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Experimental Evolution in a Warming World: The Omics Era

dc.contributor.authorSantos, Marta A.
dc.contributor.authorCarromeu-Santos, Ana
dc.contributor.authorQuina, Ana S
dc.contributor.authorAntunes, Marta
dc.contributor.authorKristensen, Torsten N
dc.contributor.authorSantos, Mauro
dc.contributor.authorMatos, Margarida
dc.contributor.authorDe mendonça fragata almeida, Inês
dc.contributor.authorSimões, Pedro
dc.date.accessioned2024-12-09T17:34:19Z
dc.date.available2024-12-09T17:34:19Z
dc.date.issued2024-07
dc.description.abstractA comprehensive understanding of the genetic mechanisms that shape species responses to thermal variation is essential for more accurate predictions of the impacts of climate change on biodiversity. Experimental evolution with high-throughput resequencing approaches (evolve and resequence) is a highly effective tool that has been increasingly employed to elucidate the genetic basis of adaptation. The number of thermal evolve and resequence studies is rising, yet there is a dearth of efforts to integrate this new wealth of knowledge. Here, we review this literature showing how these studies have contributed to increase our understanding on the genetic basis of thermal adaptation. We identify two major trends: highly polygenic basis of thermal adaptation and general lack of consistency in candidate targets of selection between studies. These findings indicate that the adaptive responses to specific environments are rather independent. A review of the literature reveals several gaps in the existing research. Firstly, there is a paucity of studies done with organisms of diverse taxa. Secondly, there is a need to apply more dynamic and ecologically relevant thermal environments. Thirdly, there is a lack of studies that integrate genomic changes with changes in life history and behavioral traits. Addressing these issues would allow a more in-depth understanding of the relationship between genotype and phenotype. We highlight key methodological aspects that can address some of the limitations and omissions identified. These include the need for greater standardization of methodologies and the utilization of new technologies focusing on the integration of genomic and phenotypic variation in the context of thermal adaptation.pt_PT
dc.description.versioninfo:eu-repo/semantics/publishedVersionpt_PT
dc.identifier.citationSantos, M.A., A. Carromeu-Santos, A.S. Quina, M.A. Antunes, T.N. Kristensen, M. Santos, M. Matos, I. Fragata & P. Simões (2024). Experimental evolution in a warming world - the omics era. Molecular Biology and Evolution, 41: 8, msae148pt_PT
dc.identifier.doi10.1093/molbev/msae148pt_PT
dc.identifier.urihttp://hdl.handle.net/10400.5/96152
dc.language.isoengpt_PT
dc.peerreviewedyespt_PT
dc.publisherOxford University Presspt_PT
dc.relationFCT project PTDC/BIA-EVL/28298/2017pt_PT
dc.relationFCT CE3C Unit FCT funding project UIDB/00329/2020 (DOI 10.54499/UIDB/00329/2020)pt_PT
dc.relationERC DYNAMICTRIO grant agreement no. 101042392pt_PT
dc.relationFCT contract under DL57/2016 changed by DL57/2017 to PSpt_PT
dc.relationFCT through a junior researcher contract (CEECIND/0216/2018) to IFpt_PT
dc.relationGrant PID2021-127107NB-I00 from Ministerio de Ciencia e Innovación (Spain)pt_PT
dc.relationGrant SGR 00526 from Generalitat de Catalunyapt_PT
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/pt_PT
dc.titleExperimental Evolution in a Warming World: The Omics Erapt_PT
dc.typejournal article
dspace.entity.typePublication
oaire.citation.issue8pt_PT
oaire.citation.titleMolecular Biology and Evolutionpt_PT
oaire.citation.volume41pt_PT
person.familyNameArandas dos Santos
person.familyNameAntunes
person.familyNameSantos
person.familyNameMatos
person.familyNameLopes de Mendonça Fragata Almeida
person.familyNameSimões
person.givenNameMarta Alexandra
person.givenNameMarta
person.givenNameMauro
person.givenNameMargarida
person.givenNameInês Regina
person.givenNamePedro Miguel
person.identifierhttps://scholar.google.pt/citations?hl=en&user=6jqjgs8AAAAJ
person.identifierK-2365-2012
person.identifierResearcherID: I-9876-2014
person.identifier.ciencia-idD117-A45D-A88A
person.identifier.ciencia-id6A12-5321-627A
person.identifier.ciencia-id461A-92A5-2FD0
person.identifier.ciencia-idF812-23C0-FEC5
person.identifier.ciencia-id7E14-DE9F-7537
person.identifier.orcid0000-0003-1463-6037
person.identifier.orcid0000-0002-5014-7145
person.identifier.orcid0000-0002-6478-6570
person.identifier.orcid0000-0001-6998-5133
person.identifier.orcid0000-0001-6865-1510
person.identifier.orcid0000-0002-4253-1200
person.identifier.scopus-author-id35586903000
person.identifier.scopus-author-id24474345000
rcaap.rightsopenAccesspt_PT
rcaap.typearticlept_PT
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relation.isAuthorOfPublication.latestForDiscovery56a3ed3e-c763-4ecc-855d-2ac479a1585b

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