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Genome-wide SNP Genotyping Resolves Signatures of Selection and Tetrasomic Recombination in Peanut

Peanut (Arachis hypogaea; 2n = 4x = 40) is a nutritious food and a good source of vitamins, minerals, and healthy fats. Expansion of genetic and genomic resources for genetic enhancement of cultivated peanut has gained momentum from the sequenced genomes of the diploid ancestors of cultivated peanut...

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Autores principales: Clevenger, Josh, Chu, Ye, Chavarro, Carolina, Agarwal, Gaurav, Bertioli, David J., Leal-Bertioli, Soraya C.M., Pandey, Manish K., Vaughn, Justin, Abernathy, Brian, Barkley, Noelle A., Hovav, Ran, Burow, Mark, Nayak, Spurthi N., Chitikineni, Annapurna, Isleib, Thomas G., Holbrook, C. Corley, Jackson, Scott A., Varshney, Rajeev K., Ozias-Akins, Peggy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5315502/
https://www.ncbi.nlm.nih.gov/pubmed/27993622
http://dx.doi.org/10.1016/j.molp.2016.11.015
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author Clevenger, Josh
Chu, Ye
Chavarro, Carolina
Agarwal, Gaurav
Bertioli, David J.
Leal-Bertioli, Soraya C.M.
Pandey, Manish K.
Vaughn, Justin
Abernathy, Brian
Barkley, Noelle A.
Hovav, Ran
Burow, Mark
Nayak, Spurthi N.
Chitikineni, Annapurna
Isleib, Thomas G.
Holbrook, C. Corley
Jackson, Scott A.
Varshney, Rajeev K.
Ozias-Akins, Peggy
author_facet Clevenger, Josh
Chu, Ye
Chavarro, Carolina
Agarwal, Gaurav
Bertioli, David J.
Leal-Bertioli, Soraya C.M.
Pandey, Manish K.
Vaughn, Justin
Abernathy, Brian
Barkley, Noelle A.
Hovav, Ran
Burow, Mark
Nayak, Spurthi N.
Chitikineni, Annapurna
Isleib, Thomas G.
Holbrook, C. Corley
Jackson, Scott A.
Varshney, Rajeev K.
Ozias-Akins, Peggy
author_sort Clevenger, Josh
collection PubMed
description Peanut (Arachis hypogaea; 2n = 4x = 40) is a nutritious food and a good source of vitamins, minerals, and healthy fats. Expansion of genetic and genomic resources for genetic enhancement of cultivated peanut has gained momentum from the sequenced genomes of the diploid ancestors of cultivated peanut. To facilitate high-throughput genotyping of Arachis species, 20 genotypes were re-sequenced and genome-wide single nucleotide polymorphisms (SNPs) were selected to develop a large-scale SNP genotyping array. For flexibility in genotyping applications, SNPs polymorphic between tetraploid and diploid species were included for use in cultivated and interspecific populations. A set of 384 accessions was used to test the array resulting in 54 564 markers that produced high-quality polymorphic clusters between diploid species, 47 116 polymorphic markers between cultivated and interspecific hybrids, and 15 897 polymorphic markers within A. hypogaea germplasm. An additional 1193 markers were identified that illuminated genomic regions exhibiting tetrasomic recombination. Furthermore, a set of elite cultivars that make up the pedigree of US runner germplasm were genotyped and used to identify genomic regions that have undergone positive selection. These observations provide key insights on the inclusion of new genetic diversity in cultivated peanut and will inform the development of high-resolution mapping populations. Due to its efficiency, scope, and flexibility, the newly developed SNP array will be very useful for further genetic and breeding applications in Arachis.
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spelling pubmed-53155022017-02-26 Genome-wide SNP Genotyping Resolves Signatures of Selection and Tetrasomic Recombination in Peanut Clevenger, Josh Chu, Ye Chavarro, Carolina Agarwal, Gaurav Bertioli, David J. Leal-Bertioli, Soraya C.M. Pandey, Manish K. Vaughn, Justin Abernathy, Brian Barkley, Noelle A. Hovav, Ran Burow, Mark Nayak, Spurthi N. Chitikineni, Annapurna Isleib, Thomas G. Holbrook, C. Corley Jackson, Scott A. Varshney, Rajeev K. Ozias-Akins, Peggy Mol Plant Research Article Peanut (Arachis hypogaea; 2n = 4x = 40) is a nutritious food and a good source of vitamins, minerals, and healthy fats. Expansion of genetic and genomic resources for genetic enhancement of cultivated peanut has gained momentum from the sequenced genomes of the diploid ancestors of cultivated peanut. To facilitate high-throughput genotyping of Arachis species, 20 genotypes were re-sequenced and genome-wide single nucleotide polymorphisms (SNPs) were selected to develop a large-scale SNP genotyping array. For flexibility in genotyping applications, SNPs polymorphic between tetraploid and diploid species were included for use in cultivated and interspecific populations. A set of 384 accessions was used to test the array resulting in 54 564 markers that produced high-quality polymorphic clusters between diploid species, 47 116 polymorphic markers between cultivated and interspecific hybrids, and 15 897 polymorphic markers within A. hypogaea germplasm. An additional 1193 markers were identified that illuminated genomic regions exhibiting tetrasomic recombination. Furthermore, a set of elite cultivars that make up the pedigree of US runner germplasm were genotyped and used to identify genomic regions that have undergone positive selection. These observations provide key insights on the inclusion of new genetic diversity in cultivated peanut and will inform the development of high-resolution mapping populations. Due to its efficiency, scope, and flexibility, the newly developed SNP array will be very useful for further genetic and breeding applications in Arachis. Oxford University Press 2017-02-13 /pmc/articles/PMC5315502/ /pubmed/27993622 http://dx.doi.org/10.1016/j.molp.2016.11.015 Text en © 2017 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Clevenger, Josh
Chu, Ye
Chavarro, Carolina
Agarwal, Gaurav
Bertioli, David J.
Leal-Bertioli, Soraya C.M.
Pandey, Manish K.
Vaughn, Justin
Abernathy, Brian
Barkley, Noelle A.
Hovav, Ran
Burow, Mark
Nayak, Spurthi N.
Chitikineni, Annapurna
Isleib, Thomas G.
Holbrook, C. Corley
Jackson, Scott A.
Varshney, Rajeev K.
Ozias-Akins, Peggy
Genome-wide SNP Genotyping Resolves Signatures of Selection and Tetrasomic Recombination in Peanut
title Genome-wide SNP Genotyping Resolves Signatures of Selection and Tetrasomic Recombination in Peanut
title_full Genome-wide SNP Genotyping Resolves Signatures of Selection and Tetrasomic Recombination in Peanut
title_fullStr Genome-wide SNP Genotyping Resolves Signatures of Selection and Tetrasomic Recombination in Peanut
title_full_unstemmed Genome-wide SNP Genotyping Resolves Signatures of Selection and Tetrasomic Recombination in Peanut
title_short Genome-wide SNP Genotyping Resolves Signatures of Selection and Tetrasomic Recombination in Peanut
title_sort genome-wide snp genotyping resolves signatures of selection and tetrasomic recombination in peanut
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5315502/
https://www.ncbi.nlm.nih.gov/pubmed/27993622
http://dx.doi.org/10.1016/j.molp.2016.11.015
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