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Journal Article

Parent and offspring genotypes influence gene expression in early life

Daniel J. Newhouse; Margarida Barcelo‐Serra; Elaina M. Tuttle; Rusty A. Gonser; Christopher N. Balakrishnan
Molecular Ecology · Vol. 28, Issue 18 · pp. 4166-4180 · 2019

Abstract

Parents can have profound effects on offspring fitness. Little, however, is known about the mechanisms through which parental genetic variation influences offspring physiology in natural systems. White‐throated sparrows ( Zonotrichia albicollis , WTSP) exist in two genetic morphs, tan and white, controlled by a large polymorphic supergene. Morphs mate disassortatively, resulting in two pair types: tan male × white female (T × W) pairs, which provide biparental care and white male × tan female (W × T) pairs, which provide female‐biased care. To investigate how parental composition impacts offspring, we performed RNA‐seq on whole blood of WTSP nestlings sampled from nests of both pair types. Parental pair type had a large effect on nestling gene expression, with 881 genes differentially expressed (DE) and seven correlated gene coexpression modules. The DE genes and modules expressed at higher levels in W × T nests with female‐biased parental care function in metabolism and stress‐related pathways resulting from the overrepresentation of proteolysis and stress‐response genes (e.g., SOD2, NR3C1). These results show that parental genotypes and/or associated behaviours influence nestling physiology, and highlight avenues of further research investigating the ultimate implications for the maintenance of this polymorphism. Nestlings also exhibited morph‐specific gene expression, with 92 differentially expressed genes, comprising immunity genes and genes encompassed by the supergene. Remarkably, we identified the same regulatory hub genes in these blood‐derived expression networks as were previously identified in adult WTSP brains (EPM2A, BPNT1, TAF5L). These hub genes were located within the supergene, highlighting the importance of this gene complex in structuring regulatory networks across diverse tissues.

Bibliographic Information

JournalMolecular Ecology
PublisherWiley
Publication Date2019-09-01
Publication Year2019
Volume28
Issue18
Pages4166-4180
Document TypeJournal Article
Print ISSN0962-1083
eISSN1365-294X
DOI10.1111/mec.15205
SubjectEcology & Organismal Biology

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/1365294X
Publisher PageOpen Publisher Page
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