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.
Guardado en:
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | article |
Lenguaje: | EN |
Publicado: |
Nature Portfolio
2019
|
Materias: | |
Acceso en línea: | https://doaj.org/article/b374daaf9ebe480db2063da21eb07d48 |
Etiquetas: |
Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
|
id |
oai:doaj.org-article:b374daaf9ebe480db2063da21eb07d48 |
---|---|
record_format |
dspace |
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 |
work_keys_str_mv |
AT joangarciaporta environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT ikeririsarri environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT martinkirchner environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT arielrodriguez environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT sebastiankirchhof environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT jasonlbrown environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT amymacleod environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT alexanderpturner environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT farahamahmadzadeh environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT gonzaloalbaladejo environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT jelkacrnobrnjaisailovic environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT ignaciodelariva environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT adnanefawzi environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT pedrogalan environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT bayramgocmen environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT djamesharris environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT octaviojimenezrobles environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT ulrichjoger environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT olgajovanovicglavas environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT mertkarıs environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT gianninakoziel environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT svenkunzel environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT marianalyra environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT donaldmiles environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT manuelnogales environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT mehmetanıloguz environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT panayiotispafilis environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT loisrancilhac environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT noemirodriguez environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT benzarodriguezconcepcion environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT eugeniasanchez environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT danielesalvi environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT taharslimani environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT abderrahimskhifa environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT aliturkqashqaei environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT anamarijazagar environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT alanlemmon environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT emilymoriartylemmon environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT miguelangelcarretero environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT salvadorcarranza environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT hervephilippe environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT barrysinervo environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT johannesmuller environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT miguelvences environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards AT katharinacwollenbergvalero environmentaltemperaturesshapethermalphysiologyaswellasdiversificationandgenomewidesubstitutionratesinlizards |
_version_ |
1718380633512738816 |