MegaFeed: Global database of megaherbivores' feeding preferences
Berzaghi, F.; Awasthi, B.
Show abstract
Terrestrial mammalian herbivores heavier than ~1000 kg, also known as megaherbivores, perform unique ecological functions due to their combination of heavy body mass, extended home ranges, abundant biomass consumption, and highly diverse diet. Megaherbivores can have substantial effects on ecosystem functioning, vegetation structure, and biogeochemical cycles. Elephants (family Elephantidae) and rhinoceros (family Rhinocerotidae) are two of the remaining megaherbivores that survived the late Pleistocene extinctions, but their populations have been globally declining in the last century. Feeding preferences are a key factor determining the influence of megaherbivores on ecosystems and plant communities; however, comprehensive and centralized data on megaherbivores food preferences are lacking. Here we present MegaFeed, an extensive dataset of megaherbivores feeding preferences across their distribution. This first version of MegaFeed here described contains more than 12,000 records of feeding preferences for the extant elephant species: Loxodonta africana (African savanna elephant), Loxodonta cyclotis (African Forest elephant), and Elephas maximus (Asian elephant). MegaFeed will contribute to a better understanding of the ecological functions of megaherbivores, evaluate the consequences of their decline, and guide rewilding and conservation initiatives such as habitat restoration and reduction of human-wildlife conflicts.
Matching journals
The top 12 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Methodological priorities in assessing wild edible plant knowledge and use: a case study among the Baka in Cameroon. 94%
- Association between land use, land cover, plant genera, and pollinator abundance in mixed-use landscapes 94%
- Optimal inventorying and monitoring of taxonomic, phylogenetic and functional diversity 94%
Similar papers in this journal
- Fine-scale coexistence between Mediterranean mesocarnivores is mediated by spatial, temporal and trophic resource partitioning 94%
- Body size and tree species composition determine variation in prey consumption in a forest-inhabiting generalist predator 93%
- Spatial patterns of phylogenetic diversity and endemism in the Western Ghats, India: a case study using ancient predatory arthropods 93%
Similar papers in this journal
- Different coexistence patterns between apex carnivores and mesocarnivores based on temporal, spatial, and dietary niche partitioning analysis in Qilian Mountain National Park, China 94%
- Windborne migration amplifies insect-mediated pollination services 92%
- Drivers of species knowledge across the Tree of Life 92%
Similar papers in this journal
- Omnivorous diets of sympatric duck species in a subtropical East Asia wetland unveiled by multi-marker DNA metabarcoding 95%
- Molecular dietary analyses of western capercaillies (Tetrao urogallus) reveal a diverse diet 95%
- eDNA metabarcoding reveals a core and secondary diets of the greater horseshoe bat with strong spatio-temporal plasticity 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.