PhD Theses (WII)

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    Assessment fof Bees in Agroforestry in Kangsabati South Forest Division, Purulia, West Bengal
    (Wildlife Institute of India, Dehradun, 2024) Das, Pallabi; Uniyal, V.P.; Chandra, Kailash
    Plant pollinator interactions have evolved through diffuse co-evolution, representations of relation between plants and animal species, where bees play a crucial role in preserving native plants' diversity and their reproduction success. This research intended to investigate the bee community composition in the agroforestry ecosystem, focusing on the impact of anthropogenic activities on pollinator diversity and ecosystem services of wild bees. This study made an effort to compile a list of bee species in both agriculture and forest ecosystems and their interaction with plant functional groups in the study site. The study was conducted in Kangsabati South Forest Division (KSFD) in Purulia, West Bengal. Extensive field research was conducted from February 2020 to April 2023. In the study, 25 species were successfully documented from three habitats: mixed forest, Sal forest, and agricultural landscape. The study found that the majority of residents in the study area were below the poverty level and an Indigenous community, relying on forest for firewood and non-timber forest product (NTFP). Agriculture practices were prevalent, with migrant labor being a significant trend. The agricultural practice was not considered eco-friendly, and excessive pesticides were used. The study also found that less than 50% of the respondents were familiar with bees. Subsistent and unskilled agriculture was practiced by less literate farmers, leading to land degradation and wasteland. The study highlights the need for eco-friendly agriculture practices and the degradation of natural habitats due to human activities. The relationship between bee species diversity and the stability of ecosystem service (E.S.) was investigated in this study. The study categorized bee communities into social and wild bees, and interpolated (IDW) diversity maps were generated for each survey site. The decline in population and diversity of bees' is observed gradually due to the influence of several anthropogenic activities, as demonstrated by several past studies. A low to slightly intermediate anthropogenic impact, mainly for agricultural landscapes, was noticed through the Human Footprint Index (HFI) map of KSFD.
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    Foraging ecology of Great-Slaty Woodpecker in and around Pawalgarh Conservation reserve in Western Himalaya
    (Wildlife Institute of India, Dehradun, 2024) Kaur, Sarabjeet; Gopi, G.V.; Uniyal, V.P.
    The Great Slaty Woodpecker (Mulleripicus pulverulentus, Temminck 1826) is an old-world woodpecker that prefers mature and old-growth dipterocarp forests (including Shorea robusta, Sal) across its known distribution range. The study reveals population demography, the social system and foraging behavior from logged forest and infer the distribution and home range of the Great Slaty Woodpecker, a cooperative breeding bird species, in and around the Pawalgarh Conservation Reserve in the western Himalaya of Uttarakhand state. This study presents the first census conducted for the Great Slaty Woodpecker, providing an ecological baseline for the species population estimation from its known distribution range. I inferred the home range size of each group based on 161 independent sightings of 11 family groups. These sightings represent behaviors such as foraging, nesting, roosting, vocalizations, and territory defense
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    Ecological assessment of geometridae Moths (lepidoptera: Heterocera) along alitutudinal gradient in Dhauladhar Mountain range in Kangra (North Western) and Lahaul and Spiti (Trans-Himalaya) regions of Himachal Pradesh
    (Wildlife Institute of India, Dehradun, 2024) Kumari, Shabnam; Uniyal, V.P.; Chandra, Kailash
    This study investigates the ecology (diversity and distribution patterns) of Geometridae moths across the altitudinal gradients of the Himalayan and Tran Himalayan regions in Himachal Pradesh. Geometridae moths are the famous insect herbivore surrogate taxa. They have been studied globally across different mountain systems. Through the documentation of species diversity, and the analysis of ecological patterns associated with these moths, this study aimed to contribute towards a better understanding of biodiversity dynamics in the Himalayan region. The research findings hold significant implications as a comprehensive baseline information on the species diversity and community dynamics of Geometridae moths in the region along with insights from the zoogeographic analysis. It also highlights future research needs and conservation concerns in light of the impacts of climate change and human-driven changes in land-use patterns in the region. objectives proposed for this study were i) to study the diversity and species richness patterns of Geometridae moths along the altitudinal gradient of the Dhauladhar Mountain Range (DMR) (within the administrative boundary of the district Kangra), ii) to identify the potential indicator species of Geometridae moths for different habitat types (altitude) and environmental variables affecting their distribution and iii) assessment of the high-altitude Geometrid moth assemblage of Trans Himalaya (Lahaul and Spiti) region of Himachal Pradesh. The study was undertaken across the altitudes of the DMR and Lahaul and Spiti Valleys (LSVs) representing the Himalayan and Trans Himalayan biogeographic zones of India in Himachal Pradesh respectively. Species with strong preferences for specific altitudinal zones and forest types have the potential to serve as indicator species for long-term monitoring of climate change, habitat quality, and land-use changes in these regions. These findings provide valuable insights into our understanding of the biodiversity patterns and community characteristics of Geometridae moths across altitudinal gradients and different forest types in the regions
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    Landscape-level assessment of select group of pollinators and factors influencing their diversity and distribution in Kullu Valley, Himachal Pradesh.
    (Wildlife Institute of India, Dehradun, 2024) Khan, Sushmita; Uniyal, V.P.; Ramesh, K.
    Change detection analysis using satellite data in a remote sensing platform is a crucial tool for understanding shifts in land use and land cover (LULC) over time, allowing for the identification of environmental and human-induced changes across various spatial and temporal scales. This method aids in assessing the impact of factors like urban expansion, agricultural practices, deforestation, and climate change on biodiversity and ecosystems. Climate change, particularly in vulnerable regions like the Himalayas, poses significant threats to ecosystem services and biodiversity. This study explores the impact of LULC and climate change on pollinator diversity and distributional patterns in the Kullu and Tirthan valleys of Himachal Pradesh. By compiling a comprehensive list of entomofauna pollinators across various orchards in different landscape configurations, the research aims to emphasize the need of conserving pollinator species in this ecologically sensitive region. Additionally, the study predicts potential shifts in pollinator distribution under future climate scenarios, providing valuable insights for conservation strategies. Through systematic analysis, the research contributes to a deeper understanding of pollinator communities and their interactions within the mountain horticultural belt of the Indian Himalayan Region. Ultimately, the findings aim to inform targeted conservation efforts to preserve the rich biodiversity of pollinators in this area. The research focuses on two major valleys within the Kullu district, each presenting contrasting landscapes and ecological contexts. The Kullu valley, a 76 kms long stretch situated along the Beas river, is characterized by diverse land use patterns and heightened anthropogenic activity, particularly in horticulture and tourism. In contrast, the Tirthan valley, nestled along the Tirthan river for a 45 kms long stretch, is designated as a conservation area with minimal disturbance and dense forest cover. The study meticulously investigated pollinator diversity dynamics in the Kullu and Tirthan valleys. The study conducted in the Kullu Valley aimed to analyze land use changes over time using Landsat satellite imagery from 2000 and 2022. High-quality images with minimal cloud cover were obtained for both years, ensuring accurate analysis With the aforesaid aim in focus, I have tried to address the following three objectives in my thesis: Objective 1: To assess the change in landscape composition of the study area over time.• Objective 2: To assess the effect of change in landscape configuration and horticultural practices on pollinator communities (diversity and abundance) and their services. • Objective 3: To model the distribution of major pollinators of economic importance belonging to different groups (Hymenoptera, Lepidoptera, Coleoptera, Diptera) in the study area.