Genotype by Energy Expenditure Interaction and Body Composition Traits: The Portuguese Healthy Family Study
Author(s) -
Daniel Santos,
Peter T. Katzmarzyk,
Vincent P. Diego,
Thayse Natacha Gomes,
Fernanda Karina dos Santos,
John Blangero,
José Maia
Publication year - 2014
Publication title -
biomed research international
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.772
H-Index - 126
eISSN - 2314-6141
pISSN - 2314-6133
DOI - 10.1155/2014/845207
Subject(s) - bioelectrical impedance analysis , genotype , gene–environment interaction , biology , heritability , interaction , energy expenditure , quantitative trait locus , genetic correlation , trait , analysis of variance , genetics , genetic variation , medicine , body mass index , endocrinology , gene , agronomy , programming language , computer science
Background and Aims . Energy expenditure has been negatively correlated with fat accumulation. However, this association is highly variable. In the present study we applied a genotype by environment interaction method to examine the presence of Genotype x by Total Daily Energy Expenditure and Genotype x by Daily Energy Expenditure interactions in the expression of different body composition traits. Methods and Results . A total of 958 subjects from 294 families of The Portuguese Healthy Family Study were included in the analysis. TDEE and DEE were assessed using a physical activity recall. Body fat percentages were measured with a bioelectrical impedance scale. GxTDEE and GxDEE examinations were performed using SOLAR 4.0 software. All BC traits were significantly heritable, with heritabilities ranging from 21% to 34%. The GxTDEE and GxDEE interaction models fitted the data better than the polygenic model for all traits. For all traits, a significant GxTDEE and GxDEE interaction was due to variance heterogeneity among distinct levels of TDEE and DEE. For WC, GxTDEE was also significant due to the genetic correlation function. Conclusions . TDEE and DEE are environmental constraints associated with the expression of individuals' BC genotypes, leading to variability in the phenotypic expression of BC traits.
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