A heavy burden: Metal exposure across the land-ocean continuum in an adaptable carnivore

Environ Pollut. 2023 Jun 15:327:121585. doi: 10.1016/j.envpol.2023.121585. Epub 2023 Apr 9.

Abstract

Urbanisation and associated anthropogenic activities release large quantities of toxic metals and metalloids into the environment, where they may bioaccumulate and threaten both wildlife and human health. In highly transformed landscapes, terrestrial carnivores may be at increased risk of exposure through biomagnification. We quantified metallic element and metalloid exposure in blood of caracals (Caracal caracal), an adaptable felid inhabiting the rapidly urbanising, coastal metropole of Cape Town, South Africa. Using redundancy analysis and mixed-effect models, we explored the influence of demography, landscape use, and diet on the concentration of 11 metals and metalloids. Although species-specific toxic thresholds are lacking, arsenic (As) and chromium (Cr) were present at potentially sublethal levels in several individuals. Increased use of human-transformed landscapes, particularly urban areas, roads, and vineyards, was significantly associated with increased exposure to aluminium (Al), cobalt (Co) and lead (Pb). Foraging closer to the coast and within aquatic food webs was associated with increased levels of mercury (Hg), selenium (Se) and arsenic, where regular predation on seabirds and waterbirds likely facilitates transfer of metals from aquatic to terrestrial food webs. Further, several elements were linked to lower haemoglobin levels (chromium, mercury, manganese, and zinc) and elevated levels of infection-fighting cells (mercury and selenium). Our results highlight the importance of anthropogenic activities as major environmental sources of metal contamination in terrestrial wildlife, including exposure across the land-ocean continuum. These findings contribute towards the growing evidence suggesting cities are particularly toxic areas for wildlife. Co-exposure to a suite of metal pollutants may threaten the long-term health and persistence of Cape Town's caracal population in unexpected ways, particularly when interacting with additional known pollutant and pathogen exposure. The caracal is a valuable sentinel for assessing metal exposure and can be used in pollution monitoring programmes to mitigate exposure and promote biodiversity conservation in human-dominated landscapes.

Keywords: Caracal caracal; Ecotoxicology; Metalloids; Metals; Sentinel species; Urban wildlife.

MeSH terms

  • Animals
  • Animals, Wild
  • Arsenic* / analysis
  • Chromium / analysis
  • Environmental Monitoring
  • Environmental Pollutants* / analysis
  • Humans
  • Mercury* / analysis
  • Metalloids* / analysis
  • Metals / analysis
  • Metals, Heavy* / analysis
  • Oceans and Seas
  • Selenium* / analysis
  • South Africa

Substances

  • Arsenic
  • Selenium
  • Metals
  • Mercury
  • Environmental Pollutants
  • Chromium
  • Metalloids
  • Metals, Heavy