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Biology subjects

Cavill, E. L.

Publications and source records attributed to Cavill, E. L..

3 recordsLinked to original sources

A genomic exploration of the possible de-extirpation of the Zanzibar leopard

The recently extirpated Zanzibar leopard was the only known African leopard (Panthera pardus spp.) population restricted exclusively to a major island habitat. Although its demise was driven through habitat change and conflict with humans, given its role as a keystone species for the Zanzibar Archipelago, its potential reintroduction might offer a means for helping preserve the natural biodiversity of its former habitat. Whether this is feasible, however, would be contingent on both whether closely related source populations can be identified on mainland Africa, and whether the Zanzibar form exhibited any special adaptations that might need to be considered when choosing such a source. In light of these questions, we genomically profiled two of the six known historic specimens, to explore whether they represent a realistic candidate for de-extirpation through reintroduction. Our analyses indicate that despite its geographic separation, the Zanzibar leopard shared a close genetic relationship with mainland East African individuals. Furthermore, although its uniqueness as an island population was emphasised by genomic signatures of high inbreeding and increased mutation load, the latter similar to the level of the critically endangered Amur leopard (P. p. orientalis), we find no evidence of positive selection unique to Zanzibar. We therefore conclude that should attempts to restore leopards to Zanzibar be planned, then mainland East African leopards would provide a suitable gene pool, whether using genetic engineering or conventional rewilding approaches.

evolutionary biology↗

Never judge a bird by its feathers: genetics unveils the true target of trafficking in morphologically similar Copsychus species

Trends in wildlife crime continue to rise and contribute to the ongoing decline of our planets biodiversity. We applied a genetic approach to ascertain the geographic origin of a suspected Seychelles Magpie-robin confiscated in Singapore during international transit, and to confirm illegal trade of this species. However, mitochondrial analyses revealed this individual to be a subspecies of Oriental Magpie-robin, endemic to the island of Borneo, and bearing similar morphology to the Seychelles species. We thus consider the implications of correct species identification on captive care and repatriation in cases of wildlife confiscation, and emphasise the value of using genetics in wildlife crime investigation.

genetics↗

Redefining rock doves, Columba livia, using historical whole genome sequences

The domestic pigeons exceptional phenotypic diversity was key in developing Darwins Theory of Evolution and establishing the concept of artificial selection in domestic species. However, unlike its domestic counterpart, its wild progenitor, the rock dove Columba livia, has received considerably less attention. Therefore, questions regarding their domestication, evolution, taxonomy, and conservation status remain unresolved. We generated whole-genome sequencing data from 65 historical rock dove samples representing all currently recognised subspecies and spanning the species original geographic distribution. Our dataset includes three specimens from Darwins collection and the type specimens of five different taxa. We characterised rock doves population structure, genomic diversity and gene-flow patterns. We show the West African subspecies C. l. gymnocyclus is basal to rock doves and domestic pigeons. Our results show gene-flow signals between the rock doves sister species C. rupestris and all rock doves except the West African populations. Our results led us to propose an evolutionary model for the rock dove considering the Pleistocene refugia theory. We propose that todays rock dove genetic diversity and introgression patterns derive from a history of allopatric cycles and dispersion waves during the Quaternary glacial and interglacial periods. To explore the rock dove domestication history, we combined our new dataset with available genomes from domestic pigeons. Our results point to at least one domestication event in the Levant region that gave rise to all domestic breeds analysed in this study. Finally, we propose a species-level taxonomic arrangement to reflect the evolutionary history of the West African rock dove populations.

evolutionary biology↗