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Genetic and Environmental interactions contribute to immune variation in rewilded mice

The relative and synergistic contributions of genetics and environment to inter-individual immune response variation remain unclear, despite its implications for understanding both evolutionary biology and medicine. Here, we quantify interactive effects of genotype and environment on immune traits b...

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Autores principales: Oyesola, Oyebola, Downie, Alexander E., Howard, Nina, Barre, Ramya S., Kiwanuka, Kasalina, Zaldana, Kimberly, Chen, Ying-Han, Menezes, Arthur, Lee, Soo Ching, Devlin, Joseph, Mondragón-Palomino, Octavio, Souza, Camila Oliveira Silva, Herrmann, Christin, Koralov, Sergei, Cadwell, Ken, Graham, Andrea L., Loke, P’ng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10055251/
https://www.ncbi.nlm.nih.gov/pubmed/36993484
http://dx.doi.org/10.1101/2023.03.17.533121
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author Oyesola, Oyebola
Downie, Alexander E.
Howard, Nina
Barre, Ramya S.
Kiwanuka, Kasalina
Zaldana, Kimberly
Chen, Ying-Han
Menezes, Arthur
Lee, Soo Ching
Devlin, Joseph
Mondragón-Palomino, Octavio
Souza, Camila Oliveira Silva
Herrmann, Christin
Koralov, Sergei
Cadwell, Ken
Graham, Andrea L.
Loke, P’ng
author_facet Oyesola, Oyebola
Downie, Alexander E.
Howard, Nina
Barre, Ramya S.
Kiwanuka, Kasalina
Zaldana, Kimberly
Chen, Ying-Han
Menezes, Arthur
Lee, Soo Ching
Devlin, Joseph
Mondragón-Palomino, Octavio
Souza, Camila Oliveira Silva
Herrmann, Christin
Koralov, Sergei
Cadwell, Ken
Graham, Andrea L.
Loke, P’ng
author_sort Oyesola, Oyebola
collection PubMed
description The relative and synergistic contributions of genetics and environment to inter-individual immune response variation remain unclear, despite its implications for understanding both evolutionary biology and medicine. Here, we quantify interactive effects of genotype and environment on immune traits by investigating three inbred mouse strains rewilded in an outdoor enclosure and infected with the parasite, Trichuris muris. Whereas cytokine response heterogeneity was primarily driven by genotype, cellular composition heterogeneity was shaped by interactions between genotype and environment. Notably, genetic differences under laboratory conditions can be decreased following rewilding, and variation in T cell markers are more driven by genetics, whereas B cell markers are driven more by environment. Importantly, variation in worm burden is associated with measures of immune variation, as well as genetics and environment. These results indicate that nonheritable influences interact with genetic factors to shape immune variation, with synergistic impacts on the deployment and evolution of defense mechanisms.
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spelling pubmed-100552512023-03-30 Genetic and Environmental interactions contribute to immune variation in rewilded mice Oyesola, Oyebola Downie, Alexander E. Howard, Nina Barre, Ramya S. Kiwanuka, Kasalina Zaldana, Kimberly Chen, Ying-Han Menezes, Arthur Lee, Soo Ching Devlin, Joseph Mondragón-Palomino, Octavio Souza, Camila Oliveira Silva Herrmann, Christin Koralov, Sergei Cadwell, Ken Graham, Andrea L. Loke, P’ng bioRxiv Article The relative and synergistic contributions of genetics and environment to inter-individual immune response variation remain unclear, despite its implications for understanding both evolutionary biology and medicine. Here, we quantify interactive effects of genotype and environment on immune traits by investigating three inbred mouse strains rewilded in an outdoor enclosure and infected with the parasite, Trichuris muris. Whereas cytokine response heterogeneity was primarily driven by genotype, cellular composition heterogeneity was shaped by interactions between genotype and environment. Notably, genetic differences under laboratory conditions can be decreased following rewilding, and variation in T cell markers are more driven by genetics, whereas B cell markers are driven more by environment. Importantly, variation in worm burden is associated with measures of immune variation, as well as genetics and environment. These results indicate that nonheritable influences interact with genetic factors to shape immune variation, with synergistic impacts on the deployment and evolution of defense mechanisms. Cold Spring Harbor Laboratory 2023-05-02 /pmc/articles/PMC10055251/ /pubmed/36993484 http://dx.doi.org/10.1101/2023.03.17.533121 Text en This article is a US Government work.
spellingShingle Article
Oyesola, Oyebola
Downie, Alexander E.
Howard, Nina
Barre, Ramya S.
Kiwanuka, Kasalina
Zaldana, Kimberly
Chen, Ying-Han
Menezes, Arthur
Lee, Soo Ching
Devlin, Joseph
Mondragón-Palomino, Octavio
Souza, Camila Oliveira Silva
Herrmann, Christin
Koralov, Sergei
Cadwell, Ken
Graham, Andrea L.
Loke, P’ng
Genetic and Environmental interactions contribute to immune variation in rewilded mice
title Genetic and Environmental interactions contribute to immune variation in rewilded mice
title_full Genetic and Environmental interactions contribute to immune variation in rewilded mice
title_fullStr Genetic and Environmental interactions contribute to immune variation in rewilded mice
title_full_unstemmed Genetic and Environmental interactions contribute to immune variation in rewilded mice
title_short Genetic and Environmental interactions contribute to immune variation in rewilded mice
title_sort genetic and environmental interactions contribute to immune variation in rewilded mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10055251/
https://www.ncbi.nlm.nih.gov/pubmed/36993484
http://dx.doi.org/10.1101/2023.03.17.533121
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