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A comprehensive analysis of the genetic diversity and environmental adaptability in worldwide Merino and Merino-derived sheep breeds

BACKGROUND: To enhance and extend the knowledge about the global historical and phylogenetic relationships between Merino and Merino-derived breeds, 19 populations were genotyped with the OvineSNP50 BeadChip specifically for this study, while an additional 23 populations from the publicly available...

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Autores principales: Ceccobelli, Simone, Landi, Vincenzo, Senczuk, Gabriele, Mastrangelo, Salvatore, Sardina, Maria Teresa, Ben-Jemaa, Slim, Persichilli, Christian, Karsli, Taki, Bâlteanu, Valentin-Adrian, Raschia, María Agustina, Poli, Mario Andrés, Ciappesoni, Gabriel, Muchadeyi, Farai Catherine, Dzomba, Edgar Farai, Kunene, Nokuthula Winfred, Lühken, Gesine, Deniskova, Tatiana Evgenievna, Dotsev, Arsen Vladimirovich, Zinovieva, Natalia Anatolievna, Zsolnai, Attila, Anton, István, Kusza, Szilvia, Carolino, Nuno, Santos-Silva, Fátima, Kawęcka, Aldona, Świątek, Marcin, Niżnikowski, Roman, Špehar, Marija, Anaya, Gabriel, Granero, Antonio, Perloiro, Tiago, Cardoso, Pedro, Grande, Silverio, de los Santos, Beatriz López, Danchin-Burge, Coralie, Pasquini, Marina, Martínez Martínez, Amparo, Delgado Bermejo, Juan Vicente, Lasagna, Emiliano, Ciani, Elena, Sarti, Francesca Maria, Pilla, Fabio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10069132/
https://www.ncbi.nlm.nih.gov/pubmed/37013467
http://dx.doi.org/10.1186/s12711-023-00797-z
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author Ceccobelli, Simone
Landi, Vincenzo
Senczuk, Gabriele
Mastrangelo, Salvatore
Sardina, Maria Teresa
Ben-Jemaa, Slim
Persichilli, Christian
Karsli, Taki
Bâlteanu, Valentin-Adrian
Raschia, María Agustina
Poli, Mario Andrés
Ciappesoni, Gabriel
Muchadeyi, Farai Catherine
Dzomba, Edgar Farai
Kunene, Nokuthula Winfred
Lühken, Gesine
Deniskova, Tatiana Evgenievna
Dotsev, Arsen Vladimirovich
Zinovieva, Natalia Anatolievna
Zsolnai, Attila
Anton, István
Kusza, Szilvia
Carolino, Nuno
Santos-Silva, Fátima
Kawęcka, Aldona
Świątek, Marcin
Niżnikowski, Roman
Špehar, Marija
Anaya, Gabriel
Granero, Antonio
Perloiro, Tiago
Cardoso, Pedro
Grande, Silverio
de los Santos, Beatriz López
Danchin-Burge, Coralie
Pasquini, Marina
Martínez Martínez, Amparo
Delgado Bermejo, Juan Vicente
Lasagna, Emiliano
Ciani, Elena
Sarti, Francesca Maria
Pilla, Fabio
author_facet Ceccobelli, Simone
Landi, Vincenzo
Senczuk, Gabriele
Mastrangelo, Salvatore
Sardina, Maria Teresa
Ben-Jemaa, Slim
Persichilli, Christian
Karsli, Taki
Bâlteanu, Valentin-Adrian
Raschia, María Agustina
Poli, Mario Andrés
Ciappesoni, Gabriel
Muchadeyi, Farai Catherine
Dzomba, Edgar Farai
Kunene, Nokuthula Winfred
Lühken, Gesine
Deniskova, Tatiana Evgenievna
Dotsev, Arsen Vladimirovich
Zinovieva, Natalia Anatolievna
Zsolnai, Attila
Anton, István
Kusza, Szilvia
Carolino, Nuno
Santos-Silva, Fátima
Kawęcka, Aldona
Świątek, Marcin
Niżnikowski, Roman
Špehar, Marija
Anaya, Gabriel
Granero, Antonio
Perloiro, Tiago
Cardoso, Pedro
Grande, Silverio
de los Santos, Beatriz López
Danchin-Burge, Coralie
Pasquini, Marina
Martínez Martínez, Amparo
Delgado Bermejo, Juan Vicente
Lasagna, Emiliano
Ciani, Elena
Sarti, Francesca Maria
Pilla, Fabio
author_sort Ceccobelli, Simone
collection PubMed
description BACKGROUND: To enhance and extend the knowledge about the global historical and phylogenetic relationships between Merino and Merino-derived breeds, 19 populations were genotyped with the OvineSNP50 BeadChip specifically for this study, while an additional 23 populations from the publicly available genotypes were retrieved. Three complementary statistical tests, Rsb (extended haplotype homozygosity between-populations), XP-EHH (cross-population extended haplotype homozygosity), and runs of homozygosity (ROH) islands were applied to identify genomic variants with potential impact on the adaptability of Merino genetic type in two contrasting climate zones. RESULTS: The results indicate that a large part of the Merino’s genetic relatedness and admixture patterns are explained by their genetic background and/or geographic origin, followed by local admixture. Multi-dimensional scaling, Neighbor-Net, Admixture, and TREEMIX analyses consistently provided evidence of the role of Australian, Rambouillet and German strains in the extensive gene introgression into the other Merino and Merino-derived breeds. The close relationship between Iberian Merinos and other South-western European breeds is consistent with the Iberian origin of the Merino genetic type, with traces from previous contributions of other Mediterranean stocks. Using Rsb and XP-EHH approaches, signatures of selection were detected spanning four genomic regions located on Ovis aries chromosomes (OAR) 1, 6 and 16, whereas two genomic regions on OAR6, that partially overlapped with the previous ones, were highlighted by ROH islands. Overall, the three approaches identified 106 candidate genes putatively under selection. Among them, genes related to immune response were identified via the gene interaction network. In addition, several candidate genes were found, such as LEKR1, LCORL, GHR, RBPJ, BMPR1B, PPARGC1A, and PRKAA1, related to morphological, growth and reproductive traits, adaptive thermogenesis, and hypoxia responses. CONCLUSIONS: To the best of our knowledge, this is the first comprehensive dataset that includes most of the Merino and Merino-derived sheep breeds raised in different regions of the world. The results provide an in-depth picture of the genetic makeup of the current Merino and Merino-derived breeds, highlighting the possible selection pressures associated with the combined effect of anthropic and environmental factors. The study underlines the importance of Merino genetic types as invaluable resources of possible adaptive diversity in the context of the occurring climate changes. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1186/s12711-023-00797-z.
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spelling pubmed-100691322023-04-04 A comprehensive analysis of the genetic diversity and environmental adaptability in worldwide Merino and Merino-derived sheep breeds Ceccobelli, Simone Landi, Vincenzo Senczuk, Gabriele Mastrangelo, Salvatore Sardina, Maria Teresa Ben-Jemaa, Slim Persichilli, Christian Karsli, Taki Bâlteanu, Valentin-Adrian Raschia, María Agustina Poli, Mario Andrés Ciappesoni, Gabriel Muchadeyi, Farai Catherine Dzomba, Edgar Farai Kunene, Nokuthula Winfred Lühken, Gesine Deniskova, Tatiana Evgenievna Dotsev, Arsen Vladimirovich Zinovieva, Natalia Anatolievna Zsolnai, Attila Anton, István Kusza, Szilvia Carolino, Nuno Santos-Silva, Fátima Kawęcka, Aldona Świątek, Marcin Niżnikowski, Roman Špehar, Marija Anaya, Gabriel Granero, Antonio Perloiro, Tiago Cardoso, Pedro Grande, Silverio de los Santos, Beatriz López Danchin-Burge, Coralie Pasquini, Marina Martínez Martínez, Amparo Delgado Bermejo, Juan Vicente Lasagna, Emiliano Ciani, Elena Sarti, Francesca Maria Pilla, Fabio Genet Sel Evol Research Article BACKGROUND: To enhance and extend the knowledge about the global historical and phylogenetic relationships between Merino and Merino-derived breeds, 19 populations were genotyped with the OvineSNP50 BeadChip specifically for this study, while an additional 23 populations from the publicly available genotypes were retrieved. Three complementary statistical tests, Rsb (extended haplotype homozygosity between-populations), XP-EHH (cross-population extended haplotype homozygosity), and runs of homozygosity (ROH) islands were applied to identify genomic variants with potential impact on the adaptability of Merino genetic type in two contrasting climate zones. RESULTS: The results indicate that a large part of the Merino’s genetic relatedness and admixture patterns are explained by their genetic background and/or geographic origin, followed by local admixture. Multi-dimensional scaling, Neighbor-Net, Admixture, and TREEMIX analyses consistently provided evidence of the role of Australian, Rambouillet and German strains in the extensive gene introgression into the other Merino and Merino-derived breeds. The close relationship between Iberian Merinos and other South-western European breeds is consistent with the Iberian origin of the Merino genetic type, with traces from previous contributions of other Mediterranean stocks. Using Rsb and XP-EHH approaches, signatures of selection were detected spanning four genomic regions located on Ovis aries chromosomes (OAR) 1, 6 and 16, whereas two genomic regions on OAR6, that partially overlapped with the previous ones, were highlighted by ROH islands. Overall, the three approaches identified 106 candidate genes putatively under selection. Among them, genes related to immune response were identified via the gene interaction network. In addition, several candidate genes were found, such as LEKR1, LCORL, GHR, RBPJ, BMPR1B, PPARGC1A, and PRKAA1, related to morphological, growth and reproductive traits, adaptive thermogenesis, and hypoxia responses. CONCLUSIONS: To the best of our knowledge, this is the first comprehensive dataset that includes most of the Merino and Merino-derived sheep breeds raised in different regions of the world. The results provide an in-depth picture of the genetic makeup of the current Merino and Merino-derived breeds, highlighting the possible selection pressures associated with the combined effect of anthropic and environmental factors. The study underlines the importance of Merino genetic types as invaluable resources of possible adaptive diversity in the context of the occurring climate changes. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1186/s12711-023-00797-z. BioMed Central 2023-04-03 /pmc/articles/PMC10069132/ /pubmed/37013467 http://dx.doi.org/10.1186/s12711-023-00797-z Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/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/ (https://creativecommons.org/licenses/by/4.0/) . The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/ (https://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 Research Article
Ceccobelli, Simone
Landi, Vincenzo
Senczuk, Gabriele
Mastrangelo, Salvatore
Sardina, Maria Teresa
Ben-Jemaa, Slim
Persichilli, Christian
Karsli, Taki
Bâlteanu, Valentin-Adrian
Raschia, María Agustina
Poli, Mario Andrés
Ciappesoni, Gabriel
Muchadeyi, Farai Catherine
Dzomba, Edgar Farai
Kunene, Nokuthula Winfred
Lühken, Gesine
Deniskova, Tatiana Evgenievna
Dotsev, Arsen Vladimirovich
Zinovieva, Natalia Anatolievna
Zsolnai, Attila
Anton, István
Kusza, Szilvia
Carolino, Nuno
Santos-Silva, Fátima
Kawęcka, Aldona
Świątek, Marcin
Niżnikowski, Roman
Špehar, Marija
Anaya, Gabriel
Granero, Antonio
Perloiro, Tiago
Cardoso, Pedro
Grande, Silverio
de los Santos, Beatriz López
Danchin-Burge, Coralie
Pasquini, Marina
Martínez Martínez, Amparo
Delgado Bermejo, Juan Vicente
Lasagna, Emiliano
Ciani, Elena
Sarti, Francesca Maria
Pilla, Fabio
A comprehensive analysis of the genetic diversity and environmental adaptability in worldwide Merino and Merino-derived sheep breeds
title A comprehensive analysis of the genetic diversity and environmental adaptability in worldwide Merino and Merino-derived sheep breeds
title_full A comprehensive analysis of the genetic diversity and environmental adaptability in worldwide Merino and Merino-derived sheep breeds
title_fullStr A comprehensive analysis of the genetic diversity and environmental adaptability in worldwide Merino and Merino-derived sheep breeds
title_full_unstemmed A comprehensive analysis of the genetic diversity and environmental adaptability in worldwide Merino and Merino-derived sheep breeds
title_short A comprehensive analysis of the genetic diversity and environmental adaptability in worldwide Merino and Merino-derived sheep breeds
title_sort comprehensive analysis of the genetic diversity and environmental adaptability in worldwide merino and merino-derived sheep breeds
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10069132/
https://www.ncbi.nlm.nih.gov/pubmed/37013467
http://dx.doi.org/10.1186/s12711-023-00797-z
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