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April 19, 2026Journal of Biogeography0 citationsOpen Access

Elevational Range Changes of Tropical Forest Birds on the Small Caribbean Island of Montserrat

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FHFilibert HeimJDJames DaleyCFCalvin Fenton

Key Points

  • To examine the elevational range changes of tropical forest birds on Montserrat due to climate warming.
  • Analyzed point-count data from 2011 to 2024.
  • Utilized dynamic occupancy models to assess colonisation and extinction rates.
  • Examined the influence of elevation on bird occupancy.
  • Focused on a forest bird community with one endemic species.
  • Observed elevational range changes in 5 out of 12 species.
  • Four species shifted uphill, including the endemic Montserrat Oriole.
  • One species showed a contraction in range towards lower elevations.
  • Model selection uncertainty affected clarity on some species' responses.
  • Caution advised regarding the study's duration and its implications.

Abstract

ABSTRACT Aim Globally, species are changing their ranges poleward and uphill due to climate warming. This poses a particular risk to biodiversity endemic to islands, where dispersal limitations may hinder latitudinal movement across the sea and elevational range changes can result in a smaller area of potentially suitable habitat. Few studies have examined whether bird species on small tropical islands exhibit changes in elevational ranges. Here we study elevational range changes in a forest bird community that hosts two globally threatened species, of which one is endemic to the small Caribbean Island of Montserrat. Location Montserrat, Lesser Antilles, West Indies. Taxon Forest birds. Methods We analysed point‐count data collected between 2011 and 2024 with dynamic occupancy models which explain changes in occupancy over time by colonisation and extinction while accounting for imperfect detection. We assessed the influence of elevation on both colonisation and extinction to gather robust evidence of potential elevational range changes. Results We found evidence for range changes in five out of 12 species, with four species changing uphill, including the endemic Montserrat Oriole ( Icterus oberi ), and one species showing a range contraction towards lower elevations. However, model selection uncertainty limited our ability to infer the influence of elevation on occupancy dynamics in five species. We caution that the time span of our study may not have been long enough to detect range changes in all species. Main Conclusions Uphill range changes observed in this study may result from synergistic interactions of anthropogenic forest degradation at lower elevations, increasing temperatures due to global warming in the Caribbean, and other consequences of global change such as the impact of hurricanes on high elevation forest structure. Our study suggests that uphill range shifts may reduce the available habitat of a globally threatened bird species endemic to a small tropical island in the Caribbean.

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Cite This Study

Heim et al. (2026) studied this question.

synapsesocial.com/papers/69e471c5010ef96374d8dfa7https://doi.org/10.1111/jbi.70223
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