Abstract
Sensory system evolution plays a crucial role in shaping species' interactions with their environment, yet the extent to which olfactory system diversity reflects ecological and evolutionary pressures at a macroevolutionary scale remains unclear. Here, we investigate the evolution of the olfactory system across the Heliconiini butterfly tribe, an ecologically diverse but closely related group. Using a comparative approach, we examined variation in antennal lobe morphology and its constituent structures, the glomeruli and antennal lobe hub, as well as odourant receptor repertoires across species. We found that antennal lobe size variation is driven by independent shifts in glomerular and antennal lobe hub volumes, with species-specific differences occurring against a backdrop of broader phylogenetic stability. While no direct associations with ecological traits were observed, certain species showed large expansions in total glomerular volume and odourant receptor numbers, warranting further investigation into unmeasured ecological or behavioural factors. Additionally, comparisons between wild-caught and insectary-reared individuals revealed a surprising pattern of developmental plasticity, with antennal lobe hub volumes increasing and glomeruli volumes decreasing in captivity, highlighting the influence of environmental conditions on neural development. These findings suggest that olfactory evolution in Heliconiini is shaped by both evolutionary divergence and developmental plasticity, emphasizing the need to integrate phylogenetic, ecological, and developmental perspectives to fully understand sensory system adaptation.
| Original language | English |
|---|---|
| Article number | voaf114 |
| Pages (from-to) | 39-53 |
| Number of pages | 15 |
| Journal | Journal of Evolutionary Biology |
| Volume | 39 |
| Issue number | 1 |
| Early online date | 25 Sept 2025 |
| DOIs | |
| Publication status | Published - 1 Jan 2026 |
Data Availability Statement
The underlying data, R-scripts and raw digital images supporting the findings of this study are available on the Dryadrepository. DOI: 10.5061/dryad.7pvmcvf6h.
Acknowledgements
We thank the environmental ministries of Costa Rica, Panama, French Guiana, Ecuador, and Peru for permission to collect and export the sample in previous studies. We are grateful to the Wolfson Bioimaging Centre, University of Bristol, and the Center for Advanced Light Microscopy at the University of Munich Biocenter for imaging assistance. The authors also acknowledge the use of AI [ChatGPT, GPT 3.5]in proofreading and grammatical corrections of text in this manuscript. The final version of the manuscript was reviewed, edited, and approved by all the authors before submission.
Funding
This work was supported by National Envrionment Research Council Independent Research Fellowship NE/N014936/1 (S.H.M.) and European Research Council Starter Grants 758508 (S.H.M.) and 851040 (R.M.M.).
| Funders | Funder number |
|---|---|
| Independent Research Fellowship | |
| National Envrionment Research Council | NE/N014936/1 |
| European Research Council | 851040, 758508 |
| University of Bristol | GPT 3.5 |
Keywords
- olfactory system evolution
- comparative neuroanatomy
- Heliconiini
- developmental plasticity
- antennal lobe morphology
ASJC Scopus subject areas
- Ecology, Evolution, Behavior and Systematics
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