Environmental temperatures shape thermal physiology as well as diversification and genome-wide substitution rates in lizards

Predicted responses to climate change may be informed by evolutionary history. Here, the authors reconstruct the phylogeny of lacertid lizards and investigate how the evolution of this clade has varied with paleoclimates and how closely adapted extant species are to modern climates.

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Autores principales: Joan Garcia-Porta, Iker Irisarri, Martin Kirchner, Ariel Rodríguez, Sebastian Kirchhof, Jason L. Brown, Amy MacLeod, Alexander P. Turner, Faraham Ahmadzadeh, Gonzalo Albaladejo, Jelka Crnobrnja-Isailovic, Ignacio De la Riva, Adnane Fawzi, Pedro Galán, Bayram Göçmen, D. James Harris, Octavio Jiménez-Robles, Ulrich Joger, Olga Jovanović Glavaš, Mert Karış, Giannina Koziel, Sven Künzel, Mariana Lyra, Donald Miles, Manuel Nogales, Mehmet Anıl Oğuz, Panayiotis Pafilis, Loïs Rancilhac, Noemí Rodríguez, Benza Rodríguez Concepción, Eugenia Sanchez, Daniele Salvi, Tahar Slimani, Abderrahim S’khifa, Ali Turk Qashqaei, Anamarija Žagar, Alan Lemmon, Emily Moriarty Lemmon, Miguel Angel Carretero, Salvador Carranza, Hervé Philippe, Barry Sinervo, Johannes Müller, Miguel Vences, Katharina C. Wollenberg Valero
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Publicado: Nature Portfolio 2019
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spelling oai:doaj.org-article:b374daaf9ebe480db2063da21eb07d482021-12-02T17:31:22ZEnvironmental temperatures shape thermal physiology as well as diversification and genome-wide substitution rates in lizards10.1038/s41467-019-11943-x2041-1723https://doaj.org/article/b374daaf9ebe480db2063da21eb07d482019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-11943-xhttps://doaj.org/toc/2041-1723Predicted responses to climate change may be informed by evolutionary history. Here, the authors reconstruct the phylogeny of lacertid lizards and investigate how the evolution of this clade has varied with paleoclimates and how closely adapted extant species are to modern climates.Joan Garcia-PortaIker IrisarriMartin KirchnerAriel RodríguezSebastian KirchhofJason L. BrownAmy MacLeodAlexander P. TurnerFaraham AhmadzadehGonzalo AlbaladejoJelka Crnobrnja-IsailovicIgnacio De la RivaAdnane FawziPedro GalánBayram GöçmenD. James HarrisOctavio Jiménez-RoblesUlrich JogerOlga Jovanović GlavašMert KarışGiannina KozielSven KünzelMariana LyraDonald MilesManuel NogalesMehmet Anıl OğuzPanayiotis PafilisLoïs RancilhacNoemí RodríguezBenza Rodríguez ConcepciónEugenia SanchezDaniele SalviTahar SlimaniAbderrahim S’khifaAli Turk QashqaeiAnamarija ŽagarAlan LemmonEmily Moriarty LemmonMiguel Angel CarreteroSalvador CarranzaHervé PhilippeBarry SinervoJohannes MüllerMiguel VencesKatharina C. Wollenberg ValeroNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-12 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Joan Garcia-Porta
Iker Irisarri
Martin Kirchner
Ariel Rodríguez
Sebastian Kirchhof
Jason L. Brown
Amy MacLeod
Alexander P. Turner
Faraham Ahmadzadeh
Gonzalo Albaladejo
Jelka Crnobrnja-Isailovic
Ignacio De la Riva
Adnane Fawzi
Pedro Galán
Bayram Göçmen
D. James Harris
Octavio Jiménez-Robles
Ulrich Joger
Olga Jovanović Glavaš
Mert Karış
Giannina Koziel
Sven Künzel
Mariana Lyra
Donald Miles
Manuel Nogales
Mehmet Anıl Oğuz
Panayiotis Pafilis
Loïs Rancilhac
Noemí Rodríguez
Benza Rodríguez Concepción
Eugenia Sanchez
Daniele Salvi
Tahar Slimani
Abderrahim S’khifa
Ali Turk Qashqaei
Anamarija Žagar
Alan Lemmon
Emily Moriarty Lemmon
Miguel Angel Carretero
Salvador Carranza
Hervé Philippe
Barry Sinervo
Johannes Müller
Miguel Vences
Katharina C. Wollenberg Valero
Environmental temperatures shape thermal physiology as well as diversification and genome-wide substitution rates in lizards
description Predicted responses to climate change may be informed by evolutionary history. Here, the authors reconstruct the phylogeny of lacertid lizards and investigate how the evolution of this clade has varied with paleoclimates and how closely adapted extant species are to modern climates.
format article
author Joan Garcia-Porta
Iker Irisarri
Martin Kirchner
Ariel Rodríguez
Sebastian Kirchhof
Jason L. Brown
Amy MacLeod
Alexander P. Turner
Faraham Ahmadzadeh
Gonzalo Albaladejo
Jelka Crnobrnja-Isailovic
Ignacio De la Riva
Adnane Fawzi
Pedro Galán
Bayram Göçmen
D. James Harris
Octavio Jiménez-Robles
Ulrich Joger
Olga Jovanović Glavaš
Mert Karış
Giannina Koziel
Sven Künzel
Mariana Lyra
Donald Miles
Manuel Nogales
Mehmet Anıl Oğuz
Panayiotis Pafilis
Loïs Rancilhac
Noemí Rodríguez
Benza Rodríguez Concepción
Eugenia Sanchez
Daniele Salvi
Tahar Slimani
Abderrahim S’khifa
Ali Turk Qashqaei
Anamarija Žagar
Alan Lemmon
Emily Moriarty Lemmon
Miguel Angel Carretero
Salvador Carranza
Hervé Philippe
Barry Sinervo
Johannes Müller
Miguel Vences
Katharina C. Wollenberg Valero
author_facet Joan Garcia-Porta
Iker Irisarri
Martin Kirchner
Ariel Rodríguez
Sebastian Kirchhof
Jason L. Brown
Amy MacLeod
Alexander P. Turner
Faraham Ahmadzadeh
Gonzalo Albaladejo
Jelka Crnobrnja-Isailovic
Ignacio De la Riva
Adnane Fawzi
Pedro Galán
Bayram Göçmen
D. James Harris
Octavio Jiménez-Robles
Ulrich Joger
Olga Jovanović Glavaš
Mert Karış
Giannina Koziel
Sven Künzel
Mariana Lyra
Donald Miles
Manuel Nogales
Mehmet Anıl Oğuz
Panayiotis Pafilis
Loïs Rancilhac
Noemí Rodríguez
Benza Rodríguez Concepción
Eugenia Sanchez
Daniele Salvi
Tahar Slimani
Abderrahim S’khifa
Ali Turk Qashqaei
Anamarija Žagar
Alan Lemmon
Emily Moriarty Lemmon
Miguel Angel Carretero
Salvador Carranza
Hervé Philippe
Barry Sinervo
Johannes Müller
Miguel Vences
Katharina C. Wollenberg Valero
author_sort Joan Garcia-Porta
title Environmental temperatures shape thermal physiology as well as diversification and genome-wide substitution rates in lizards
title_short Environmental temperatures shape thermal physiology as well as diversification and genome-wide substitution rates in lizards
title_full Environmental temperatures shape thermal physiology as well as diversification and genome-wide substitution rates in lizards
title_fullStr Environmental temperatures shape thermal physiology as well as diversification and genome-wide substitution rates in lizards
title_full_unstemmed Environmental temperatures shape thermal physiology as well as diversification and genome-wide substitution rates in lizards
title_sort environmental temperatures shape thermal physiology as well as diversification and genome-wide substitution rates in lizards
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/b374daaf9ebe480db2063da21eb07d48
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