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Crafton, M.

Publications and source records attributed to Crafton, M..

2 recordsLinked to original sources

Factors affecting the individual probability of infection with a prevalent pathogen (Mycoplasma) and the effect on Griffon vultures' movement behavior

Mycoplasmas are known as commensals and pathogenic bacteria of various raptor species causing clinical or subclinical infections. However, little is known about the prevalence of mycoplasma in captive and wild raptors and its significance to their health. In Israel, the Griffon vulture (Gyps fulvus; hereafter Griffons) is considered critically endangered, and its intensive management program includes population monitoring and restocking (captive-born or imported rehabilitated wild Spanish Griffons). Here we survey the prevalence of Mycoplasma species in both the wild and captive populations. During 2019-2020, we collected 244 tracheal swab samples from 167 unique individuals. We used PCR analysis to identify Mycoplasma species. First, we identified nine spp., including species not yet described in Israel or for Griffon vultures. Second, imported Griffons showed a higher prevalence and a different diversity of species in comparison to the local ones, suggesting that at least one Mycoplasma species (Sp 18b) was introduced into the native population. Third, juvenile Griffons had a higher prevalence, different species composition, and stronger reduction in movement compared to adults, confirming the susceptibility of this group to mycoplasma infections. GPS-tracking of 60 free-ranging individuals showed that even in the absence of apparent clinical signs, Griffons infected with mycoplasma, and especially sub-adults flew less (shorter distances and periods). These findings underscore the importance of considering potential pathogen introductions in population reinforcement and reintroduction initiatives, providing valuable insights for similar conservation programs globally. Further, they demonstrate the potential of long-term tracking for detecting subclinical effects that are unnoticeable in clinical examination.

ecology↗

Association between movement patterns, microbiome diversity, and potential pathogen presence in free-ranging feral pigeons foraging in dairy farms.

The feedback between host behavior and disease transmission is well acknowledged, but empirical studies demonstrating associations between individuals pathogens or microbiota composition and their movement are rare. We investigated these associations in feral pigeons (Columba livia domestica), a synanthrope species known to host a plethora of zoonotic pathogens. We captured pigeons in three dairy farms along an urbanization gradient in central Israel. We combined GPS-tracking with Next Generation Sequencing to characterize pigeons movement and microbiota, respectively. We found that pigeons roosted primarily in human settlements, with frequent visits to dairy farms and other agricultural sites. Microbiota diversity and composition varied between sites and the individuals within them, and several pathogens relevant to poultry, cattle, and human-health were frequently detected. Pigeons in the urban site covered shorter distances and carried a greater diversity of bacteria compared to those in rural sites. Intriguingly, beyond these among-site differences, exploratory individuals (measured by the number of unique locations they visited) had more diverse microbiota. We conclude that pigeons can potentially serve as transmission vectors among wildlife, livestock, and humans . Further, the associations between host behavior and microbiota diversity emphasize the relevance of wildlife movement analyses for disease ecology and One Health.

zoology↗