Effect of Gene and Physical Activity Interaction on Trunk Fat Percentage Among the Newfoundland Population

Objective To explore the effect of FTO gene and physical activity interaction on trunk fat percentage. Design and Methods Subjects are 3,004 individuals from Newfoundland and Labrador whose trunk fat percentage and physical activity were recorded, and who were genotyped for 11 single-nucleotide poly...

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Main Authors: Anthony Payne, Farrell Cahill, Guang Sun, J Concepción Loredo-Osti, Taraneh Abarin
Format: Article
Language:English
Published: SAGE Publishing 2014-01-01
Series:Genetics and Epigenetics
Online Access:https://doi.org/10.4137/GEG.S14957
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spelling doaj-4187651518a84b62a69d2d07889a969d2020-11-25T00:32:15ZengSAGE PublishingGenetics and Epigenetics1179-237X2014-01-01610.4137/GEG.S14957Effect of Gene and Physical Activity Interaction on Trunk Fat Percentage Among the Newfoundland PopulationAnthony Payne0Farrell Cahill1Guang Sun2J Concepción Loredo-Osti3Taraneh Abarin4Department of Mathematics and Statistics, Memorial University, St. John's, NL, Canada.Faculty of Medicine, Memorial University, St. John's, NL, Canada.Faculty of Medicine, Memorial University, St. John's, NL, Canada.Department of Mathematics and Statistics, Memorial University, St. John's, NL, Canada.Department of Mathematics and Statistics, Memorial University, St. John's, NL, Canada.Objective To explore the effect of FTO gene and physical activity interaction on trunk fat percentage. Design and Methods Subjects are 3,004 individuals from Newfoundland and Labrador whose trunk fat percentage and physical activity were recorded, and who were genotyped for 11 single-nucleotide polymorphisms (SNPs) in the FTO gene. Subjects were stratified by gender. Multiple tests and multiple regressions were used to analyze the effects of physical activity, variants of FTO , age, and their interactions on trunk fat percentage. Dietary information and other environmental factors were not considered. Results Higher levels of physical activity tend to reduce trunk fat percentage in all individuals. Furthermore, in males, rs9939609 and rs1421085 were significant (α = 0.05) in explaining central body fat, but no SNPs were significant in females. For highly active males, trunk fat percentage varied significantly between variants of rs9939609 and rs1421085, but there is no significant effect among individuals with low activity. The other SNPs examined were not significant in explaining trunk fat percentage. Conclusions Homozygous male carriers of non-obesity risk alleles at rs9939609 and rs1421085 will have significant reduction in central body fat from physical activity in contrast to homozygous males of the obesity-risk alleles. The additive effect of these SNPs is found in males with high physical activity only.https://doi.org/10.4137/GEG.S14957
collection DOAJ
language English
format Article
sources DOAJ
author Anthony Payne
Farrell Cahill
Guang Sun
J Concepción Loredo-Osti
Taraneh Abarin
spellingShingle Anthony Payne
Farrell Cahill
Guang Sun
J Concepción Loredo-Osti
Taraneh Abarin
Effect of Gene and Physical Activity Interaction on Trunk Fat Percentage Among the Newfoundland Population
Genetics and Epigenetics
author_facet Anthony Payne
Farrell Cahill
Guang Sun
J Concepción Loredo-Osti
Taraneh Abarin
author_sort Anthony Payne
title Effect of Gene and Physical Activity Interaction on Trunk Fat Percentage Among the Newfoundland Population
title_short Effect of Gene and Physical Activity Interaction on Trunk Fat Percentage Among the Newfoundland Population
title_full Effect of Gene and Physical Activity Interaction on Trunk Fat Percentage Among the Newfoundland Population
title_fullStr Effect of Gene and Physical Activity Interaction on Trunk Fat Percentage Among the Newfoundland Population
title_full_unstemmed Effect of Gene and Physical Activity Interaction on Trunk Fat Percentage Among the Newfoundland Population
title_sort effect of gene and physical activity interaction on trunk fat percentage among the newfoundland population
publisher SAGE Publishing
series Genetics and Epigenetics
issn 1179-237X
publishDate 2014-01-01
description Objective To explore the effect of FTO gene and physical activity interaction on trunk fat percentage. Design and Methods Subjects are 3,004 individuals from Newfoundland and Labrador whose trunk fat percentage and physical activity were recorded, and who were genotyped for 11 single-nucleotide polymorphisms (SNPs) in the FTO gene. Subjects were stratified by gender. Multiple tests and multiple regressions were used to analyze the effects of physical activity, variants of FTO , age, and their interactions on trunk fat percentage. Dietary information and other environmental factors were not considered. Results Higher levels of physical activity tend to reduce trunk fat percentage in all individuals. Furthermore, in males, rs9939609 and rs1421085 were significant (α = 0.05) in explaining central body fat, but no SNPs were significant in females. For highly active males, trunk fat percentage varied significantly between variants of rs9939609 and rs1421085, but there is no significant effect among individuals with low activity. The other SNPs examined were not significant in explaining trunk fat percentage. Conclusions Homozygous male carriers of non-obesity risk alleles at rs9939609 and rs1421085 will have significant reduction in central body fat from physical activity in contrast to homozygous males of the obesity-risk alleles. The additive effect of these SNPs is found in males with high physical activity only.
url https://doi.org/10.4137/GEG.S14957
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