Conserved and Unique Protein Expression Patterns Across Reproductive Stage Transitions in Social Hymenopteran Queens.
Creators
- 1. Department of Biochemistry and Molecular Biology, Michael Smith Laboratories, University of British Columbia, Vancouver, British Columbia, Canada.
- 2. University of British Columbia
- 3. Department of Applied Ecology, North Carolina State University, Raleigh, North Carolina, USA.
- 4. North Carolina State University
- 5. Department of Evolutionary Biology & Ecology, Université Libre de Bruxelles, Brussels, Belgium.
- 6. Université libre de Bruxelles
- 7. Department of Zoology, University of Mons, Mons, Belgium.
- 8. Department of Biological Sciences, University of Lethbridge, Lethbridge, Alberta, Canada.
Description
Hymenopteran queens are collectively highly fecund, often long-lived individuals that undergo dramatic physiological changes after they mate and establish a nest. However, the degree to which these changes are conserved among species with different life histories is not well-defined. We conducted a comparative proteomic study investigating differences between reproductive stages (virgin, mated and established queens) of Apis mellifera, Bombus impatiens, B. terrestris and Lasius niger. We analysed haemolymph for all species except L. niger, for which a whole-body analysis was performed due to the small size of these queens. We identified conserved upregulation of proteins involved in anatomical and system development as queens transition to establishing a nest in all species except B. terrestris. We also identified conserved patterns of vitellogenin, vitellogenin receptor and immune-responsive protein (IRP)30, all of which are proteins typically associated with oviposition. However, expression patterns of other immune proteins, heat-shock proteins (HSPs), detoxification enzymes and antioxidant enzymes were more dissimilar, with some species exhibiting similar trends and co-occurrence through reproductive stages, while others exhibited variable or opposite patterns. These conserved and unique profiles likely in part reflect similarities and differences in selective pressure on reproductive stages of each species and may indicate differing abilities to respond to emergent pathogens or environmental change.
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Financial Support
BC Knowledge Development Fund
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Fonds De La Recherche Scientifique - FNRS
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Canada Foundation for Innovation
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Results-Driven Agricultural Research
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Center for Blood Research
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UBC Life Sciences Institute
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Genome British Columbia
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L'Oreal-UNESCO
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Université Libre de Bruxelles
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