The new genetics of intelligence
Новая генетика интеллекта
2018-01-08
SCID: 54.1/5mm9zdb3
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behavioural geneticsgenome-wide association studiesgenome-wide polygenic scoresheritability of intelligenceintelligence genetics
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Abstract (AI)
Recent genome-wide association studies have catapulted the search for genes underlying human intelligence into a new era. Genome-wide polygenic scores promise to transform research on individual differences in intelligence, but not without societal and ethical implications, as the authors discuss in this Review. Intelligence — the ability to learn, reason and solve problems — is at the forefront of behavioural genetic research. Intelligence is highly heritable and predicts important educational, occupational and health outcomes better than any other trait. Recent genome-wide association studies have successfully identified inherited genome sequence differences that account for 20% of the 50% heritability of intelligence. These findings open new avenues for research into the causes and consequences of intelligence using genome-wide polygenic scores that aggregate the effects of thousands of genetic variants.
Key Findings
1
Applying polygenic scores to intelligence research raises important societal and ethical implications.
2
Genome-wide polygenic scores aggregate thousands of genetic variants and may enable new research on the causes and consequences of intelligence.
3
Intelligence is highly heritable and predicts educational, occupational, and health outcomes better than any other trait.
4
Recent genome-wide association studies have identified inherited genetic differences explaining 20% of intelligence’s estimated 50% heritability.
Research Object
human intelligence and its genetic basis
Research Subject
genetic variants and genome-wide polygenic scores underlying individual differences in intelligence, including their research, predictive potential, and societal and ethical implications
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2018-01-08
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