Literature DB >> 26678053

Genetic and Environmental Stability of Neuroticism From Adolescence to Adulthood.

Michel G Nivard1, Christel M Middeldorp1, Conor V Dolan1, Dorret I Boomsma1.   

Abstract

Longitudinal studies of neuroticism have shown that, on average, neuroticism scores decrease from adolescence to adulthood. The heritability of neuroticism is estimated between 0.30 and 0.60 and does not seem to vary greatly as a function of age. Shared environmental effects are rarely reported. Less is known about the role of genetic and environmental influences on the rank order stability of neuroticism in the period from adolescence to adulthood. We studied the stability of neuroticism in a cohort sequential (classical) twin design, from adolescence (age 14 years) to young adulthood (age 32 years). A genetic simplex model that was fitted to the longitudinal neuroticism data showed that the genetic stability of neuroticism was relatively high (genetic correlations between adjacent age bins >0.9), and increased from adolescence to adulthood. Environmental stability was appreciably lower (environmental correlations between adjacent age bins were between 0.3 and 0.6). This low stability was largely due to age-specific environmental variance, which was dominated by measurement error. This attenuated the age-to-age environmental correlations. We constructed an environmental covariance matrix corrected for this error, under the strong assumption that all age-specific environmental variance is error variance. The environmental (co)variance matrix corrected for attenuation revealed highly stable environmental influences on neuroticism (correlations between adjacent age bins were between 0.7 and 0.9). Our results indicate that both genetic and environmental influences have enduring effects on individual differences in neuroticism.

Entities:  

Keywords:  genetic correlation; personality; simplex models; stable environmental influences

Mesh:

Year:  2015        PMID: 26678053     DOI: 10.1017/thg.2015.80

Source DB:  PubMed          Journal:  Twin Res Hum Genet        ISSN: 1832-4274            Impact factor:   1.587


  5 in total

1.  Validating psychosocial pathways of risk between neuroticism and late life depression using a polygenic score approach.

Authors:  James J Li; Emily C Hilton; Qiongshi Lu; Jinkuk Hong; Jan S Greenberg; Marsha R Mailick
Journal:  J Abnorm Psychol       Date:  2019-03-04

2.  Are rumination and neuroticism genetically or environmentally distinct risk factors for psychopathology?

Authors:  Alta du Pont; Soo Hyun Rhee; Robin P Corley; John K Hewitt; Naomi P Friedman
Journal:  J Abnorm Psychol       Date:  2019-04-15

3.  An Extended Twin-Pedigree Study of Neuroticism in the Netherlands Twin Register.

Authors:  Dorret I Boomsma; Quinta Helmer; Harold A Nieuwboer; Jouke Jan Hottenga; Marleen H de Moor; Stéphanie M van den Berg; Gareth E Davies; Jacqueline M Vink; Maarten J Schouten; Conor V Dolan; Gonneke Willemsen; Meike Bartels; Toos C E M van Beijsterveldt; Lannie Ligthart; Eco J de Geus
Journal:  Behav Genet       Date:  2017-10-17       Impact factor: 2.805

4.  Genome-wide interaction study of a proxy for stress-sensitivity and its prediction of major depressive disorder.

Authors:  Aleix Arnau-Soler; Mark J Adams; Caroline Hayward; Pippa A Thomson
Journal:  PLoS One       Date:  2018-12-20       Impact factor: 3.240

5.  Familial Influences on Neuroticism and Education in the UK Biobank.

Authors:  R Cheesman; J Coleman; C Rayner; K L Purves; G Morneau-Vaillancourt; K Glanville; S W Choi; G Breen; T C Eley
Journal:  Behav Genet       Date:  2019-12-04       Impact factor: 2.805

  5 in total

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