Micro-evolutionary divergence patterns of mandible shapes in wild house mouse (Mus musculus) populations

Abstract Background Insights into the micro-evolutionary patterns of morphological traits require an assessment of the natural variation of the trait within and between populations and closely related species. The mouse mandible is a particularly suitable morphological trait for such an analysis, si...

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Main Authors: Boell, Louis, Tautz, Diethard
Format: Article in Journal/Newspaper
Language:English
Published: BioMed Central Ltd. 2011
Subjects:
Online Access:http://www.biomedcentral.com/1471-2148/11/306
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spelling ftbiomed:oai:biomedcentral.com:1471-2148-11-306 2023-05-15T14:00:05+02:00 Micro-evolutionary divergence patterns of mandible shapes in wild house mouse (Mus musculus) populations Boell, Louis Tautz, Diethard 2011-10-18 http://www.biomedcentral.com/1471-2148/11/306 en eng BioMed Central Ltd. http://www.biomedcentral.com/1471-2148/11/306 Copyright 2011 Boell and Tautz; licensee BioMed Central Ltd. Research article 2011 ftbiomed 2011-11-13T00:44:49Z Abstract Background Insights into the micro-evolutionary patterns of morphological traits require an assessment of the natural variation of the trait within and between populations and closely related species. The mouse mandible is a particularly suitable morphological trait for such an analysis, since it has long been used as a model to study the quantitative genetics of shape. In addition, many distinct populations, sub-species and closely related species are known for the house mouse. However, morphological comparisons among wild caught animals require an assessment in how far environmental and technical factors could interfere with the shape change measurements. Results Using geometric morphometrics, we have surveyed mandible shapes in 15 natural populations of the genus Mus , with a focus on the subspecies Mus musculus domesticus . In parallel we have carefully assessed possibly confounding technical and biological factors. We find that there are distinct differences on average between populations, subspecies and species, but these differences are smaller than differences between individuals within populations. Populations from summer-dry regions, although more ancestral, are less distinct from each other than are populations from the more recently colonized northern areas. Populations with especially distinct shapes occur in an area of sympatry of M. m. domesticus and M. spretus and on recently colonized sub-antarctic islands. We have also studied a number of inbred strains to assess in how far their mandible shapes resemble those from the wild. We find that they fall indeed into the shape space of natural variation between individuals in populations. Conclusions Although mandible shapes in natural populations can be influenced by environmental variables, these influences are insufficient to explain the average extent of shape differences between populations, such that evolutionary processes must be invoked to explain this level of diversity. We discuss that adaptive evolution may contribute to shape changes between populations, in particular in newly colonized areas. A comparison between inbred strains and wild mice suggests that the laboratory environment has no major systematic effect on the mandible shape and that such strains can be used as representatives of the natural shape differences between individuals. Article in Journal/Newspaper Antarc* Antarctic BioMed Central Antarctic
institution Open Polar
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language English
description Abstract Background Insights into the micro-evolutionary patterns of morphological traits require an assessment of the natural variation of the trait within and between populations and closely related species. The mouse mandible is a particularly suitable morphological trait for such an analysis, since it has long been used as a model to study the quantitative genetics of shape. In addition, many distinct populations, sub-species and closely related species are known for the house mouse. However, morphological comparisons among wild caught animals require an assessment in how far environmental and technical factors could interfere with the shape change measurements. Results Using geometric morphometrics, we have surveyed mandible shapes in 15 natural populations of the genus Mus , with a focus on the subspecies Mus musculus domesticus . In parallel we have carefully assessed possibly confounding technical and biological factors. We find that there are distinct differences on average between populations, subspecies and species, but these differences are smaller than differences between individuals within populations. Populations from summer-dry regions, although more ancestral, are less distinct from each other than are populations from the more recently colonized northern areas. Populations with especially distinct shapes occur in an area of sympatry of M. m. domesticus and M. spretus and on recently colonized sub-antarctic islands. We have also studied a number of inbred strains to assess in how far their mandible shapes resemble those from the wild. We find that they fall indeed into the shape space of natural variation between individuals in populations. Conclusions Although mandible shapes in natural populations can be influenced by environmental variables, these influences are insufficient to explain the average extent of shape differences between populations, such that evolutionary processes must be invoked to explain this level of diversity. We discuss that adaptive evolution may contribute to shape changes between populations, in particular in newly colonized areas. A comparison between inbred strains and wild mice suggests that the laboratory environment has no major systematic effect on the mandible shape and that such strains can be used as representatives of the natural shape differences between individuals.
format Article in Journal/Newspaper
author Boell, Louis
Tautz, Diethard
spellingShingle Boell, Louis
Tautz, Diethard
Micro-evolutionary divergence patterns of mandible shapes in wild house mouse (Mus musculus) populations
author_facet Boell, Louis
Tautz, Diethard
author_sort Boell, Louis
title Micro-evolutionary divergence patterns of mandible shapes in wild house mouse (Mus musculus) populations
title_short Micro-evolutionary divergence patterns of mandible shapes in wild house mouse (Mus musculus) populations
title_full Micro-evolutionary divergence patterns of mandible shapes in wild house mouse (Mus musculus) populations
title_fullStr Micro-evolutionary divergence patterns of mandible shapes in wild house mouse (Mus musculus) populations
title_full_unstemmed Micro-evolutionary divergence patterns of mandible shapes in wild house mouse (Mus musculus) populations
title_sort micro-evolutionary divergence patterns of mandible shapes in wild house mouse (mus musculus) populations
publisher BioMed Central Ltd.
publishDate 2011
url http://www.biomedcentral.com/1471-2148/11/306
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genre Antarc*
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op_relation http://www.biomedcentral.com/1471-2148/11/306
op_rights Copyright 2011 Boell and Tautz; licensee BioMed Central Ltd.
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