Differential impacts of climate change on specialist butterflies and their host plants

It is increasingly acknowledged that shifts in climate may lead to mismatches in the distribution of interacting species. However, the influence of biotic interactions on the distribution of insect species in tropical biomes, and the potential for climate change to disrupt these interactions, remain largely unexplored. We investigated the impacts of climate change on the distribution of six monophagous butterfly species endemic to South America’s Atlantic Forest, one of the most species-rich Global Biodiversity Hotspots. We compiled occurrence data from museum specimens and online sources to predict the distribution of the butterflies and their respective host plants using an ensemble modelling technique. We project that five of the six butterfly species and all host plant species will experience range contractions under a pessimistic climate scenario, with range losses of up to 79% for one butterfly ( A. chalciope ). Among areas projected to be climatically suitable for both butterflies and their host plants in the future, only around half are formally protected. Additionally, land-use constraints are substantial: ~25–80% of climatically suitable areas for the butterflies and their hosts consist of converted landscapes likely unsuitable for the species. Our results show that accounting for biotic interactions and land use can substantially reduce climate-based estimates of species distributions. If these findings extend to other specialised species interactions that have not yet been surveyed, they indicate that specialist species may be at greater risk from climate change than previously thought. Our study highlights the importance of incorporating biotic interactions and habitat suitability in biogeographical, ecological and conservation research.

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Publication Details

Journal
Global Ecology and Conservation
Published
2026-09-01
DOI
https://doi.org/10.1016/j.gecco.2026.e04400
Primary Topic
Lepidoptera: Biology and Taxonomy
Type
article
Field-Weighted Citation Impact
0.00

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article

Differential impacts of climate change on specialist butterflies and their host plants

Alexandre Antonelli, Linde N. Wieringa, André V L Freitas, Harith Farooq
Global Ecology and Conservation
Lepidoptera: Biology and Taxonomy
article

Differential impacts of climate change on specialist butterflies and their host plants

Alexandre Antonelli, Linde N. Wieringa, André V L Freitas, Harith Farooq
article en

Abstract

It is increasingly acknowledged that shifts in climate may lead to mismatches in the distribution of interacting species. However, the influence of biotic interactions on the distribution of insect species in tropical biomes, and the potential for climate change to disrupt these interactions, remain largely unexplored. We investigated the impacts of climate change on the distribution of six monophagous butterfly species endemic to South America’s Atlantic Forest, one of the most species-rich Global Biodiversity Hotspots. We compiled occurrence data from museum specimens and online sources to predict the distribution of the butterflies and their respective host plants using an ensemble modelling technique. We project that five of the six butterfly species and all host plant species will experience range contractions under a pessimistic climate scenario, with range losses of up to 79% for one butterfly ( A. chalciope ). Among areas projected to be climatically suitable for both butterflies and their host plants in the future, only around half are formally protected. Additionally, land-use constraints are substantial: ~25–80% of climatically suitable areas for the butterflies and their hosts consist of converted landscapes likely unsuitable for the species. Our results show that accounting for biotic interactions and land use can substantially reduce climate-based estimates of species distributions. If these findings extend to other specialised species interactions that have not yet been surveyed, they indicate that specialist species may be at greater risk from climate change than previously thought. Our study highlights the importance of incorporating biotic interactions and habitat suitability in biogeographical, ecological and conservation research.

Global Ecology and Conservation
Universidade Estadual de Campinas (UNICAMP) (BR), Royal Botanic Gardens, Kew (GB), Lúrio University (MZ), University of Oxford (GB), Bulgarian Biodiversity Foundation (BG), Ludwig-Maximilians-Universität München (DE), University of Gothenburg (SE)
Stiftelsen för Miljöstrategisk Forskning, Fundação de Amparo à Pesquisa do Estado de São Paulo, Conselho Nacional de Desenvolvimento Científico e Tecnológico, Vetenskapsrådet
Climate action
Openalex Percentile: Top 11%
Lepidoptera: Biology and Taxonomy
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