Association between polygenic risk scores for attention-deficit hyperactivity disorder and educational and cognitive
Evie Stergiakouli1,2, Joanna Martin3, Marian L Hamshere3
1Medical Research Centre (MRC) Integrative Epidemiology Unit (IEU) at the University of Bristol, Bristol, UK.
Insights
Genetic risks for attention-deficit hyperactivity disorder (ADHD) are linked to poorer educational outcomes and lower IQ in adolescents. These ADHD genetic risks also appear to affect maternal educational achievement and IQ, suggesting intergenerational impacts.
Area of Science:
- Behavioral Genetics
- Neurodevelopmental Disorders
- Human Genetics
Background:
- Attention-deficit hyperactivity disorder (ADHD) is associated with cognitive deficits and adverse educational outcomes.
- Genetic predispositions for ADHD may influence cognitive abilities and neurodevelopmental traits.
- Investigating the role of ADHD genetic risk in later cognitive function and educational achievement is warranted.
Purpose of the Study:
- To examine the association between ADHD polygenic risk scores and educational outcomes in adolescents.
- To assess the relationship between ADHD polygenic risk scores and IQ in adolescents and their mothers.
- To explore the impact of maternal ADHD genetic risk on educational attainment and cognitive ability.
Main Methods:
- Generated ADHD polygenic risk scores using a genome-wide association study of ADHD cases and controls.
- Utilized data from the Avon Longitudinal Study of Parents and Children (ALSPAC) cohort.
- Tested associations between ADHD polygenic risk scores and adolescent/maternal educational outcomes and IQ.
Main Results:
- Higher adolescent ADHD polygenic scores correlated with worse educational outcomes (Key Stage 3, GCSEs) and lower IQ.
- Adolescents with high ADHD polygenic scores showed reduced likelihood of Key Stage 5 examinations.
- Maternal ADHD polygenic scores were associated with lower maternal educational achievement and IQ.
Conclusions:
- ADHD genetic risk alleles impact functional outcomes across two generations (mother and child).
- Findings suggest that ADHD genetic predispositions may have intergenerational environmental influences.
- Genetic factors associated with ADHD play a role in cognitive and educational trajectories.
Background:
Children with a diagnosis of attention-deficit hyperactivity disorder ADHD) have lower cognitive ability and are at risk of adverse educational outcomes; ADHD genetic risks have been found to predict childhood cognitive ability and other neurodevelopmental traits in the general population; thus genetic risks might plausibly also contribute to cognitive ability later in development and to educational underachievement.
Methods:
We generated ADHD polygenic risk scores in the Avon Longitudinal Study of Parents and Children participants (maximum N : 6928 children and 7280 mothers) based on the results of a discovery clinical sample, a genome-wide association study of 727 cases with ADHD diagnosis and 5081 controls. We tested if ADHD polygenic risk scores were associated with educational outcomes and IQ in adolescents and their mothers.
Results:
High ADHD polygenic scores in adolescents were associated with worse educational outcomes at Key Stage 3 [national tests conducted at age 13-14 years; β = -1.4 (-2.0 to -0.8), P = 2.3 × 10 -6 ), at General Certificate of Secondary Education exams at age 15-16 years (β = -4.0 (-6.1 to -1.9), P = 1.8 × 10 -4 ], reduced odds of sitting Key Stage 5 examinations at age 16-18 years [odds ratio (OR) = 0.90 (0.88 to 0.97), P = 0.001] and lower IQ scores at age 15.5 [β = -0.8 (-1.2 to -0.4), P = 2.4 × 10 -4 ]. Moreover, maternal ADHD polygenic scores were associated with lower maternal educational achievement [β = -0.09 (-0.10 to -0.06), P = 0.005] and lower maternal IQ [β = -0.6 (-1.2 to -0.1), P = 0.03].
Conclusions:
ADHD diagnosis risk alleles impact on functional outcomes in two generations (mother and child) and likely have intergenerational environmental effects.
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