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Updated: Apr 29, 2026

The Forced Swim Test as a Model of Depressive-like Behavior
Published on: March 2, 2015
No Support for Historical Candidate Gene or Candidate Gene-by-Interaction Hypotheses for Major Depression Across
Richard Border1, Emma C Johnson1, Luke M Evans1
1The Institute for Behavioral Genetics (Border, Johnson, Evans, Smolen, Keller), the Department of Psychology and Neuroscience (Border, Berley, Keller), the Department of Applied Mathematics (Border), and the Department of Ecology and Evolutionary Biology (Evans), University of Colorado Boulder, Boulder; the Department of Psychiatry, Washington University School of Medicine, St. Louis (Johnson); the Department of Genetics and Psychiatry, University of North Carolina at Chapel Hill (Sullivan); and the Department of Medical Epidemiology and Biostatistics, Karolinska Institute, Stockholm (Sullivan).
Objective:
Interest in candidate gene and candidate gene-by-environment interaction hypotheses regarding major depressive disorder remains strong despite controversy surrounding the validity of previous findings. In response to this controversy, the present investigation empirically identified 18 candidate genes for depression that have been studied 10 or more times and examined evidence for their relevance to depression phenotypes.
Methods:
Utilizing data from large population-based and case-control samples (Ns ranging from 62,138 to 443,264 across subsamples), the authors conducted a series of preregistered analyses examining candidate gene polymorphism main effects, polymorphism-by-environment interactions, and gene-level effects across a number of operational definitions of depression (e.g., lifetime diagnosis, current severity, episode recurrence) and environmental moderators (e.g., sexual or physical abuse during childhood, socioeconomic adversity).
Results:
No clear evidence was found for any candidate gene polymorphism associations with depression phenotypes or any polymorphism-by-environment moderator effects. As a set, depression candidate genes were no more associated with depression phenotypes than noncandidate genes. The authors demonstrate that phenotypic measurement error is unlikely to account for these null findings.
Conclusions:
The study results do not support previous depression candidate gene findings, in which large genetic effects are frequently reported in samples orders of magnitude smaller than those examined here. Instead, the results suggest that early hypotheses about depression candidate genes were incorrect and that the large number of associations reported in the depression candidate gene literature are likely to be false positives.
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