Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

DNA metabarcoding reveals that African leopard diet varies between habitats

Domaine:

environment and energy

Type de record:

dataset
Créateur:
RasNisLinFra
Éditeur:
WILEY
Hôte:
Abstract Understanding carnivores’ diet is key to understanding their adaptability in a rapidly changing world. However, studying diet of large carnivores is difficult due to their elusive nature. In this study, we performed DNA metabarcoding analyses of 82 putative leopard scats collected from two distinct, but connected, habitat types (rainforest and grassland) in the Udzungwa Mountains, Tanzania. Two mitochondrial markers were used to identify predator and prey. Metabarcoding confirmed that 60 of the collected scats (73%) originated from leopards, and nineteen mammalian prey DNA sequences were identified to species. Using prey size correction factors for leopards, and covariates on habitat type and prey ecology, we investigated whether differences in leopard dietary composition were detectable between habitats. We found that leopards in grassland consumed a larger mean prey size compared with leopards in rainforest. Small prey (<19 kg) constituted >70% of the biomass consumed by leopards in rainforest, while large prey (≥80 kg) were only eaten in grassland. Arboreal species constituted 50% of the biomass consumed by rainforest leopards. Our results highlight the importance of arboreal species in their diet. From a management perspective, we suggest continued protection of all prey species in the protected areas to prevent human–wildlife conflicts.

Visit

doi.org

Licenses

http://onlinelibrary.wiley.com/termsAndConditions#vor

Similaires

Leopard population density varies across habitats and management strategies ina mixed-use Tanzanian landscapeHow to do Diet DNA Metabarcoding from Animal Faecal SamplesDNA metabarcoding reveals the diet of the invasive fish Oreochromis mossambicus in mangroves of São Tomé Island (Gulf of Guinea).Fecal DNA metabarcoding reveals cryptic niche differentiation structuring diverse large-herbivore assemblages in African savannas"The Little Leopard that Became a Big Leopard"DNA metabarcoding illuminates the contribution of small and very small prey taxa to the diet of lions

Leopard population density varies across habitats and management strategies ina mixed-use Tanzanian landscape

With large carnivores undergoing widespread range contractions across Africa, effective monitoring a

How to do Diet DNA Metabarcoding from Animal Faecal Samples

How to do Diet DNA Metabarcoding from Animal Faecal Samples

Description

DNA metabarcoding reveals the diet of the invasive fish Oreochromis mossambicus in mangroves of São Tomé Island (Gulf of Guinea).

Abstract Invasive species can trigger profound effects on recipient ecosystems, namely thr

Fecal DNA metabarcoding reveals cryptic niche differentiation structuring diverse large-herbivore assemblages in African savannas

International audience

"The Little Leopard that Became a Big Leopard"

The Little Leopard that Became a Big Leopard (rendered as bé gɔ̧ nɛ kifa gásá gɔ̧ in modern Gbaya

DNA metabarcoding illuminates the contribution of small and very small prey taxa to the diet of lions

Knowledge of food web interactions is essential for understanding the role of carnivores in an ecos