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Genetic Mapping With Allele Dosage Information in Tetraploid Urochloa decumbens (Stapf) R. D. Webster Reveals Insights Into Spittlebug (Notozulia entreriana Berg) Resistance

Urochloa decumbens (Stapf) R. D. Webster is one of the most important African forage grasses in Brazilian beef production. Currently available genetic-genomic resources for this species are restricted mainly due to polyploidy and apomixis. Therefore, crucial genomic-molecular studies such as the con...

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Autores principales: Ferreira, Rebecca Caroline Ulbricht, Lara, Letícia Aparecida de Castro, Chiari, Lucimara, Barrios, Sanzio Carvalho Lima, do Valle, Cacilda Borges, Valério, José Raul, Torres, Fabrícia Zimermann Vilela, Garcia, Antonio Augusto Franco, de Souza, Anete Pereira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401981/
https://www.ncbi.nlm.nih.gov/pubmed/30873183
http://dx.doi.org/10.3389/fpls.2019.00092
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author Ferreira, Rebecca Caroline Ulbricht
Lara, Letícia Aparecida de Castro
Chiari, Lucimara
Barrios, Sanzio Carvalho Lima
do Valle, Cacilda Borges
Valério, José Raul
Torres, Fabrícia Zimermann Vilela
Garcia, Antonio Augusto Franco
de Souza, Anete Pereira
author_facet Ferreira, Rebecca Caroline Ulbricht
Lara, Letícia Aparecida de Castro
Chiari, Lucimara
Barrios, Sanzio Carvalho Lima
do Valle, Cacilda Borges
Valério, José Raul
Torres, Fabrícia Zimermann Vilela
Garcia, Antonio Augusto Franco
de Souza, Anete Pereira
author_sort Ferreira, Rebecca Caroline Ulbricht
collection PubMed
description Urochloa decumbens (Stapf) R. D. Webster is one of the most important African forage grasses in Brazilian beef production. Currently available genetic-genomic resources for this species are restricted mainly due to polyploidy and apomixis. Therefore, crucial genomic-molecular studies such as the construction of genetic maps and the mapping of quantitative trait loci (QTLs) are very challenging and consequently affect the advancement of molecular breeding. The objectives of this work were to (i) construct an integrated U. decumbens genetic map for a full-sibling progeny using GBS-based markers with allele dosage information, (ii) detect QTLs for spittlebug (Notozulia entreriana) resistance, and (iii) seek putative candidate genes involved in defense against biotic stresses. We used the Setaria viridis genome a reference to align GBS reads and selected 4,240 high-quality SNP markers with allele dosage information. Of these markers, 1,000 were distributed throughout nine homologous groups with a cumulative map length of 1,335.09 cM and an average marker density of 1.33 cM. We detected QTLs for resistance to spittlebug, an important pasture insect pest, that explained between 4.66 and 6.24% of the phenotypic variation. These QTLs are in regions containing putative candidate genes related to defense against biotic stresses. Because this is the first genetic map with SNP autotetraploid dosage data and QTL detection in U. decumbens, it will be useful for future evolutionary studies, genome assembly, and other QTL analyses in Urochloa spp. Moreover, the results might facilitate the isolation of spittlebug-related candidate genes and help clarify the mechanism of spittlebug resistance. These approaches will improve selection efficiency and accuracy in U. decumbens molecular breeding and shorten the breeding cycle.
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spelling pubmed-64019812019-03-14 Genetic Mapping With Allele Dosage Information in Tetraploid Urochloa decumbens (Stapf) R. D. Webster Reveals Insights Into Spittlebug (Notozulia entreriana Berg) Resistance Ferreira, Rebecca Caroline Ulbricht Lara, Letícia Aparecida de Castro Chiari, Lucimara Barrios, Sanzio Carvalho Lima do Valle, Cacilda Borges Valério, José Raul Torres, Fabrícia Zimermann Vilela Garcia, Antonio Augusto Franco de Souza, Anete Pereira Front Plant Sci Plant Science Urochloa decumbens (Stapf) R. D. Webster is one of the most important African forage grasses in Brazilian beef production. Currently available genetic-genomic resources for this species are restricted mainly due to polyploidy and apomixis. Therefore, crucial genomic-molecular studies such as the construction of genetic maps and the mapping of quantitative trait loci (QTLs) are very challenging and consequently affect the advancement of molecular breeding. The objectives of this work were to (i) construct an integrated U. decumbens genetic map for a full-sibling progeny using GBS-based markers with allele dosage information, (ii) detect QTLs for spittlebug (Notozulia entreriana) resistance, and (iii) seek putative candidate genes involved in defense against biotic stresses. We used the Setaria viridis genome a reference to align GBS reads and selected 4,240 high-quality SNP markers with allele dosage information. Of these markers, 1,000 were distributed throughout nine homologous groups with a cumulative map length of 1,335.09 cM and an average marker density of 1.33 cM. We detected QTLs for resistance to spittlebug, an important pasture insect pest, that explained between 4.66 and 6.24% of the phenotypic variation. These QTLs are in regions containing putative candidate genes related to defense against biotic stresses. Because this is the first genetic map with SNP autotetraploid dosage data and QTL detection in U. decumbens, it will be useful for future evolutionary studies, genome assembly, and other QTL analyses in Urochloa spp. Moreover, the results might facilitate the isolation of spittlebug-related candidate genes and help clarify the mechanism of spittlebug resistance. These approaches will improve selection efficiency and accuracy in U. decumbens molecular breeding and shorten the breeding cycle. Frontiers Media S.A. 2019-02-21 /pmc/articles/PMC6401981/ /pubmed/30873183 http://dx.doi.org/10.3389/fpls.2019.00092 Text en Copyright © 2019 Ferreira, Lara, Chiari, Barrios, do Valle, Valério, Torres, Garcia and de Souza. 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
Ferreira, Rebecca Caroline Ulbricht
Lara, Letícia Aparecida de Castro
Chiari, Lucimara
Barrios, Sanzio Carvalho Lima
do Valle, Cacilda Borges
Valério, José Raul
Torres, Fabrícia Zimermann Vilela
Garcia, Antonio Augusto Franco
de Souza, Anete Pereira
Genetic Mapping With Allele Dosage Information in Tetraploid Urochloa decumbens (Stapf) R. D. Webster Reveals Insights Into Spittlebug (Notozulia entreriana Berg) Resistance
title Genetic Mapping With Allele Dosage Information in Tetraploid Urochloa decumbens (Stapf) R. D. Webster Reveals Insights Into Spittlebug (Notozulia entreriana Berg) Resistance
title_full Genetic Mapping With Allele Dosage Information in Tetraploid Urochloa decumbens (Stapf) R. D. Webster Reveals Insights Into Spittlebug (Notozulia entreriana Berg) Resistance
title_fullStr Genetic Mapping With Allele Dosage Information in Tetraploid Urochloa decumbens (Stapf) R. D. Webster Reveals Insights Into Spittlebug (Notozulia entreriana Berg) Resistance
title_full_unstemmed Genetic Mapping With Allele Dosage Information in Tetraploid Urochloa decumbens (Stapf) R. D. Webster Reveals Insights Into Spittlebug (Notozulia entreriana Berg) Resistance
title_short Genetic Mapping With Allele Dosage Information in Tetraploid Urochloa decumbens (Stapf) R. D. Webster Reveals Insights Into Spittlebug (Notozulia entreriana Berg) Resistance
title_sort genetic mapping with allele dosage information in tetraploid urochloa decumbens (stapf) r. d. webster reveals insights into spittlebug (notozulia entreriana berg) resistance
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401981/
https://www.ncbi.nlm.nih.gov/pubmed/30873183
http://dx.doi.org/10.3389/fpls.2019.00092
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