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Authoritative subspecies diagnosis tool for European honey bees based on ancestry informative SNPs

BACKGROUND: With numerous endemic subspecies representing four of its five evolutionary lineages, Europe holds a large fraction of Apis mellifera genetic diversity. This diversity and the natural distribution range have been altered by anthropogenic factors. The conservation of this natural heritage...

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Autores principales: Momeni, Jamal, Parejo, Melanie, Nielsen, Rasmus O., Langa, Jorge, Montes, Iratxe, Papoutsis, Laetitia, Farajzadeh, Leila, Bendixen, Christian, Căuia, Eliza, Charrière, Jean-Daniel, Coffey, Mary F., Costa, Cecilia, Dall’Olio, Raffaele, De la Rúa, Pilar, Drazic, M. Maja, Filipi, Janja, Galea, Thomas, Golubovski, Miroljub, Gregorc, Ales, Grigoryan, Karina, Hatjina, Fani, Ilyasov, Rustem, Ivanova, Evgeniya, Janashia, Irakli, Kandemir, Irfan, Karatasou, Aikaterini, Kekecoglu, Meral, Kezic, Nikola, Matray, Enikö Sz., Mifsud, David, Moosbeckhofer, Rudolf, Nikolenko, Alexei G., Papachristoforou, Alexandros, Petrov, Plamen, Pinto, M. Alice, Poskryakov, Aleksandr V., Sharipov, Aglyam Y., Siceanu, Adrian, Soysal, M. Ihsan, Uzunov, Aleksandar, Zammit-Mangion, Marion, Vingborg, Rikke, Bouga, Maria, Kryger, Per, Meixner, Marina D., Estonba, Andone
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7860026/
https://www.ncbi.nlm.nih.gov/pubmed/33535965
http://dx.doi.org/10.1186/s12864-021-07379-7
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author Momeni, Jamal
Parejo, Melanie
Nielsen, Rasmus O.
Langa, Jorge
Montes, Iratxe
Papoutsis, Laetitia
Farajzadeh, Leila
Bendixen, Christian
Căuia, Eliza
Charrière, Jean-Daniel
Coffey, Mary F.
Costa, Cecilia
Dall’Olio, Raffaele
De la Rúa, Pilar
Drazic, M. Maja
Filipi, Janja
Galea, Thomas
Golubovski, Miroljub
Gregorc, Ales
Grigoryan, Karina
Hatjina, Fani
Ilyasov, Rustem
Ivanova, Evgeniya
Janashia, Irakli
Kandemir, Irfan
Karatasou, Aikaterini
Kekecoglu, Meral
Kezic, Nikola
Matray, Enikö Sz.
Mifsud, David
Moosbeckhofer, Rudolf
Nikolenko, Alexei G.
Papachristoforou, Alexandros
Petrov, Plamen
Pinto, M. Alice
Poskryakov, Aleksandr V.
Sharipov, Aglyam Y.
Siceanu, Adrian
Soysal, M. Ihsan
Uzunov, Aleksandar
Zammit-Mangion, Marion
Vingborg, Rikke
Bouga, Maria
Kryger, Per
Meixner, Marina D.
Estonba, Andone
author_facet Momeni, Jamal
Parejo, Melanie
Nielsen, Rasmus O.
Langa, Jorge
Montes, Iratxe
Papoutsis, Laetitia
Farajzadeh, Leila
Bendixen, Christian
Căuia, Eliza
Charrière, Jean-Daniel
Coffey, Mary F.
Costa, Cecilia
Dall’Olio, Raffaele
De la Rúa, Pilar
Drazic, M. Maja
Filipi, Janja
Galea, Thomas
Golubovski, Miroljub
Gregorc, Ales
Grigoryan, Karina
Hatjina, Fani
Ilyasov, Rustem
Ivanova, Evgeniya
Janashia, Irakli
Kandemir, Irfan
Karatasou, Aikaterini
Kekecoglu, Meral
Kezic, Nikola
Matray, Enikö Sz.
Mifsud, David
Moosbeckhofer, Rudolf
Nikolenko, Alexei G.
Papachristoforou, Alexandros
Petrov, Plamen
Pinto, M. Alice
Poskryakov, Aleksandr V.
Sharipov, Aglyam Y.
Siceanu, Adrian
Soysal, M. Ihsan
Uzunov, Aleksandar
Zammit-Mangion, Marion
Vingborg, Rikke
Bouga, Maria
Kryger, Per
Meixner, Marina D.
Estonba, Andone
author_sort Momeni, Jamal
collection PubMed
description BACKGROUND: With numerous endemic subspecies representing four of its five evolutionary lineages, Europe holds a large fraction of Apis mellifera genetic diversity. This diversity and the natural distribution range have been altered by anthropogenic factors. The conservation of this natural heritage relies on the availability of accurate tools for subspecies diagnosis. Based on pool-sequence data from 2145 worker bees representing 22 populations sampled across Europe, we employed two highly discriminative approaches (PCA and F(ST)) to select the most informative SNPs for ancestry inference. RESULTS: Using a supervised machine learning (ML) approach and a set of 3896 genotyped individuals, we could show that the 4094 selected single nucleotide polymorphisms (SNPs) provide an accurate prediction of ancestry inference in European honey bees. The best ML model was Linear Support Vector Classifier (Linear SVC) which correctly assigned most individuals to one of the 14 subspecies or different genetic origins with a mean accuracy of 96.2% ± 0.8 SD. A total of 3.8% of test individuals were misclassified, most probably due to limited differentiation between the subspecies caused by close geographical proximity, or human interference of genetic integrity of reference subspecies, or a combination thereof. CONCLUSIONS: The diagnostic tool presented here will contribute to a sustainable conservation and support breeding activities in order to preserve the genetic heritage of European honey bees. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1186/s12864-021-07379-7.
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spelling pubmed-78600262021-02-04 Authoritative subspecies diagnosis tool for European honey bees based on ancestry informative SNPs Momeni, Jamal Parejo, Melanie Nielsen, Rasmus O. Langa, Jorge Montes, Iratxe Papoutsis, Laetitia Farajzadeh, Leila Bendixen, Christian Căuia, Eliza Charrière, Jean-Daniel Coffey, Mary F. Costa, Cecilia Dall’Olio, Raffaele De la Rúa, Pilar Drazic, M. Maja Filipi, Janja Galea, Thomas Golubovski, Miroljub Gregorc, Ales Grigoryan, Karina Hatjina, Fani Ilyasov, Rustem Ivanova, Evgeniya Janashia, Irakli Kandemir, Irfan Karatasou, Aikaterini Kekecoglu, Meral Kezic, Nikola Matray, Enikö Sz. Mifsud, David Moosbeckhofer, Rudolf Nikolenko, Alexei G. Papachristoforou, Alexandros Petrov, Plamen Pinto, M. Alice Poskryakov, Aleksandr V. Sharipov, Aglyam Y. Siceanu, Adrian Soysal, M. Ihsan Uzunov, Aleksandar Zammit-Mangion, Marion Vingborg, Rikke Bouga, Maria Kryger, Per Meixner, Marina D. Estonba, Andone BMC Genomics Methodology Article BACKGROUND: With numerous endemic subspecies representing four of its five evolutionary lineages, Europe holds a large fraction of Apis mellifera genetic diversity. This diversity and the natural distribution range have been altered by anthropogenic factors. The conservation of this natural heritage relies on the availability of accurate tools for subspecies diagnosis. Based on pool-sequence data from 2145 worker bees representing 22 populations sampled across Europe, we employed two highly discriminative approaches (PCA and F(ST)) to select the most informative SNPs for ancestry inference. RESULTS: Using a supervised machine learning (ML) approach and a set of 3896 genotyped individuals, we could show that the 4094 selected single nucleotide polymorphisms (SNPs) provide an accurate prediction of ancestry inference in European honey bees. The best ML model was Linear Support Vector Classifier (Linear SVC) which correctly assigned most individuals to one of the 14 subspecies or different genetic origins with a mean accuracy of 96.2% ± 0.8 SD. A total of 3.8% of test individuals were misclassified, most probably due to limited differentiation between the subspecies caused by close geographical proximity, or human interference of genetic integrity of reference subspecies, or a combination thereof. CONCLUSIONS: The diagnostic tool presented here will contribute to a sustainable conservation and support breeding activities in order to preserve the genetic heritage of European honey bees. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1186/s12864-021-07379-7. BioMed Central 2021-02-03 /pmc/articles/PMC7860026/ /pubmed/33535965 http://dx.doi.org/10.1186/s12864-021-07379-7 Text en © The Author(s) 2021 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.
spellingShingle Methodology Article
Momeni, Jamal
Parejo, Melanie
Nielsen, Rasmus O.
Langa, Jorge
Montes, Iratxe
Papoutsis, Laetitia
Farajzadeh, Leila
Bendixen, Christian
Căuia, Eliza
Charrière, Jean-Daniel
Coffey, Mary F.
Costa, Cecilia
Dall’Olio, Raffaele
De la Rúa, Pilar
Drazic, M. Maja
Filipi, Janja
Galea, Thomas
Golubovski, Miroljub
Gregorc, Ales
Grigoryan, Karina
Hatjina, Fani
Ilyasov, Rustem
Ivanova, Evgeniya
Janashia, Irakli
Kandemir, Irfan
Karatasou, Aikaterini
Kekecoglu, Meral
Kezic, Nikola
Matray, Enikö Sz.
Mifsud, David
Moosbeckhofer, Rudolf
Nikolenko, Alexei G.
Papachristoforou, Alexandros
Petrov, Plamen
Pinto, M. Alice
Poskryakov, Aleksandr V.
Sharipov, Aglyam Y.
Siceanu, Adrian
Soysal, M. Ihsan
Uzunov, Aleksandar
Zammit-Mangion, Marion
Vingborg, Rikke
Bouga, Maria
Kryger, Per
Meixner, Marina D.
Estonba, Andone
Authoritative subspecies diagnosis tool for European honey bees based on ancestry informative SNPs
title Authoritative subspecies diagnosis tool for European honey bees based on ancestry informative SNPs
title_full Authoritative subspecies diagnosis tool for European honey bees based on ancestry informative SNPs
title_fullStr Authoritative subspecies diagnosis tool for European honey bees based on ancestry informative SNPs
title_full_unstemmed Authoritative subspecies diagnosis tool for European honey bees based on ancestry informative SNPs
title_short Authoritative subspecies diagnosis tool for European honey bees based on ancestry informative SNPs
title_sort authoritative subspecies diagnosis tool for european honey bees based on ancestry informative snps
topic Methodology Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7860026/
https://www.ncbi.nlm.nih.gov/pubmed/33535965
http://dx.doi.org/10.1186/s12864-021-07379-7
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