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Klaftenberger, T.

Publications and source records attributed to Klaftenberger, T..

2 recordsLinked to original sources

Beyond Gloger's rule: multiple biogeographic drivers of dark and red colouration in ants

Colour is a key trait involved in camouflage, physiological protection and thermoregulation. Yet environmental drivers of colour variation remain poorly understood at large spatial scales. Glogers rule predicts animals should be darker in warmer and wetter climates, and in a complex version, redder in warmer and drier climates. Here, we present the first test of the complex Glogers rule in insects using 34,331 images of 10,400 ant species across 586 assemblages worldwide. We decompose species mean colouration into two orthogonal axes, linked to darkness and redness. Assemblages were darker under high UV-B radiation and low dry-season precipitation, consistent with UV protection and desiccation resistance via melanisation. Canopy height increased both axes, suggesting camouflage. In contrast, higher mean temperature of the warmest quarter increased redness, as predicted by the complex Glogers rule. Ant colouration cannot be explained by one macroecological rule but reflects environmental drivers acting independently on darkness and redness.

ecology↗

Wildlife trade drives animal-to-human pathogen transmission over 40 years

Wildlife trade affects a quarter of terrestrial vertebrates(1) and creates novel opportunities for cross-species pathogen transmission(2-4). Yet, its precise role in shaping human-wildlife pathogen exchanges remains unclear. Analysing 40 years of global wildlife trade data, we show that traded mammals are twice as likely to share pathogens with humans than non-traded species. Moreover, time spent in trade strongly predicts the number of zoonotic pathogens that wildlife species host: on average, a species shares an additional pathogen with humans for every 9 years of presence in trade. This work highlights the importance of the wildlife trade in driving animal-to-human pathogen transmission, offering key insights into pathogen biogeography in the Anthropocene and the prevention of future pandemics.

ecology↗