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Polygenic risk scores implicate genetic pathways involved in neurodevelopmental disorders in hearing thresholds and hearing asymmetry in children

Schmitz, J.; Abbondanza, F.; Paracchini, S.

2020-07-22 genetics
10.1101/2020.07.22.215376 bioRxiv
Show abstract

An efficient auditory system contributes to cognitive and psychosocial development. A right ear advantage in hearing thresholds (HT) has been described in adults and atypical patterns of left/right hearing threshold asymmetry (HTA) have been described for psychiatric and neurodevelopmental conditions. Previous genome-wide association studies (GWAS) on HT have mainly been conducted in elderly participants whose hearing is more likely to be affected by external environmental factors. We analyzed HT and HTA in a children population cohort (ALSPAC, n = 6,743). Better hearing was associated with better cognitive performance and higher socioeconomic status (SES). At the group level, HTA suggested a left ear advantage (mean = -0.28 dB) that was mainly driven by females. SNP heritability for HT and HTA was 0.17 and 0.01, respectively (n = 5,344). Genetic correlation analysis confirmed associations between HT, reading ability, listening comprehension, and GCSE scores. GWAS for HT did not yield significant hits but polygenic risk score (PRS) analysis showed significant associations of higher educational attainment (EA, {beta} = -1564.72, p = .008) and risk for schizophrenia ({beta} = -241.14, p = .004) with lower HT, i.e. better hearing. In summary, we report new data supporting associations between hearing measures and cognitive abilities at the behavioral level. Genetic analysis suggests shared biological pathways between cognitive and sensory systems and provides evidence for a positive outcome of genetic risk for schizophrenia.

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