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Watson, A. C.

Publications and source records attributed to Watson, A. C..

2 recordsLinked to original sources

Same place, different time: Leopards employ temporal partitioning as a co existence mechanism in a human-dominated, unprotected agricultural landscape in Sri Lanka

As humans and wildlife increasingly overlap on a rapidly changing planet, it is important to understand co-existence mechanisms in unprotected landscapes, especially for large carnivores with which humans share an uneasy history. In Sri Lankas tea estate-dominated Central Highlands, a dense, widespread human population shares the landscape with the islands apex predator, the Sri Lankan leopard. This study used remote cameras to determine leopard density, generalized linear models to investigate leopard space-use in relation to key anthropogenic, ecological and environmental variables, and fitted kernel density curves to identify temporal activity patterns in this unprotected, human-dominated region. Adult leopard density (8.82/100 km{superscript 2}) was lower here than in key Sri Lankan National Parks, but not significantly so, suggesting good leopard habitat suitability. Spatially, leopards did not avoid humans but incorporated anthropogenic factors into space-use decisions, with areas of intermediate human and dog presence disproportionately used. Male leopards were more likely to occur at intermediate distances from human settlements, perhaps balancing risk with efficiency while navigating this human-dominated landscape. Female leopards biased space-use towards areas of high natural prey availability, aligning with their need to provide for cubs. Temporally, leopards were significantly less diurnal and more active at dusk than their protected counterparts, likely due to temporal partitioning from diurnally active humans, an adaptation which allows for human-leopard co-existence. This is the first comprehensive study of leopards outside protected areas in Sri Lanka, and highlights the value of unprotected landscapes and their importance for long-term leopard conservation. To foster human-leopard co-existence it is necessary to maintain current human activity patterns which allow for temporal partitioning; ensure existing natural prey resources remain to prevent leopards switching to domestic prey species; and reduce/eliminate the use of wire snares which transcend the effect of temporal partitioning by de-coupling persecution risk from human presence.

ecology↗

Reducing the impact of HaHV-1 in Australian abalone: the role of age and immune priming

Abalone (Haliotis sp.) are marine organisms of significant ecological and economic importance. However, disease outbreaks, particularly caused by Haliotid herpesvirus (HaHV-1), pose a major threat to the global aquaculture industry. HaHV-1 causes Abalone Viral Ganglioneuritis (AVG) and has led to significant economic losses due to mass mortality in farmed and wild abalone in regions such as China, Taiwan, and Australia. The current study investigated the effect of age on the susceptibility of Australian hybrid abalone to HaHV-1 and the potential of immune priming as a strategy to protect abalone from HaHV-1 infection. Using a co-housed immersion challenge model, we found that abalone less than one year of age were significantly less susceptible to HaHV-1 infection and exhibit less pronounced clinical signs of HaHV-1 infection when compared to adults. Additionally, immune priming adult abalone with poly(I:C) prior to viral challenge provided protection against HaHV-1 when compared to abalone primed with a bacterial antigen, Flagellin-A and unprimed controls. We also determined that the use of pedal swabs is a less invasive method for confirming positive HaHV-1 infections, but not for determining comparative viral loads. These findings are pivotal in developing preventative strategies against HaHV-1 in aquaculture and highlight the need for further research on immune priming and age-related susceptibility in abalone.

microbiology↗