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Identifying Past Remains of Morphologically Similar Vole Species Using Molar Shapes

Dados Bibliográficos

ID15801837
AutoresNicolas Navarro (0000-0001-7753-3401, Université Paris Sciences et Lettres, autor correspondente), Sophie Montuire (0000-0002-5341-5344, École Pratique des Hautes Études), Rémi Laffont (0009-0009-3567-2214, IoGéoScIeNc), Émilie Steimetz (IoGéoScIeNc), Catalina Onofrei (Université Bourgogne Franche-Comté), A Royer (0000-0002-0139-8765, Centre National de la Recherche Scientifique)
Ano2018
Volume1
Fascículo3
Páginas20-20
Data de publicação2018-09-27
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoQuaternary (JOURNAL)
Identificadores do periódicoISSN: 2571-550X • E-ISSN: 2571-550X
EditoraMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/quat1030020
OpenAlexW2893309478
IdiomaEN
Citações recebidas1
Referências citadas31

Accurate species identification in fossil remains is a complex task but is a key component for developing good inferences on many, if not all, fundamental questions in macroecology and macroevolution. In the Quaternary, arvicolines are very abundant remains in archeological and paleontological sites in Western Europe and their identification is often based on the first lower molar. The common vole Microtus arvalis (Pallas, 1778) and the field vole Microtus agrestis (Linnaeus, 1761) are commonly found in those deposits. These two species are genetically and ecologically divergent. Nonetheless, their lower molars, on which species identification is done, exhibit a large morphological variation that can potentially lead to some confusion and misinterpretation. Moreover, molecular data suggest that present-day M. agrestis populations are a complex of divergent lineages, some of them being recognized nowadays as valid species. On the basis of extant populations representing a large part of the present-day geographical distribution of these two species, we developed a classification model based on geometric morphometrics of the first lower molar. Our statistical model was then applied on four fossil sites selected to evaluate the relevance of taxonomic determination found in species lists. The model using landmarks describing the overall shape of the first lower molar classifies the two species with the smallest prediction error together with very high individual posterior probabilities. The obtained classification is much better than those arising from shapes of any specific molar part such as the anterior loop, asymmetry or peculiar triangle shape. Discrepancies with expert classification on fossils suggest that existing faunal lists should always be considered cautiously for these two species. Our morphometric model provides a first step towards a rationalized way of revising past collections and expertise for future small mammal assemblages. It will thus help us better understand the paleobiogeographical expansion of these two key species in Quaternary faunas

Biology · Evolutionary biology · Identification (biology · Microtus · Morphometrics · Population · Principal component analysis · Statistics · Vole · Zoology · Evolution and Paleontology Studies · Mathematics · Morphological variations and asymmetry · Yersinia bacterium, plague, ectoparasites research · Ecology · Paleontology

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    Open Access•Dean C Adams, Erik Otárola-Castillo et al.•Methods in Ecology and Evolution•2013

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    Open Access•Mathieu Langlais, Véronique Laroulandie et al.•Paléo•2015

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    Open Access•A Royer•Quaternary International•2016

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    Open Access•Allowen Evin, Thomas Cucchi et al.•Journal of Archaeological Science•2012

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    Mathieu Langlais, Véronique Laroulandie et al.•Bulletin de la Société…•2009

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    Héloïse Koehler, Raphaël Angevin et al.•Bulletin de la Société…•2013

Obras citantes distintas1
Citações por ano0,13
Intervalo de citações2018 - 2018 (1)
Velocidade de citaçãohistorical
Altamente citadoNão
Tipos de citaçãoNeutras: 1
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