The Fourth Law of Behavior Genetics
Четвертый закон генетики поведения
2015-08-01
SCID: 54.1/vdz7gzak
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Fourth Law of Behavior Geneticscandidate gene replication failuregenome-wide association studiespolygenic architecture
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Abstract (AI)
Behavior genetics is the study of the relationship between genetic variation and psychological traits. Turkheimer (2000) proposed "Three Laws of Behavior Genetics" based on empirical regularities observed in studies of twins and other kinships. On the basis of molecular studies that have measured DNA variation directly, we propose a Fourth Law of Behavior Genetics: "A typical human behavioral trait is associated with very many genetic variants, each of which accounts for a very small percentage of the behavioral variability." This law explains several consistent patterns in the results of gene discovery studies, including the failure of candidate gene studies to robustly replicate, the need for genome-wide association studies (and why such studies have a much stronger replication record), and the crucial importance of extremely large samples in these endeavors. We review the evidence in favor of the Fourth Law and discuss its implications for the design and interpretation of gene-behavior research.
Key Findings
1
Extremely large sample sizes are crucial for gene-behavior research due to the tiny effect sizes of individual variants.
2
Genome-wide association studies (GWAS) have stronger replication because they survey many variants genome-wide, consistent with the Fourth Law.
3
Proposed Fourth Law: typical human behavioral traits are influenced by very many genetic variants, each explaining a very small percentage of variance.
4
The Fourth Law organizes empirical patterns from molecular studies and informs design and interpretation of future gene-behavior research.
5
This polygenic architecture explains why candidate gene studies have failed to robustly replicate.
Research Object
Typical human behavioral traits
Research Subject
Polygenic architecture: association of very many genetic variants each accounting for a very small percentage of behavioral variability (implications for gene-discovery, replication, GWAS sample-size requirements)
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2015-08-01
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