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Cronkite, A.

Publications and source records attributed to Cronkite, A..

2 recordsLinked to original sources

Housing laboratory mice in a natural environment uncovers genetic and environmental contributions to immune variation.

The relative contributions of genetic and environmental factors to variation in immune responses are still poorly understood. Here, we performed a deep phenotypic analysis of immunological parameters of laboratory mice released into an outdoor enclosure, carrying susceptibility genes (Nod2 and Atg16l1) implicated in the development of inflammatory bowel diseases. Variations of immune cell populations were largely driven by environment, whereas cytokine production in response to stimulation was affected more by genetic mutations. Multi-omic models identified transcriptional signatures associated with differences in T cell populations. Subnetworks associated with responses against Clostridium perfringens, Candida albicans and Bacteroides vulgatus were also coupled with rewilding. Hence, exposing laboratory mice carrying different genetic mutations to a natural environment uncovered important contributors to immune variation. One sentence summaryNatural environment exposure in laboratory mice primarily promotes variation in population frequencies of immune cells, whereas cytokine responses to stimulation are affected more by genetic susceptibility to inflammatory bowel disease.

immunology

Altered immunity of laboratory mice in the natural environment is associated with fungal colonization

The immune systems of free-living mammals such as humans and wild mice display a heightened degree of activation compared with laboratory mice maintained under artificial conditions. Here, we demonstrate that releasing inbred laboratory mice into an outdoor enclosure to mimic life in a natural environment alters the state of immunity. In addition to enhancing the differentiation of T cell populations previously associated with pathogen exposure, we found that outdoor release of mice led to an increase in circulating granulocytes. However, rewilded mice were not infected by pathogens previously implicated in immune activation. Rather, changes to the immune system were associated with an altered composition of the microbiota, and fungi isolated from rewilded mice were sufficient to increase circulating granulocytes. These findings establish an experimental procedure to investigate the impact of the natural environment on immune development and identify a role for sustained fungal exposure in determining granulocyte numbers.

immunology