappacostadiego ahighdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT gallardojimena ahighdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT carballojose ahighdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT meiermauro ahighdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT rodrigojuanmanuel ahighdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT gallocristiana ahighdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT selvajuanpablo ahighdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT steinjuliana ahighdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT ortizjuanpabloa ahighdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT albertiniemidio ahighdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT echeniqueviviana ahighdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT zappacostadiego highdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT gallardojimena highdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT carballojose highdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT meiermauro highdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT rodrigojuanmanuel highdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT gallocristiana highdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT selvajuanpablo highdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT steinjuliana highdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT ortizjuanpabloa highdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT albertiniemidio highdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus
AT echeniqueviviana highdensitylinkagemapoftheforagegrasseragrostiscurvulaandlocalizationofthediplosporylocus