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The Mitogenome Relationships and Phylogeography of Barn Swallows (Hirundo rustica)

The barn swallow (Hirundo rustica) poses a number of fascinating scientific questions, including the taxonomic status of postulated subspecies. Here, we obtained and assessed the sequence variation of 411 complete mitogenomes, mainly from the European H. r. rustica, but other subspecies as well. In...

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Autores principales: Lombardo, Gianluca, Rambaldi Migliore, Nicola, Colombo, Giulia, Capodiferro, Marco Rosario, Formenti, Giulio, Caprioli, Manuela, Moroni, Elisabetta, Caporali, Leonardo, Lancioni, Hovirag, Secomandi, Simona, Gallo, Guido Roberto, Costanzo, Alessandra, Romano, Andrea, Garofalo, Maria, Cereda, Cristina, Carelli, Valerio, Gillespie, Lauren, Liu, Yang, Kiat, Yosef, Marzal, Alfonso, López-Calderón, Cosme, Balbontín, Javier, Mousseau, Timothy A., Matyjasiak, Piotr, Møller, Anders Pape, Semino, Ornella, Ambrosini, Roberto, Bonisoli-Alquati, Andrea, Rubolini, Diego, Ferretti, Luca, Achilli, Alessandro, Gianfranceschi, Luca, Olivieri, Anna, Torroni, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9174979/
https://www.ncbi.nlm.nih.gov/pubmed/35617136
http://dx.doi.org/10.1093/molbev/msac113
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author Lombardo, Gianluca
Rambaldi Migliore, Nicola
Colombo, Giulia
Capodiferro, Marco Rosario
Formenti, Giulio
Caprioli, Manuela
Moroni, Elisabetta
Caporali, Leonardo
Lancioni, Hovirag
Secomandi, Simona
Gallo, Guido Roberto
Costanzo, Alessandra
Romano, Andrea
Garofalo, Maria
Cereda, Cristina
Carelli, Valerio
Gillespie, Lauren
Liu, Yang
Kiat, Yosef
Marzal, Alfonso
López-Calderón, Cosme
Balbontín, Javier
Mousseau, Timothy A.
Matyjasiak, Piotr
Møller, Anders Pape
Semino, Ornella
Ambrosini, Roberto
Bonisoli-Alquati, Andrea
Rubolini, Diego
Ferretti, Luca
Achilli, Alessandro
Gianfranceschi, Luca
Olivieri, Anna
Torroni, Antonio
author_facet Lombardo, Gianluca
Rambaldi Migliore, Nicola
Colombo, Giulia
Capodiferro, Marco Rosario
Formenti, Giulio
Caprioli, Manuela
Moroni, Elisabetta
Caporali, Leonardo
Lancioni, Hovirag
Secomandi, Simona
Gallo, Guido Roberto
Costanzo, Alessandra
Romano, Andrea
Garofalo, Maria
Cereda, Cristina
Carelli, Valerio
Gillespie, Lauren
Liu, Yang
Kiat, Yosef
Marzal, Alfonso
López-Calderón, Cosme
Balbontín, Javier
Mousseau, Timothy A.
Matyjasiak, Piotr
Møller, Anders Pape
Semino, Ornella
Ambrosini, Roberto
Bonisoli-Alquati, Andrea
Rubolini, Diego
Ferretti, Luca
Achilli, Alessandro
Gianfranceschi, Luca
Olivieri, Anna
Torroni, Antonio
author_sort Lombardo, Gianluca
collection PubMed
description The barn swallow (Hirundo rustica) poses a number of fascinating scientific questions, including the taxonomic status of postulated subspecies. Here, we obtained and assessed the sequence variation of 411 complete mitogenomes, mainly from the European H. r. rustica, but other subspecies as well. In almost every case, we observed subspecies-specific haplogroups, which we employed together with estimated radiation times to postulate a model for the geographical and temporal worldwide spread of the species. The female barn swallow carrying the Hirundo rustica ancestral mitogenome left Africa (or its vicinity) around 280 thousand years ago (kya), and her descendants expanded first into Eurasia and then, at least 51 kya, into the Americas, from where a relatively recent (<20 kya) back migration to Asia took place. The exception to the haplogroup subspecies specificity is represented by the sedentary Levantine H. r. transitiva that extensively shares haplogroup A with the migratory European H. r. rustica and, to a lesser extent, haplogroup B with the Egyptian H. r. savignii. Our data indicate that rustica and transitiva most likely derive from a sedentary Levantine population source that split at the end of the Younger Dryas (YD) (11.7 kya). Since then, however, transitiva received genetic inputs from and admixed with both the closely related rustica and the adjacent savignii. Demographic analyses confirm this species’ strong link with climate fluctuations and human activities making it an excellent indicator for monitoring and assessing the impact of current global changes on wildlife.
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spelling pubmed-91749792022-06-09 The Mitogenome Relationships and Phylogeography of Barn Swallows (Hirundo rustica) Lombardo, Gianluca Rambaldi Migliore, Nicola Colombo, Giulia Capodiferro, Marco Rosario Formenti, Giulio Caprioli, Manuela Moroni, Elisabetta Caporali, Leonardo Lancioni, Hovirag Secomandi, Simona Gallo, Guido Roberto Costanzo, Alessandra Romano, Andrea Garofalo, Maria Cereda, Cristina Carelli, Valerio Gillespie, Lauren Liu, Yang Kiat, Yosef Marzal, Alfonso López-Calderón, Cosme Balbontín, Javier Mousseau, Timothy A. Matyjasiak, Piotr Møller, Anders Pape Semino, Ornella Ambrosini, Roberto Bonisoli-Alquati, Andrea Rubolini, Diego Ferretti, Luca Achilli, Alessandro Gianfranceschi, Luca Olivieri, Anna Torroni, Antonio Mol Biol Evol Discoveries The barn swallow (Hirundo rustica) poses a number of fascinating scientific questions, including the taxonomic status of postulated subspecies. Here, we obtained and assessed the sequence variation of 411 complete mitogenomes, mainly from the European H. r. rustica, but other subspecies as well. In almost every case, we observed subspecies-specific haplogroups, which we employed together with estimated radiation times to postulate a model for the geographical and temporal worldwide spread of the species. The female barn swallow carrying the Hirundo rustica ancestral mitogenome left Africa (or its vicinity) around 280 thousand years ago (kya), and her descendants expanded first into Eurasia and then, at least 51 kya, into the Americas, from where a relatively recent (<20 kya) back migration to Asia took place. The exception to the haplogroup subspecies specificity is represented by the sedentary Levantine H. r. transitiva that extensively shares haplogroup A with the migratory European H. r. rustica and, to a lesser extent, haplogroup B with the Egyptian H. r. savignii. Our data indicate that rustica and transitiva most likely derive from a sedentary Levantine population source that split at the end of the Younger Dryas (YD) (11.7 kya). Since then, however, transitiva received genetic inputs from and admixed with both the closely related rustica and the adjacent savignii. Demographic analyses confirm this species’ strong link with climate fluctuations and human activities making it an excellent indicator for monitoring and assessing the impact of current global changes on wildlife. Oxford University Press 2022-05-25 /pmc/articles/PMC9174979/ /pubmed/35617136 http://dx.doi.org/10.1093/molbev/msac113 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Society for Molecular Biology and Evolution. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Discoveries
Lombardo, Gianluca
Rambaldi Migliore, Nicola
Colombo, Giulia
Capodiferro, Marco Rosario
Formenti, Giulio
Caprioli, Manuela
Moroni, Elisabetta
Caporali, Leonardo
Lancioni, Hovirag
Secomandi, Simona
Gallo, Guido Roberto
Costanzo, Alessandra
Romano, Andrea
Garofalo, Maria
Cereda, Cristina
Carelli, Valerio
Gillespie, Lauren
Liu, Yang
Kiat, Yosef
Marzal, Alfonso
López-Calderón, Cosme
Balbontín, Javier
Mousseau, Timothy A.
Matyjasiak, Piotr
Møller, Anders Pape
Semino, Ornella
Ambrosini, Roberto
Bonisoli-Alquati, Andrea
Rubolini, Diego
Ferretti, Luca
Achilli, Alessandro
Gianfranceschi, Luca
Olivieri, Anna
Torroni, Antonio
The Mitogenome Relationships and Phylogeography of Barn Swallows (Hirundo rustica)
title The Mitogenome Relationships and Phylogeography of Barn Swallows (Hirundo rustica)
title_full The Mitogenome Relationships and Phylogeography of Barn Swallows (Hirundo rustica)
title_fullStr The Mitogenome Relationships and Phylogeography of Barn Swallows (Hirundo rustica)
title_full_unstemmed The Mitogenome Relationships and Phylogeography of Barn Swallows (Hirundo rustica)
title_short The Mitogenome Relationships and Phylogeography of Barn Swallows (Hirundo rustica)
title_sort mitogenome relationships and phylogeography of barn swallows (hirundo rustica)
topic Discoveries
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9174979/
https://www.ncbi.nlm.nih.gov/pubmed/35617136
http://dx.doi.org/10.1093/molbev/msac113
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