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January 27, 2009Proceedings of the National Academy of Sciences249 citationsOpen Access

Model of genetic variation in human social networks

JFJames H. FowlerUniversity of California, San DiegoCDChristopher T. DawesUniversity of North Carolina at Chapel HillNCNicholas A. ChristakisBoston University

Key Points

  • Determine whether egocentric human social network attributes are heritable and construct a network model capable of explaining observed genetic variation.
  • Assessed the heritability of egocentric network attributes, focusing on in-degree, transitivity, and centrality.
  • Developed a 'mirror network' method to test whether extant network formation models can account for empirical genetic variation.
  • Engineered and simulated a novel 'Attract and Introduce' network model incorporating two dimensions of individual heterogeneity.
  • Confirmed that egocentric social network attributes—specifically in-degree, transitivity, and centrality—are significantly heritable in humans.
  • Found that existing network models fail to replicate the observed patterns of genetic variation in human social structures.
  • Demonstrated that the 'Attract and Introduce' model successfully generates significant heritability alongside key empirical structural features of real human networks.

Abstract

Social networks exhibit strikingly systematic patterns across a wide range of human contexts. Although genetic variation accounts for a significant portion of the variation in many complex social behaviors, the heritability of egocentric social network attributes is unknown. Here, we show that 3 of these attributes (in-degree, transitivity, and centrality) are heritable. We then develop a "mirror network" method to test extant network models and show that none account for observed genetic variation in human social networks. We propose an alternative "Attract and Introduce" model with two simple forms of heterogeneity that generates significant heritability and other important network features. We show that the model is well suited to real social networks in humans. These results suggest that natural selection may have played a role in the evolution of social networks. They also suggest that modeling intrinsic variation in network attributes may be important for understanding the way genes affect human behaviors and the way these behaviors spread from person to person.

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Cite This Study

Fowler et al. (2009) studied this question.

synapsesocial.com/papers/69dec39b5e217d93a55585fdhttps://doi.org/10.1073/pnas.0806746106
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