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Taming the massive genome of Scots pine with PiSy50k, a new genotyping array for conifer research

Pinus sylvestris (Scots pine) is the most widespread coniferous tree in the boreal forests of Eurasia, with major economic and ecological importance. However, its large and repetitive genome presents a challenge for conducting genome‐wide analyses such as association studies, genetic mapping and gen...

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Autores principales: Kastally, Chedly, Niskanen, Alina K., Perry, Annika, Kujala, Sonja T., Avia, Komlan, Cervantes, Sandra, Haapanen, Matti, Kesälahti, Robert, Kumpula, Timo A., Mattila, Tiina M., Ojeda, Dario I., Tyrmi, Jaakko S., Wachowiak, Witold, Cavers, Stephen, Kärkkäinen, Katri, Savolainen, Outi, Pyhäjärvi, Tanja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9303803/
https://www.ncbi.nlm.nih.gov/pubmed/34897859
http://dx.doi.org/10.1111/tpj.15628
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author Kastally, Chedly
Niskanen, Alina K.
Perry, Annika
Kujala, Sonja T.
Avia, Komlan
Cervantes, Sandra
Haapanen, Matti
Kesälahti, Robert
Kumpula, Timo A.
Mattila, Tiina M.
Ojeda, Dario I.
Tyrmi, Jaakko S.
Wachowiak, Witold
Cavers, Stephen
Kärkkäinen, Katri
Savolainen, Outi
Pyhäjärvi, Tanja
author_facet Kastally, Chedly
Niskanen, Alina K.
Perry, Annika
Kujala, Sonja T.
Avia, Komlan
Cervantes, Sandra
Haapanen, Matti
Kesälahti, Robert
Kumpula, Timo A.
Mattila, Tiina M.
Ojeda, Dario I.
Tyrmi, Jaakko S.
Wachowiak, Witold
Cavers, Stephen
Kärkkäinen, Katri
Savolainen, Outi
Pyhäjärvi, Tanja
author_sort Kastally, Chedly
collection PubMed
description Pinus sylvestris (Scots pine) is the most widespread coniferous tree in the boreal forests of Eurasia, with major economic and ecological importance. However, its large and repetitive genome presents a challenge for conducting genome‐wide analyses such as association studies, genetic mapping and genomic selection. We present a new 50K single‐nucleotide polymorphism (SNP) genotyping array for Scots pine research, breeding and other applications. To select the SNP set, we first genotyped 480 Scots pine samples on a 407 540 SNP screening array and identified 47 712 high‐quality SNPs for the final array (called ‘PiSy50k’). Here, we provide details of the design and testing, as well as allele frequency estimates from the discovery panel, functional annotation, tissue‐specific expression patterns and expression level information for the SNPs or corresponding genes, when available. We validated the performance of the PiSy50k array using samples from Finland and Scotland. Overall, 39 678 (83.2%) SNPs showed low error rates (mean = 0.9%). Relatedness estimates based on array genotypes were consistent with the expected pedigrees, and the level of Mendelian error was negligible. In addition, array genotypes successfully discriminate between Scots pine populations of Finnish and Scottish origins. The PiSy50k SNP array will be a valuable tool for a wide variety of future genetic studies and forestry applications.
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spelling pubmed-93038032022-07-28 Taming the massive genome of Scots pine with PiSy50k, a new genotyping array for conifer research Kastally, Chedly Niskanen, Alina K. Perry, Annika Kujala, Sonja T. Avia, Komlan Cervantes, Sandra Haapanen, Matti Kesälahti, Robert Kumpula, Timo A. Mattila, Tiina M. Ojeda, Dario I. Tyrmi, Jaakko S. Wachowiak, Witold Cavers, Stephen Kärkkäinen, Katri Savolainen, Outi Pyhäjärvi, Tanja Plant J Resource Pinus sylvestris (Scots pine) is the most widespread coniferous tree in the boreal forests of Eurasia, with major economic and ecological importance. However, its large and repetitive genome presents a challenge for conducting genome‐wide analyses such as association studies, genetic mapping and genomic selection. We present a new 50K single‐nucleotide polymorphism (SNP) genotyping array for Scots pine research, breeding and other applications. To select the SNP set, we first genotyped 480 Scots pine samples on a 407 540 SNP screening array and identified 47 712 high‐quality SNPs for the final array (called ‘PiSy50k’). Here, we provide details of the design and testing, as well as allele frequency estimates from the discovery panel, functional annotation, tissue‐specific expression patterns and expression level information for the SNPs or corresponding genes, when available. We validated the performance of the PiSy50k array using samples from Finland and Scotland. Overall, 39 678 (83.2%) SNPs showed low error rates (mean = 0.9%). Relatedness estimates based on array genotypes were consistent with the expected pedigrees, and the level of Mendelian error was negligible. In addition, array genotypes successfully discriminate between Scots pine populations of Finnish and Scottish origins. The PiSy50k SNP array will be a valuable tool for a wide variety of future genetic studies and forestry applications. John Wiley and Sons Inc. 2022-01-16 2022-03 /pmc/articles/PMC9303803/ /pubmed/34897859 http://dx.doi.org/10.1111/tpj.15628 Text en © 2021 The Authors. The Plant Journal published by Society for Experimental Biology and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Resource
Kastally, Chedly
Niskanen, Alina K.
Perry, Annika
Kujala, Sonja T.
Avia, Komlan
Cervantes, Sandra
Haapanen, Matti
Kesälahti, Robert
Kumpula, Timo A.
Mattila, Tiina M.
Ojeda, Dario I.
Tyrmi, Jaakko S.
Wachowiak, Witold
Cavers, Stephen
Kärkkäinen, Katri
Savolainen, Outi
Pyhäjärvi, Tanja
Taming the massive genome of Scots pine with PiSy50k, a new genotyping array for conifer research
title Taming the massive genome of Scots pine with PiSy50k, a new genotyping array for conifer research
title_full Taming the massive genome of Scots pine with PiSy50k, a new genotyping array for conifer research
title_fullStr Taming the massive genome of Scots pine with PiSy50k, a new genotyping array for conifer research
title_full_unstemmed Taming the massive genome of Scots pine with PiSy50k, a new genotyping array for conifer research
title_short Taming the massive genome of Scots pine with PiSy50k, a new genotyping array for conifer research
title_sort taming the massive genome of scots pine with pisy50k, a new genotyping array for conifer research
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9303803/
https://www.ncbi.nlm.nih.gov/pubmed/34897859
http://dx.doi.org/10.1111/tpj.15628
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