Personal and transgenerational cues are nonadditive at the phenotypic and molecular level
Source: NCBI BioProject (ID PRJNA451491)

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Project name: Personal and transgenerational cues are nonadditive at the phenotypic and molecular level
Description: Organisms can gain information about their environment from their ancestors, their parents, or their own personal experience. “Cue integration” models often start with the simplifying assumption that information from different sources is additive. Here, we test key assumptions and predictions of cue integration theory at both the phenotypic and molecular level in threespined sticklebacks (Gasterosteus aculeatus). We show that regardless of whether cues about predation risk were provided by their father or acquired through personal experience, sticklebacks produced the same set of predator-adapted phenotypes. Moreover, there were nonadditive effects of personal and paternal experience: animals that received cues from both sources resembled animals that received cues from a single source. A similar pattern was detected at the molecular level: there was a core set of genes that were differentially expressed in the brains of offspring regardless of whether risk was experienced by their father, themselves or both. These results provide strong support for cue integration theory because they show that cues provided by parents and personal experience are comparable at both the phenotypic and molecular level, and draw attention to the importance of nonadditive responses to multiple cues.Overall design: The effects of personal and paternal experience with risk on offspring phenotypes were compared in a 2x2 factorial design. Fathers either were (N = 5) or were not (N = 5) exposed to predation risk while they were caring for their offspring (paternal experience: unexposed versus exposed). Within each family, siblings either were or were not personally exposed to predation risk as juveniles (personal experience: unexposed versus exposed).
Data type: Transcriptome or Gene expression
Sample scope: Multiisolate
Relevance: ModelOrganism
Organization: Alison Bell Lab, Animal Biology, University of Illinois at Urbana Champaign
Literatures
  1. PMID: 29988159
Last updated: 2018-04-23
Statistics: 29 samples; 29 experiments; 29 runs