Sunday, June 13, 2010
Pygmy hog in Endangered land: Louse Talk
Wednesday, June 9, 2010
Annual Research Seminar 2008 (Wildlife Institute of India)

A critical issue in conservation biology is the establishment of a strong relationship between species richness and a surrogate index. Such a relationship could provide the basis for the establishment of cost effective and easy to monitor methods for measuring biodiversity, providing an alternative for the prioritization of sites for conservation. Both family and genus richness are tested in their ability to predict the number of spider (Araneae) species independently of sampling detection, spatial autocorrelation, area, geographical location and type of habitat. Data from two protected areas of TCA was used as a test case. Genus richness is considered a good surrogate of species richness, despite some caution being needed regarding the comparison of sites with considerably different sampling effort. Only genus alone is found to be reliable either for ranking sites according to taxa richness or for determining near-minimum sets of sites for conservation. The study recommends surrogacy at this higher taxonomic level as a promising approach for the prediction of spider species richness or evaluation and ranking of areas according to their conservation importance.
Annual Research Seminar 2007 (Wildlife Institute of India)

The habitat heterogeneity hypothesis states that the more complex the habitat, the higher the species diversity and structure. The present study analyses the effect of local habitat factors on regional spider richness and diversity. The objective is to untangle the relative importance of habitat structure and other environmental variables. Richness and diversity values of the spider species and family were modeled using multiple regression and a set of independent variables extracted from NMS ordination of vegetation, microclimate and disturbance variables. Vegetation structure, especially height variation in shrubs, plant species richness, tree and shrub densities were found to be important predictors for richness and diversity. The species and family composition is highly influenced by vegetation cover, litter cover and management intensity. Here I also examine the efficacy of spider assemblages as ecological indicators of habitat condition. Using correspondence analysis and weighted averaging, I identified potential indicator species (13 species out of 65 species analyzed) and showed gradients in response to reflect overall habitat condition.
Annual Research Seminar 2006 (Wildlife Institute of India)

This study deals with the comparison of spider diversity and composition in a complex landscape of the TCA characterized by alluvial floodplains of tall grassland interspersed with woodland, swamps, and riparian patches. High water table, annual flooding, and annual grassland fire maintain its dynamic complexity. Spiders were sampled from March 2005 to August 2006 by using pitfall traps and other semi-quantitative collection methods along transects. A total of 3666 adult spiders representing 22 families, 60 genera, and 160 species were recorded. Using the abundance-based estimator, Chao1, the predicted richness for the total area sampled is 173 ± 8.32 (SD) species. This indicates that the inventory was almost complete at the regional scale (92%). With similar proportions of captured species, rarefied richness value showed that species richness was highest in riparian swamp forest. Comparison of different sites revealed that species composition was much more similar within the same vegetation type than among different vegetation types. Assemblage composition differed most between riparian swamp forest and plantation. Family composition varied considerably in relation to the structural quality of vegetation. On a coarse scale, this study revealed the relative importance of diverse habitat types on diversity and composition of spider assemblages in TCA.
Annual Research Seminar 2005 (Wildlife Institute of India)
Spiders currently comprise 109 families, about 3,733 genera, and nearly 40,700 species. Strong evidence supports spider monophyly: cheliceral venom glands, male pedipalpi modified for sperm transfer, abdominal spinnerets and silk glands, and lack of the trochanter-femur depressor muscle. The study began with defining the systematic position of the spiders and reviewing the available taxonomic knowledge of the taxon. It also addresses the past studies in 


