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Integration and modularity can have a profound impact on the function and evolution of environmentally responsive traits, especially when they result in discrete, alternative forms—that is, developmental polyphenism. An unresolved issue for understanding this impact is the degree to which the genetic architectures of the individual components of a plastic trait permit independent versus coordinated evolution. The association of trait variation with genomic variation can provide a test of whether the same loci influence different components of the same integrated phenotype. An example of a coordinated, plastic trait is in the shark-tooth nematode Pristionchus pacificus, which develops into either a bacterial-feeding or a predatory adult morph, depending on its perception of local food availability. Moreover, this polyphenism, when measured as morph induction in response to a common set of cues, differs across natural isolates of the species. By creating recombinant inbred lines (RILs) from natural isolates that have diverged in their morph-induction bias, followed by quantitative trait locus analysis, we tested whether and the extent to which component traits of this resource polyphenism are linked. We found that RILs with more frequent induction of the predatory morph also produced Eu individuals that were more effective predators. We also found that these two traits are associated with the same major-effect locus, suggesting that their causal genes are physically linked, if not the same, and are therefore likely to experience coordinated selection. In contrast, we found that morphological variation was not linked to these two traits and that such variation within each morph was even independent of variation in the other. Our findings show that the same coordinated plastic trait exhibits a blend of genetic correlation and independence, whose balance shapes the trait’s evolutionary potential.more » « lessFree, publicly-accessible full text available February 5, 2027
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Free, publicly-accessible full text available January 22, 2027
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Hispanic and Latinx individuals represent one of the largest and fastest growing ethnic groups in the United States. Yet research has not investigated whether young children hold essentialist beliefs about this prevalent social category. The present study addressed this issue by examining whether children used this ethnic category to make inductive inferences about novel individuals, one dimension of essentialism. A total of 108 children, 5 to 7 years of age (54 female; 56 Hispanic, 46 non‐Hispanic), completed a forced‐choice inference task. Children did not expect members of the same ethnic group to share properties, and this did not vary with their own ethnic group membership. This suggests that in the US, the belief that ethnicity is causally informative undergoes a protracted developmental trajectory, as has been observed for essentialist beliefs about race.more » « less
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The COVID-19 pandemic and ensuing lockdowns led to sweeping changes in the everyday lives of children and families, including school closures, remote work and learning, and social distancing. To date no study has examined whether these profound changes in young children’s day to day social interactions impacted the development of social cognition skills in early childhood. To address this question, we compared the performance of two cohorts of 3.5- to 5.5-year-old children tested before and after the COVID-19 lockdowns on several measures of false-belief understanding, a critical social cognition skill that undergoes important developments in this age range. Controlling for age and language skills, children tested after the pandemic demonstrated significantly worse false-belief understanding than those tested before the pandemic, and this difference was larger for children from lower socioeconomic status (SES) backgrounds. These results suggest that the pandemic negatively impacted the development of social cognition skills in early childhood, especially for lower SES children.more » « less
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Phenotypic plasticity often requires the coordinated response of multiple traits observed individually as morphological, physiological or behavioural. The integration, and hence functionality, of this response may be influenced by whether and how these component traits share a genetic basis. In the case of polyphenism, or discrete plasticity, at least part of the environmental response is categorical, offering a simple readout for determining whether and to what degree individual components of a plastic response can be decoupled. Here, we use the nematodePristionchus pacificus, which has a resource polyphenism allowing it to be a facultative predator of other nematodes, to understand the genetic integration of polyphenism. The behavioural and morphological consequences of perturbations to the polyphenism’s genetic regulatory network show that both predatory activity and ability are strongly influenced by morphology, different axes of morphological variation are associated with different aspects of predatory behaviour, and rearing environment can decouple predatory morphology from behaviour. Further, we found that interactions between some polyphenism-modifying genes synergistically affect predatory behaviour. Our results show that the component traits of an integrated polyphenic response can be decoupled and, in principle, selected upon individually, and they suggest that multiple routes to functionally comparable phenotypes are possible.more » « less
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