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Pradhan, D. K.

Publications and source records attributed to Pradhan, D. K..

3 recordsLinked to original sources

Bamboozling Interactions: Interspecific associations within mixed-species bird flocks in bamboo in the Eastern Himalayas

O_LIBamboo, although widespread, is a globally understudied habitat, but supports significant biodiversity, including specialist bird species. Mixed-species bird flocks (flocks) are an important and regular feature of forest bird communities worldwide and have been well-studied. However, how and why flocks might differ between bamboo and non-bamboo habitats is unknown. C_LIO_LIWe studied flocks and their arthropod prey in rainforest and bamboo stands across two seasons in the Eastern Himalaya. Using network analysis, we compared interspecific associations within flocks, and asked if resource availability (arthropod abundance) drives flocking. C_LIO_LIBamboo and rainforest flocks were significantly different, with bamboo flocks being more cohesive, less modular and their species more interconnected. Further, bamboo flocks were more consistent in their composition across seasons whereas rainforest flocks partially disintegrated in spring, probably because of increased arthropod abundance. In bamboo, the loss of arthropods in an entire substrate and the increase in other substrates was potentially insufficient to cease flocking in spring. C_LIO_LIResource availability and the unique foraging behaviour of the bamboo specialists likely drive flocking in the Eastern Himalaya bamboo. Our study is among the few to describe bamboo flocks and we emphasise conserving bamboo stands to ensure persistence of this unique flock in the Eastern Himalaya. C_LI

ecology↗

Understanding inter-individual social networks in mixed-species bird flocks

Mixed-species flocks (MSFs) are an important form of social organisation in forest bird communities worldwide. MSFs provide participants with the benefits of reduced predation risk and/or enhanced foraging efficiency. Recent work has shown that participation in MSFs confers long-term survival benefits in the face of anthropogenic change. However, our understanding of MSFs mainly comes from studies that examine species-level networks, where each node is a unique species and the edges or connections between nodes are associations/interactions between species. While valuable, such approaches might not allow us to understand and investigate the mechanisms that drive MSF formation and structure because social interactions and their effects occur at the individual-level. Empirical studies on multi-species, individual-level MSF social networks have seldom been undertaken due to the various complexities and logistical challenges involved. In this study, we use mist-netting and colour-ringing followed by a standardised observation protocol to construct individual-level social networks in MSFs at 2000m ASL in Eaglenest Wildlife Sanctuary, Arunachal Pradesh, Eastern Himalaya, India. First, we found two separate flocktypes at our study site, comprising two distinct sets of understorey species. The mechanisms contributing to individual-level co-occurrences are likely to differ between these flocktypes, and with MSFs in the Neotropics. The Rusty-fronted Barwing (the nuclear species of one flocktype) shows spatially disjunct territories for each flock while the Yellow-throated Fulvetta (nuclear species of the other flocktype) shows large spatial overlap in its MSF networks, which is likely driven by non-individual-specific benefits such as predation risk dilution. Further, the addition of associating individuals to the social networks has opposite impacts on the two networks. The addition of Coral-billed Scimitar Babblers to the barwing networks greatly reduces network modularity because the associating individuals bridge two modules of barwings (both spatially and in the social network). On the contrary, territorial Rufous-capped Babblers and Grey-cheeked Warblers increase the modularity of the spatially overlapping fulvetta network. Our study provides novel insights into flock formation mechanisms in the Eastern Himalaya, likely applicable to other multi-species flock systems in the Old World.

ecology↗

The effect of selective logging on microclimates, arthropod abundance and the foraging behaviour of Eastern Himalayan birds

1. Selective logging--the practice of removing a subset of commercially important trees from a forest--is a globally pervasive form of forest degradation. Selective logging alters both the structure and function of forests and the composition of ecological communities. 2. Tropical insectivorous birds are highly vulnerable to microhabitat alterations in logged forest. Such altered microhabitats might affect the foraging of forest birds by altering (a) resource availability, and (b) foraging behaviour. 3. We investigated the effect of selective logging on microclimates, prey availability, foraging behaviour and the foraging success of eastern Himalayan birds in the breeding season. 4. Selective logging alters temperature-humidity microclimates and the composition of arthropod communities, both of which are likely to then collectively alter foraging behaviour by birds. We show that birds spent a lower proportion of their time foraging in primary compared with logged forest. Further, selective logging interacts with species traits such as body mass, preferred foraging stratum (understorey, midstorey or canopy) and foraging manoeuvre to influence foraging success. Gleaners generally foraged more successfully in primary forest and salliers in logged forest, although these patterns were modified by body mass and foraging stratum. 5. Synthesis and applications: Our study shows how altered microclimates in anthropogenically modified habitats can influence resource availability and have downstream impacts on the behaviour of species at higher trophic levels.

ecology↗