Increased genetic diversity from colony merging in termites does not improve survival against a fungal pathogen

Author:

Aguero Carlos M.,Eyer Pierre-André,Vargo Edward L.

Abstract

AbstractIn some species of social insects the increased genetic diversity from having multiple breeders in a colony has been shown to improve pathogen resistance. Termite species typically found colonies from single mated pairs and therefore may lack the flexibility to buffer pathogen pressure with increased genetic diversity by varying the initial number of reproductives. However, they can later increase group diversity through colony merging, resulting in a genetically diverse, yet cohesive, workforce. In this study, we investigate whether the increased group diversity from colony fusion benefits social immunity in the subterranean termite Reticulitermes flavipes. We confirm previous findings that colonies of R. flavipes will readily merge and we show that workers will equally groom nestmates and non-nestmates after merging. Despite this, the survival of these merged colonies was not improved after exposure to a fungal pathogen, but instead leveled to that of the more susceptible or the more resistant colony. Our study brings little support to the hypothesis that colony fusion may improve immunity through an increase of genetic diversity in R. flavipes. Instead, we find that following exposure to a lethal pathogen, one colony is heavily influential to the entire group’s survival after merging.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference108 articles.

1. Wilson, E. O. Success and dominance in ecosystems: the case of the social insects in Excellence in Ecology Vol. 2 (ed. Kinne, O.) (Ecology Institute, 1990).

2. Hamilton, W. D. The genetic theory of social behavior. I and II. Journal of Theoretical Biology 7, 1–52 (1964).

3. Hamilton, W. Kinship, recognition, disease, and intelligence: constraints of social evolution in Animal Societies: Theories and Facts (eds. Ito, Y., Brown, J. L., & Kikkawa, J.) 81–100 (Japan Scientific Societies Press, 1987).

4. Cremer, S., Armitage, S. A. & Schmid-Hempel, P. Social immunity. Current Biology 17, R693–R702 (2007).

5. Cremer, S., Pull, C. D. & Fuerst, M. A. Social immunity: emergence and evolution of colony-level disease protection. Annual Review of Entomology 63, 105–123 (2018).

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