Social immunization (SI) is a horizontal transfer of immunity that protects naive hosts against infection following exposure to infected nestmates. While mainly documented in eusocial insects, non-social species also share similar ecological features which favour the development of group-level immunity. Here, we investigate SI in by pairing naive females with a pathogen-challenged conspecific for 72 h before measuring a series of immune and fitness traits. We found no evidence for SI, as beetles who cohabited with a live pathogen-challenged conspecific were not better protected against bacterial challenge. However, exposure to a heat-killed-bacteria-challenged conspecific appeared to increase pathogen tolerance, which manifested in differential fitness investment. Our results together suggest that do respond to immune-related cues in the social environment, despite not showing a classic immunization response as predicted.
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http://dx.doi.org/10.1098/rsbl.2017.0709 | DOI Listing |
Biol Lett
February 2018
Department of Animal and Plant Sciences, University of Sheffield, Sheffield S10 2TN, UK
Social immunization (SI) is a horizontal transfer of immunity that protects naive hosts against infection following exposure to infected nestmates. While mainly documented in eusocial insects, non-social species also share similar ecological features which favour the development of group-level immunity. Here, we investigate SI in by pairing naive females with a pathogen-challenged conspecific for 72 h before measuring a series of immune and fitness traits.
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