Area of research
Ecology · Public Health, Environmental and Occupational Health
Research interest
Research interests include Biology, Population, Disease, Genetics, Ecology, and Wildlife disease.
Life-history trade-offs and reproductive strategies in Tasmanian devils following disease-induced population decline
Response to “No evidence that transmissible cancer has shifted from emergence to endemism in Tasmanian devils”
Disease-driven top predator decline affects mesopredator population genomic structure
Adaptive potential in the face of a transmissible cancer in Tasmanian devils
Adaptive potential in the face of a transmissible cancer in Tasmanian devils
Effects of a transmissible cancer on life-history traits in Tasmanian devils
The tumour is in the detail: Local phylogenetic, population and epidemiological dynamics of a transmissible cancer in Tasmanian devils
Knowledge Gaps in the Biology, Ecology, and Management of the Pacific Crown-of-Thorns Sea Star<i>Acanthaster</i>sp. on Australia’s Great Barrier Reef
Optimizing noninvasive sampling of a zoonotic bat virus
Contemporary and historical selection in Tasmanian devils ( <i>Sarcophilus harrisii</i> ) support novel, polygenic response to transmissible cancer
Spatial variation in gene expression of Tasmanian devil facial tumors despite minimal host transcriptomic response to infection
Gene expression of Tasmanian devil facial tumors differs among host populations
A transmissible cancer shifts from emergence to endemism in Tasmanian devils
Darwin, the devil, and the management of transmissible cancers
Infectious disease and sickness behaviour: tumour progression affects interaction patterns and social network structure in wild Tasmanian devils
Spontaneous Tumor Regression in Tasmanian Devils Associated with <i>RASL11A</i> Activation
Disease swamps molecular signatures of genetic‐environmental associations to abiotic factors in Tasmanian devil ( <i>Sarcophilus harrisii</i> ) populations
Comparative landscape genetics reveals differential effects of environment on host and pathogen genetic structure in Tasmanian devils (<i>Sarcophilus harrisii</i>) and their transmissible tumour
Contemporary and historical selection in Tasmanian devils ( <i>Sarcophilus harrisii</i> ) support novel, polygenic response to transmissible cancer
Contemporary Demographic Reconstruction Methods Are Robust to Genome Assembly Quality: A Case Study in Tasmanian Devils
Conserving adaptive potential: lessons from Tasmanian devils and their transmissible cancer
Synchronous shedding of multiple bat paramyxoviruses coincides with peak periods of Hendra virus spillover
Individual and temporal variation in pathogen load predicts long‐term impacts of an emerging infectious disease
Tracing the rise of malignant cell lines: Distribution, epidemiology and evolutionary interactions of two transmissible cancers in Tasmanian devils
Rate of intersexual interactions affects injury likelihood in Tasmanian devil contact networks
Disease swamps molecular signatures of genetic-environmental associations to abiotic factors in Tasmanian devil ( <i>Sarcophilus harrisii</i> ) populations
Pathogen spillover during land conversion
Large‐effect loci affect survival in Tasmanian devils ( <i>Sarcophilus harrisii</i> ) infected with a transmissible cancer
The genomic basis of tumor regression in Tasmanian devils (Sarcophilus harrisii)
The devil is in the details: Genomics of transmissible cancers in Tasmanian devils