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Gaur, A., Redder, A. J., Annapoorni, S., Satyarebala, B., & Shivaji, S. (2006). The origin of indian star tortoises (geochelone elegans) based on nuclear and mitochondrial dna analysis: a story of rescue and repatriation. Conservation Genetics, 7(2), 231–240. 
Added by: Admin (14 Aug 2008 20:31:52 UTC)
Resource type: Journal Article
BibTeX citation key: Gaur2006
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Categories: General
Keywords: Genetik = genetics, Geochelone, Geochelone elegans, Schildkröten = turtles + tortoises, Systematik = taxonomy, Testudinidae
Creators: Annapoorni, Gaur, Redder, Satyarebala, Shivaji
Collection: Conservation Genetics
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Abstract     
Abstract The Indian Star tortoise (Geochelone elegans) belongs to the family Testudinidae and is distributed in southwest India and Sri Lanka. In addition to facing loss of its natural habitat, the species is also illegally traded as food and as an exotic pet internationally. Here we report DNA-based analyses for identification and repatriation of these tortoises into their natural habitat. We have attempted to establish the geographical origin of these tortoises rescued from smugglers, by comparing the microsatellite and mitochondrial markers of rescued animals with animals of known provenance. Star tortoises exhibited strong genetic structure in India. The populations from western India were genetically distinct at microsatellite and mitochondrial loci from southern populations. The rescued individuals had similar multilocus genotypes and mitochondrial DNA haplotypes as the reference individuals from south India. However, the precise geographic origin of many of the rescued samples remains unresolved, because we could not assign them to southern populations and the Neighbor-Joining cluster analysis indicated that some of rescued tortoises formed distinct clusters. These data strongly suggest that the rescued group of tortoises is composed of a mix of individuals from differentiated source populations that are probably located in southern India and possibly Sri Lanka. Our study provides valuable information based on molecular markers for the assessment of genetic diversity in Indian Star tortoises.
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