Literature DB >> 24118934

The use of mouse models to unravel genetic architecture of physical activity: a review.

E Kostrzewa1, M J Kas.   

Abstract

The discovery of genetic variants that underlie a complex phenotype is challenging. One possible approach to facilitate this endeavor is to identify quantitative trait loci (QTL) that contribute to the phenotype and consequently unravel the candidate genes within these loci. Each proposed candidate locus contains multiple genes and, therefore, further analysis is required to choose plausible candidate genes. One of such methods is to use comparative genomics in order to narrow down the QTL to a region containing only a few genes. We illustrate this strategy by applying it to genetic findings regarding physical activity (PA) in mice and human. Here, we show that PA is a complex phenotype with a strong biological basis and complex genetic architecture. Furthermore, we provide considerations for the translatability of this phenotype between species. Finally, we review studies which point to candidate genetic regions for PA in humans (genetic association and linkage studies) or use mouse models of PA (QTL studies) and we identify candidate genetic regions that overlap between species. On the basis of a large variety of studies in mice and human, statistical analysis reveals that the number of overlapping regions is not higher than expected on a chance level. We conclude that the discovery of new candidate genes for complex phenotypes, such as PA levels, is hampered by various factors, including genetic background differences, phenotype definition and a wide variety of methodological differences between studies.
© 2013 John Wiley & Sons Ltd and International Behavioural and Neural Genetics Society.

Entities:  

Keywords:  Complex phenotypes; QTL; genetics; home cage activity; mouse models; open field test; physical activity; running wheel activity; spontaneous physical activity; voluntary exercise

Mesh:

Year:  2013        PMID: 24118934     DOI: 10.1111/gbb.12091

Source DB:  PubMed          Journal:  Genes Brain Behav        ISSN: 1601-183X            Impact factor:   3.449


  9 in total

1.  Physical Activity, Decision-Making Abilities, and Eating Disturbances in Pre- and Postbariatric Surgery Patients.

Authors:  Merle Bartsch; Svenja Langenberg; Kerstin Gruner-Labitzke; Mareike Schulze; Hinrich Köhler; Ross D Crosby; Michael Marschollek; Martina de Zwaan; Astrid Müller
Journal:  Obes Surg       Date:  2016-12       Impact factor: 4.129

2.  Genetic Basis of Aerobically Supported Voluntary Exercise: Results from a Selection Experiment with House Mice.

Authors:  David A Hillis; Liran Yadgary; George M Weinstock; Fernando Pardo-Manuel de Villena; Daniel Pomp; Alexandra S Fowler; Shizhong Xu; Frank Chan; Theodore Garland
Journal:  Genetics       Date:  2020-09-25       Impact factor: 4.562

3.  Neutralizing interleukin-6 in tumor-bearing mice does not abrogate behavioral fatigue induced by Lewis lung carcinoma.

Authors:  Kiersten Scott; Thien Trong Phan; A Phillip West; Cullen M Taniguchi; Robert Dantzer
Journal:  Behav Brain Res       Date:  2021-09-25       Impact factor: 3.332

4.  CC002/Unc females are mouse models of exercise-induced paradoxical fat response.

Authors:  Rachel C McMullan; Martin T Ferris; Timothy A Bell; Vineet D Menachery; Ralph S Baric; Kunjie Hua; Daniel Pomp; Abbie E Smith-Ryan; Fernando Pardo-Manuel de Villena
Journal:  Physiol Rep       Date:  2018-06

5.  Modeling the quantitative nature of neurodevelopmental disorders using Collaborative Cross mice.

Authors:  Remco T Molenhuis; Hilgo Bruining; Myrna J V Brandt; Petra E van Soldt; Hanifa J Abu-Toamih Atamni; J Peter H Burbach; Fuad A Iraqi; Richard F Mott; Martien J H Kas
Journal:  Mol Autism       Date:  2018-12-13       Impact factor: 7.509

Review 6.  Impacts of exercise interventions on different diseases and organ functions in mice.

Authors:  Shanshan Guo; Yiru Huang; Yan Zhang; He Huang; Shangyu Hong; Tiemin Liu
Journal:  J Sport Health Sci       Date:  2019-07-13       Impact factor: 7.179

7.  DNA Methylation Analysis of Imprinted Genes in the Cortex and Hippocampus of Cross-Fostered Mice Selectively Bred for Increased Voluntary Wheel-Running.

Authors:  Sarah E Latchney; Marcell D Cadney; Austin Hopkins; Theodore Garland
Journal:  Behav Genet       Date:  2022-08-21       Impact factor: 2.965

8.  The dopaminergic reward system and leisure time exercise behavior: a candidate allele study.

Authors:  Charlotte Huppertz; Meike Bartels; Maria M Groen-Blokhuis; Conor V Dolan; Marleen H M de Moor; Abdel Abdellaoui; Catharina E M van Beijsterveldt; Erik A Ehli; Jouke-Jan Hottenga; Gonneke Willemsen; Xiangjun Xiao; Paul Scheet; Gareth E Davies; Dorret I Boomsma; James J Hudziak; Eco J C de Geus
Journal:  Biomed Res Int       Date:  2014-03-09       Impact factor: 3.411

9.  Joining forces: the need to combine science and ethics to address problems of validity and translation in neuropsychiatry research using animal models.

Authors:  Franck L B Meijboom; Elzbieta Kostrzewa; Cathalijn H C Leenaars
Journal:  Philos Ethics Humanit Med       Date:  2020-01-23       Impact factor: 2.464

  9 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.