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Kotze, D. J.

Publications and source records attributed to Kotze, D. J..

2 recordsLinked to original sources

Perceived urban microhabitat heterogeneity impacts carabid beetle communities

ContextThe habitat heterogeneity hypothesis predicts that increased environmental heterogeneity promotes biodiversity by providing more niches. However, few studies have examined whether human perceptions of heterogeneity align with the ecological responses of arthropods. ObjectivesWe investigated how perceived habitat heterogeneity translates into environmental variables. Then, we explored the effects of perceived habitat heterogeneity in remnant urban forests and parks on carabid beetle species richness, composition, and functional traits. MethodsWe examined carabid beetle (Coleoptera, Carabidae) communities across three habitat types differing in perceived microhabitat heterogeneity: heterogeneous urban forests, homogeneous urban forests, and urban parks in Helsinki, Finland. ResultsEnvironmental data confirmed distinct habitat characteristics: for most variables measured, heterogeneous forest sites were more variable compared to homogeneous forest sites. Contrary to expectations, species richness was higher in homogeneous forests and parks and lower in heterogeneous forests. Community composition differed among habitats and was influenced by canopy openness and dead wood. Heterogeneous forests harboured fewer macropterous and open-habitat species, while homogeneous forests had more brachypterous and generalist species, indicating differences in dispersal capacity and habitat preferences. Body size at the community and population levels, and mass at the population level were generally unaffected. ConclusionsThese results suggest that while habitat heterogeneity shapes community structure and traits, species richness does not always increase with heterogeneity, highlighting complex relationships between environmental variables and beetle communities. We underscore the importance of considering specific habitat features, such as dead wood and canopy cover, for urban biodiversity conservation.

ecology↗

Habitat specialisation and dispersal capacity drive rapid carabid beetle responses to urban forest fragmentation

The effects of habitat fragmentation on insects are well documented, yet most studies overlook extinction debt. We investigated carabid beetles in 25 remnant urban forests in Helsinki, Finland, spanning unfragmented, recently fragmented, and historically fragmented sites. Across 3162 individuals and 34 species, we analysed species richness, community composition, and traits including dispersal capacity, habitat specialisation, and body size both at the community and population levels. We found no extinction debt: species richness remained stable, but community composition shifted rapidly. Forest specialists declined non-linearly within three decades post-fragmentation before partially recovering, whereas open-habitat species showed the opposite pattern. Dispersal-limited species lost richness without compositional change, while highly-dispersive species maintained richness but altered community composition. Individual size, mass, and dispersal traits showed no consistent patterns. Our study demonstrates rapid, trait-mediated responses to fragmentation in short-lived beetles and highlights the importance of considering specialisation and dispersal in urban conservation planning.

ecology↗