Wildlife Health and Disease in Conservation

A special issue of Veterinary Sciences (ISSN 2306-7381).

Deadline for manuscript submissions: 10 April 2025 | Viewed by 2247

Special Issue Editor


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Guest Editor
School of Veterinary Science, The University of Queensland, Gatton, QLD 4343, Australia
Interests: wildlife pathology; wildlife diseases; veterinary pathology
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Special Issue Information

Dear Colleagues,

We invite submissions for the Special Issue of Veterinary Sciences on “Wildlife Health and Disease in Conservation”, focusing on disease, causative agents, and their impact on threatened wildlife conservation. External factors such as climate change, habitat encroachment, human–wildlife interactions, pollution, and invasive species pose novel threats, increasing mortality and morbidity among wildlife worldwide. Thus, how these emerging and re-emerging threats influence or intensify the degree of occurrence of novel host-pathogen interactions remains poorly understood. This Special Issue seeks manuscripts addressing wildlife disease threats within a conservation context, inclusive of, but not limited to, novel host-pathogen relationships, particularly in endangered and vulnerable species.

Dr. Viviana Gonzalez Astudillo
Guest Editor

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Keywords

  • wildlife conservation
  • wildlife
  • disease
  • climate change
  • habitat encroachment
  • endangered species
  • natural disasters
  • host–pathogen relationships

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Published Papers (2 papers)

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Research

18 pages, 41145 KiB  
Article
Multi-Year Mortality Due to Staphylococcal Arthritis and Osteomyelitis with Sandspur-Associated Injury in Juvenile Black Skimmers (Rynchops niger) at Nesting Colonies in Southwest Florida, USA
by Nicole M. Nemeth, Janell M. Brush, W. Andrew Cox, Rebecca Hardman, Brittany Piersma, Alexandra Troiano, Heather W. Barron, Melanie R. Kunkel, Chloe C. Goodwin, Alisia A. W. Weyna, Amy S. McKinney, Xuan Hui Teo, Rebecca Radisic, Lisa A. Shender, Susan Sanchez and Michelle van Deventer
Vet. Sci. 2024, 11(11), 578; https://doi.org/10.3390/vetsci11110578 - 18 Nov 2024
Viewed by 826
Abstract
The black skimmer (Rynchops niger) is a state-threatened, colonially nesting seabird in Florida, USA. Conservation threats include habitat alteration, human disturbances, severe weather, and predation. During nest monitoring (May–September, 2020–2022), black skimmer juveniles at colonies on Fort Myers Beach and Marco [...] Read more.
The black skimmer (Rynchops niger) is a state-threatened, colonially nesting seabird in Florida, USA. Conservation threats include habitat alteration, human disturbances, severe weather, and predation. During nest monitoring (May–September, 2020–2022), black skimmer juveniles at colonies on Fort Myers Beach and Marco Island, Florida, had polyarthritis and died or were euthanized due to severe illness. Similarly-aged skimmers from geographically distant (considered unaffected) colonies were evaluated for comparison (2021–2023). We documented field, clinical, radiographical, and pathological findings to characterize disease and purported pathogenesis. The majority were lame and lethargic, in poor nutritional condition, and dehydrated. Additionally, 8/23 of the skimmers with dermatitis and arthritis from affected colonies also had penetrating sandspurs associated with skin ulceration, scabbing, and/or hemorrhage. The affected joints were often in limbs (interphalangeal and hock; less commonly stifle, elbow, carpus). A postmortem evaluation and bacteriology revealed Staphylococcal aureus-associated dermatitis, arthritis, tenosynovitis, and/or osteomyelitis in 21/22 of the juvenile skimmers from southwestern nest colonies. Staphylococcus aureus dissemination to internal organs occurred in 10/13 of the skimmers tested. Among skimmers evaluated from distant colonies, 5/10 that were examined histologically had skin crusting and inflammation but lacked arthritis. Occasional coinfections were documented (e.g., West Nile virus, Gram-negative bacilli). The results suggest that staphylococcal joint disease originated from sandspur-induced skin damage, followed by hematogenous dissemination to the joints and, occasionally, the internal organs. Additional nest sites should be tested to evaluate disease risk and potentially contributing environmental factors. We recommend that site managers employ techniques that reduce the risk of skimmer interactions with sandspurs. Full article
(This article belongs to the Special Issue Wildlife Health and Disease in Conservation)
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14 pages, 1710 KiB  
Article
Occurrence of Adenovirus in Fecal Samples of Wild Felids (Panthera onca and Leopardus pardalis) from Brazil: Predators as Dispersing Agents?
by Ygor Machado, Laís Santos Rizotto, Hilton Entringer Jr., Helena Lage Ferreira, Gabriel Augusto Marques Rossi and Ana Carolina Srbek-Araujo
Vet. Sci. 2024, 11(10), 511; https://doi.org/10.3390/vetsci11100511 - 17 Oct 2024
Viewed by 1054
Abstract
Wild felids are vital to maintaining the ecological balance in natural environments as they regulate prey populations at different levels of the food chain. Changes in the dynamics of predator populations can impact the entire biodiversity of an ecosystem. There are few reports [...] Read more.
Wild felids are vital to maintaining the ecological balance in natural environments as they regulate prey populations at different levels of the food chain. Changes in the dynamics of predator populations can impact the entire biodiversity of an ecosystem. There are few reports of Adenovirus infections in these animals, and little is known about their epidemiology. Therefore, a deeper understanding of these viruses within a One Health framework is essential, given their importance to animal, human, and environmental health. This study aimed to detect Adenovirus DNA in fecal samples of wild felids from a remnant of the Atlantic Forest in southeastern Brazil, renowned for its high biodiversity. A total of 43 fecal samples, 11 from jaguar (Panthera onca) and 32 from ocelot (Leopardus pardalis), were collected. The samples were subjected to viral nucleic acid extraction and genetic material amplification through PCR, followed by nucleotide sequencing. All phylogenetic analyses were based on the amino acid sequences of the DNA polymerase and IV2a genes. Adenovirus DNA was detected in the feces of both species, with two samples of each feline testing positive. This study reports, for the first time, the occurrence of Adenovirus associated with feces of Panthera onca and Leopardus pardalis. All detected sequences were grouped within the Mastadenovirus genus. Based solely on phylogenetic distance criteria, the identified sequences could be classified as Mastadenovirus bosprimum and Mastadenovirus from the vampire bat Desmodus rotundus. We hypothesize that Adenoviruses were associated with the prey consumed, which may allow the felines to act as eventual viral dispersing agents in the environment, in addition to the risk of being infected. This study provides new information on the association of Adenoviruses with wild felids and their prey, and offers important insights into the ecological dynamics of these viruses in natural environments. It suggests that wild felines may play a crucial role in viral surveillance programs. Full article
(This article belongs to the Special Issue Wildlife Health and Disease in Conservation)
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