Phylogenetic relationships, origin and historical biogeography of the genus Sprattus (Clupeiformes: Clupeidae)

The genus Sprattus comprises five species of marine pelagic fishes distributed worldwide in antitropical, temperate waters. Their distribution suggests an ancient origin during a cold period of the earth’s history. In this study, we evaluated this hypothesis and corroborated the non-monophyly of the...

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Main Authors: Cristian B. Canales-Aguirre, Peter A. Ritchie, Sebastián Hernández, Victoria Herrera-Yañez, Sandra Ferrada Fuentes, Fernanda X. Oyarzún, Cristián E. Hernández, Ricardo Galleguillos, Gloria Arratia
Format: Article
Language:English
Published: PeerJ Inc. 2021-08-01
Series:PeerJ
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Online Access:https://peerj.com/articles/11737.pdf
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spelling doaj-3dfd28fcf73b4ddba05bcacba9a709152021-08-20T15:05:05ZengPeerJ Inc.PeerJ2167-83592021-08-019e1173710.7717/peerj.11737Phylogenetic relationships, origin and historical biogeography of the genus Sprattus (Clupeiformes: Clupeidae)Cristian B. Canales-Aguirre0Peter A. Ritchie1Sebastián Hernández2Victoria Herrera-Yañez3Sandra Ferrada Fuentes4Fernanda X. Oyarzún5Cristián E. Hernández6Ricardo Galleguillos7Gloria Arratia8Centro i∼mar, Universidad de Los Lagos, Puerto Montt, ChileSchool of Biological Sciences, Victoria University of Wellington, Wellington, New ZealandBiomolecular Laboratory, Center for International Programs, Universidad Veritas, San José, Costa RicaLaboratorio de Genética y Acuicultura, Departamento de Oceanografía, Facultad de Ciencias Naturales y Oceanográficas, Universidad de Concepción, Concepción, ChileLaboratorio de Genética y Acuicultura, Departamento de Oceanografía, Facultad de Ciencias Naturales y Oceanográficas, Universidad de Concepción, Concepción, ChileCentro i∼mar, Universidad de Los Lagos, Puerto Montt, ChileLaboratorio de Ecología Evolutiva y Filoinformática, Departamento de Zoología, Facultad de Ciencias Naturales y Oceanográficas, Universidad de Concepción, Concepción, ChileLaboratorio de Genética y Acuicultura, Departamento de Oceanografía, Facultad de Ciencias Naturales y Oceanográficas, Universidad de Concepción, Concepción, ChileBiodiversity Institute and Department of Ecology & Evolutionary Biology, University of Kansas, Lawrence, United States of AmericaThe genus Sprattus comprises five species of marine pelagic fishes distributed worldwide in antitropical, temperate waters. Their distribution suggests an ancient origin during a cold period of the earth’s history. In this study, we evaluated this hypothesis and corroborated the non-monophyly of the genus Sprattus, using a phylogenetic approach based on DNA sequences of five mitochondrial genome regions. Sprattus sprattus is more closely related to members of the genus Clupea than to other Sprattus species. We also investigated the historical biogeography of the genus, with the phylogenetic tree showing two well-supported clades corresponding to the species distribution in each hemisphere. Time-calibrated phylogenetic analyses showed that an ancient divergence between Northern and Southern Hemispheres occurred at 55.8 MYBP, followed by a diversification in the Oligocene epoch in the Northern Hemisphere clade (33.8 MYBP) and a more recent diversification in the Southern Hemisphere clade (34.2 MYBP). Historical biogeography analyses indicated that the most recent common ancestor (MRCA) likely inhabited the Atlantic Ocean in the Southern Hemisphere. These results suggest that the ancestral population of the MRCA diverged in two populations, one was dispersed to the Northern Hemisphere and the other across the Southern Hemisphere. Given that the Eocene was the warmest epoch since the Paleogene, the ancestral populations would have crossed the tropics through deeper cooler waters, as proposed by the isothermal submergence hypothesis. The non-monophyly confirmed for the genus Sprattus indicates that its systematics should be re-evaluated.https://peerj.com/articles/11737.pdfAntitropical distributionSpratMolecular clockClupeaBEAST
collection DOAJ
language English
format Article
sources DOAJ
author Cristian B. Canales-Aguirre
Peter A. Ritchie
Sebastián Hernández
Victoria Herrera-Yañez
Sandra Ferrada Fuentes
Fernanda X. Oyarzún
Cristián E. Hernández
Ricardo Galleguillos
Gloria Arratia
spellingShingle Cristian B. Canales-Aguirre
Peter A. Ritchie
Sebastián Hernández
Victoria Herrera-Yañez
Sandra Ferrada Fuentes
Fernanda X. Oyarzún
Cristián E. Hernández
Ricardo Galleguillos
Gloria Arratia
Phylogenetic relationships, origin and historical biogeography of the genus Sprattus (Clupeiformes: Clupeidae)
PeerJ
Antitropical distribution
Sprat
Molecular clock
Clupea
BEAST
author_facet Cristian B. Canales-Aguirre
Peter A. Ritchie
Sebastián Hernández
Victoria Herrera-Yañez
Sandra Ferrada Fuentes
Fernanda X. Oyarzún
Cristián E. Hernández
Ricardo Galleguillos
Gloria Arratia
author_sort Cristian B. Canales-Aguirre
title Phylogenetic relationships, origin and historical biogeography of the genus Sprattus (Clupeiformes: Clupeidae)
title_short Phylogenetic relationships, origin and historical biogeography of the genus Sprattus (Clupeiformes: Clupeidae)
title_full Phylogenetic relationships, origin and historical biogeography of the genus Sprattus (Clupeiformes: Clupeidae)
title_fullStr Phylogenetic relationships, origin and historical biogeography of the genus Sprattus (Clupeiformes: Clupeidae)
title_full_unstemmed Phylogenetic relationships, origin and historical biogeography of the genus Sprattus (Clupeiformes: Clupeidae)
title_sort phylogenetic relationships, origin and historical biogeography of the genus sprattus (clupeiformes: clupeidae)
publisher PeerJ Inc.
series PeerJ
issn 2167-8359
publishDate 2021-08-01
description The genus Sprattus comprises five species of marine pelagic fishes distributed worldwide in antitropical, temperate waters. Their distribution suggests an ancient origin during a cold period of the earth’s history. In this study, we evaluated this hypothesis and corroborated the non-monophyly of the genus Sprattus, using a phylogenetic approach based on DNA sequences of five mitochondrial genome regions. Sprattus sprattus is more closely related to members of the genus Clupea than to other Sprattus species. We also investigated the historical biogeography of the genus, with the phylogenetic tree showing two well-supported clades corresponding to the species distribution in each hemisphere. Time-calibrated phylogenetic analyses showed that an ancient divergence between Northern and Southern Hemispheres occurred at 55.8 MYBP, followed by a diversification in the Oligocene epoch in the Northern Hemisphere clade (33.8 MYBP) and a more recent diversification in the Southern Hemisphere clade (34.2 MYBP). Historical biogeography analyses indicated that the most recent common ancestor (MRCA) likely inhabited the Atlantic Ocean in the Southern Hemisphere. These results suggest that the ancestral population of the MRCA diverged in two populations, one was dispersed to the Northern Hemisphere and the other across the Southern Hemisphere. Given that the Eocene was the warmest epoch since the Paleogene, the ancestral populations would have crossed the tropics through deeper cooler waters, as proposed by the isothermal submergence hypothesis. The non-monophyly confirmed for the genus Sprattus indicates that its systematics should be re-evaluated.
topic Antitropical distribution
Sprat
Molecular clock
Clupea
BEAST
url https://peerj.com/articles/11737.pdf
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