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1.
Transl Psychiatry ; 7(7): e1182, 2017 07 25.
Article in English | MEDLINE | ID: mdl-28742079

ABSTRACT

Dyslexia is a specific impairment in learning to read and has strong heritability. An intronic deletion within the DCDC2 gene, with ~8% frequency in European populations, is increasingly used as a marker for dyslexia in neuroimaging and behavioral studies. At a mechanistic level, this deletion has been proposed to influence sensory processing capacity, and in particular sensitivity to visual coherent motion. Our re-assessment of the literature, however, did not reveal strong support for a role of this specific deletion in dyslexia. We also analyzed data from five distinct cohorts, enriched for individuals with dyslexia, and did not identify any signal indicative of associations for the DCDC2 deletion with reading-related measures, including in a combined sample analysis (N=526). We believe we conducted the first replication analysis for a proposed deletion effect on visual motion perception and found no association (N=445 siblings). We also report that the DCDC2 deletion has a frequency of 37.6% in a cohort representative of the general population recruited in Hong Kong (N=220). This figure, together with a lack of association between the deletion and reading abilities in this cohort, indicates the low likelihood of a direct deletion effect on reading skills. Therefore, on the basis of multiple strands of evidence, we conclude that the DCDC2 deletion is not a strong risk factor for dyslexia. Our analyses and literature re-evaluation are important for interpreting current developments within multidisciplinary studies of dyslexia and, more generally, contribute to current discussions about the importance of reproducibility in science.


Subject(s)
Dyslexia/genetics , Microtubule-Associated Proteins/genetics , Adolescent , Adult , Child , Female , Gene Deletion , Genetic Predisposition to Disease , Humans , Male , Motion Perception , Risk Factors , Young Adult
2.
Genes Brain Behav ; 14(4): 369-76, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25778778

ABSTRACT

Twin studies indicate that dyscalculia (or mathematical disability) is caused partly by a genetic component, which is yet to be understood at the molecular level. Recently, a coding variant (rs133885) in the myosin-18B gene was shown to be associated with mathematical abilities with a specific effect among children with dyslexia. This association represents one of the most significant genetic associations reported to date for mathematical abilities and the only one reaching genome-wide statistical significance. We conducted a replication study in different cohorts to assess the effect of rs133885 maths-related measures. The study was conducted primarily using the Avon Longitudinal Study of Parents and Children (ALSPAC), (N = 3819). We tested additional cohorts including the York Cohort, the Specific Language Impairment Consortium (SLIC) cohort and the Raine Cohort, and stratified them for a definition of dyslexia whenever possible. We did not observe any associations between rs133885 in myosin-18B and mathematical abilities among individuals with dyslexia or in the general population. Our results suggest that the myosin-18B variant is unlikely to be a main factor contributing to mathematical abilities.


Subject(s)
Dyscalculia/genetics , Myosins/genetics , Polymorphism, Single Nucleotide , Tumor Suppressor Proteins/genetics , Adolescent , Case-Control Studies , Child , Cohort Studies , Female , Humans , Male
3.
Genes Brain Behav ; 7(3): 365-72, 2008 Apr.
Article in English | MEDLINE | ID: mdl-17919296

ABSTRACT

Heritability estimates for specific language impairment (SLI) have been inconsistent. Four twin studies reported heritability of 0.5 or more, but a recent report from the Twins Early Development Study found negligible genetic influence in 4-year-olds. We considered whether the method of ascertainment influenced results and found substantially higher heritability if SLI was defined in terms of referral to speech and language pathology services than if defined by language test scores. Further analysis showed that presence of speech difficulties played a major role in determining whether a child had contact with services. Childhood language disorders that are identified by population screening are likely to have a different phenotype and different etiology from clinically referred cases. Genetic studies are more likely to find high heritability if they focus on cases who have speech difficulties and who have been referred for intervention.


Subject(s)
Language Disorders/diagnosis , Language Disorders/genetics , Speech Disorders/genetics , Aging , Child , Child, Preschool , Cognition , Diagnosis, Differential , Female , Humans , Longitudinal Studies , Male , Phenotype , Surveys and Questionnaires
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