Three's Company: Anthropogenic factors shape co-occurrence in a meso-carnivore community in a semi-arid shared landscape of western India
Ganguly, D.
Show abstract
O_LIHuman modification of natural landscapes accelerates species extinctions, promotes biological invasions, coerce range shifts, and restructure biotic communities. Mammalian meso-carnivores, considered sentinels of human-use landscapes, may experience increased mortality through road collisions and interactions with free-ranging dogs. Yet they may also benefit through resource subsidisation and decreased competition with larger carnivores. Our understanding of meso-carnivore community structure in modified ecosystems remain severely limited. C_LIO_LIWe examined a meso-carnivore community comprising golden jackal Canis aureus, jungle cat Felis chaus, Indian fox Vulpes bengalensis and desert cat Felis lybica ornata in a semi-arid landscape of Kachchh, western India. First, we mapped their potential habitats and the extent of fragmentation as a measure of vulnerability. We then assessed spatial, temporal and fine-scale spatio-temporal co-occurrence and responses to anthropogenic influences in the meso-carnivore community. We used a combination of camera-trapping and indirect sign surveys within an occupancy modelling framework to generate insights on species space-use and interactions. C_LIO_LIThe most fragmented habitat, open savanna, was positively associated with the occurrence of golden jackal, Indian fox and desert cat. Golden jackal spatially co-occurred with jungle cat and Indian fox with desert cat. Indian fox and desert cat showed spatial avoidance of golden jackal and jungle cat. Meso-carnivores did not show any spatial responses to free-ranging dogs, but showed varied responses to human infrastructure, i.e., settlements, roads and wind turbines, generally co-occurring less with each other in areas with high anthropogenic influence. C_LIO_LISpatially co-occurring meso-carnivores also overlapped substantially in the temporal dimension. Golden jackal and jungle cat showed high temporal overlap with free-ranging dogs, while Indian fox and desert cat appeared to avoid them. Temporally overlapping species generally showed fine-scale spatio-temporal aggregation. C_LIO_LIOur results reveal species-specific responses to anthropogenic factors in the meso-carnivore community, often increasing overlap across space and time in a resource restricted landscape. Future loss of native savanna habitats and an increasing human footprint can elicit competition driven loss of sensitive species leading to homogenisation of the meso-carnivore community. Our findings highlight the importance of considering species-specific responses as well the complex interplay amongst species to conserve multi-carnivore systems across shared, resource-constrained landscapes. C_LI
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Inferring wildlife poaching in Southeast Asia with multispecies dynamic site-occupancy models 94%
- Wolverine density distribution reflects past persecution and current management in Scandinavia 94%
- Bayesian species distribution models integrate presence-only and presence-absence data to predict deer distribution and relative abundance. 94%
Similar papers in this journal
- Terrain ruggedness and human activities influence the distribution of Grauer's gorillas (Gorilla beringei graueri) and eastern chimpanzees (Pan troglodytes schweinfurthii) in the Tayna Nature Reserve, Democratic Republic of Congo 96%
- Landscape functional connectivity for butterflies under different scenarios of land-use, land-cover, and climate change in Australia 93%
- The spatial distribution and temporal trends of livestock damages caused by wolves in Europe 93%
Similar papers in this journal
Similar papers in this journal
- Movement-integrated habitat selection reveals wolves balance ease of travel with human avoidance in a risk-reward trade-off 95%
- Evaluating diversionary feeding as a method to resolve conservation conflicts in a recovering ecosystem. 94%
- A globally influential area-condition metric is a poor proxy for invertebrate biodiversity 94%
Similar papers in this journal
- Identifying conservation priorities in a defaunated tropical biodiversity hotspot 97%
- Metrics for conservation success: using the 'Bird-Friendliness Index' to evaluate grassland and aridland bird community resilience across the Northern Great Plains ecosystem 95%
- Modelling the distribution of rare invertebrates by correcting class imbalance and spatial bias 95%
"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.