Literature DB >> 15126408

Integration and modularity of quantitative trait locus effects on geometric shape in the mouse mandible.

Christian Peter Klingenberg1, Larry J Leamy, James M Cheverud.   

Abstract

The mouse mandible has long served as a model system for complex morphological structures. Here we use new methodology based on geometric morphometrics to test the hypothesis that the mandible consists of two main modules, the alveolar region and the ascending ramus, and that this modularity is reflected in the effects of quantitative trait loci (QTL). The shape of each mandible was analyzed by the positions of 16 morphological landmarks and these data were analyzed using Procrustes analysis. Interval mapping in the F(2) generation from intercrosses of the LG/J and SM/J strains revealed 33 QTL affecting mandible shape. The QTL effects corresponded to a variety of shape changes, but ordination or a parametric bootstrap test of clustering did not reveal any distinct groups of QTL that would affect primarily one module or the other. The correlations of landmark positions between the two modules tended to be lower than the correlations between arbitrary subsets of landmarks, indicating that the modules were relatively independent of each other and confirming the hypothesized location of the boundary between them. While these results are in agreement with the hypothesis of modularity, they also underscore that modularity is a question of the relative degrees to which QTL contribute to different traits, rather than a question of discrete sets of QTL contributing to discrete sets of traits.

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Year:  2004        PMID: 15126408      PMCID: PMC1470826          DOI: 10.1534/genetics.166.4.1909

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  37 in total

Review 1.  Finding the molecular basis of quantitative traits: successes and pitfalls.

Authors:  J Flint; R Mott
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Authors:  J M Cheverud; S E Hartman; J T Richtsmeier; W R Atchley
Journal:  J Craniofac Genet Dev Biol       Date:  1991 Jul-Sep

3.  Development of mandibular cartilages in the rat.

Authors:  S Tomo; M Ogita; I Tomo
Journal:  Anat Rec       Date:  1997-10

4.  Genetic architecture of mandible shape in mice: effects of quantitative trait loci analyzed by geometric morphometrics.

Authors:  C P Klingenberg; L J Leamy; E J Routman; J M Cheverud
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5.  Genes that affect the shape of the murine mandible. Congenic strain analysis.

Authors:  D W Bailey
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6.  Quantitative trait loci for murine growth.

Authors:  J M Cheverud; E J Routman; F A Duarte; B van Swinderen; K Cothran; C Perel
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7.  Genes that affect morphogenesis of the murine mandible. Recombinant-inbred strain analysis.

Authors:  D W Bailey
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  76 in total

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