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1.
Vet Med Sci ; 10(2): e1401, 2024 03.
Article in English | MEDLINE | ID: mdl-38450946

ABSTRACT

This report presents the first case of nodular dermatofibrosis with renal cysts (NDRC) in a beagle. In this atypical case, the gene mutation associated with the disease was not present, the renal cysts showed dynamic changes in size and number, and the patient has greatly surpassed the NDRC life expectation.


Subject(s)
Dog Diseases , Kidney Diseases, Cystic , Animals , Dogs , Kidney Diseases, Cystic/veterinary , Mutation , Dog Diseases/diagnosis , Dog Diseases/genetics
2.
R Soc Open Sci ; 10(3): 221237, 2023 Mar.
Article in English | MEDLINE | ID: mdl-36998770

ABSTRACT

Heavy metals, including mercury (Hg) and cadmium (Cd), occur naturally or anthropogenically and are considered toxic to the environment and human health. However, studies on heavy metal contamination focus on locations close to industrialized settlements, while isolated environments with little human activity are often ignored due to perceived low risk. This study reports heavy metal exposure in Juan Fernandez fur seals (JFFS), a marine mammal endemic to an isolated and relatively pristine archipelago off the coast of Chile. We found exceptionally high concentrations of Cd and Hg in JFFS faeces. Indeed, they are among the highest reported for any mammalian species. Following analysis of their prey, we concluded that diet is the most likely source of Cd contamination in JFFS. Furthermore, Cd appears to be absorbed and incorporated into JFFS bones. However, it was not associated with mineral changes observed in other species, suggesting Cd tolerance/adaptations in JFFS bones. The high levels of silicon found in JFFS bones may counteract the effects of Cd. These findings are relevant to biomedical research, food security and the treatment of heavy metal contamination. It also contributes to understanding the ecological role of JFFS and highlights the need for surveillance of apparently pristine environments.

3.
Microbiologyopen ; 10(4): e1215, 2021 08.
Article in English | MEDLINE | ID: mdl-34459554

ABSTRACT

As apex predators, pinnipeds are considered to be useful bioindicators of marine and coastal environments. Endemic to a small archipelago in the South Pacific, the Juan Fernandez fur seal (JFFS) is one of the less-studied members of the pinniped family Otariidae. This study aimed to characterize the fecal microbiome of the JFFS for the first time, to establish a baseline for future studies of host-microbial-environment interactions and monitoring programs. During two consecutive reproductive seasons, 57 fecal samples were collected from seven different JFFS colonies within the Juan Fernandez Archipelago, Chile. Bacterial composition and abundance were characterized by sequencing the V4 region of the 16S rRNA gene. The overall microbiome composition was dominated by five phyla: Firmicutes (40% ±24), Fusobacteria (30% ±17), Bacteroidetes (22% ±10), Proteobacteria (6% ±4), and Actinobacteria (2% ±3). Alpha diversity was higher in Tierras Blancas. However, location was not found to be a dominant driver of microbial composition. Interestingly, the strongest signal in the data was a negative association between the genera Peptoclostridium and Fusobacterium, which explained 29.7% of the total microbial composition variability between samples. The genus Peptoclostridium has not been reported in other pinniped studies, and its role here is unclear, with interpretation challenging due to a lack of information regarding microbiome functionality in marine mammals. As a first insight into the JFFS fecal microbiome, these results contribute towards our understanding of the natural microbial diversity and composition in free-ranging pinnipeds.


Subject(s)
Bacteria/classification , Feces/microbiology , Fur Seals/microbiology , Gastrointestinal Microbiome/genetics , Microbiota/genetics , Actinobacteria/classification , Actinobacteria/genetics , Actinobacteria/isolation & purification , Animals , Bacteria/genetics , Bacteria/isolation & purification , Bacteroidetes/classification , Bacteroidetes/genetics , Bacteroidetes/isolation & purification , Biodiversity , Chile , DNA, Bacterial/genetics , Firmicutes/classification , Firmicutes/genetics , Firmicutes/isolation & purification , Fusobacteria/classification , Fusobacteria/genetics , Fusobacteria/isolation & purification , Proteobacteria/classification , Proteobacteria/genetics , Proteobacteria/isolation & purification , RNA, Ribosomal, 16S/genetics , Sequence Analysis, DNA
4.
Mar Pollut Bull ; 153: 110966, 2020 Apr.
Article in English | MEDLINE | ID: mdl-32275526

ABSTRACT

Repeated reports of microplastic pollution in the marine pinniped diet have emerged in the last years. However, only few studies address the drivers of microplastics presence and the potential implications for monitoring microplastic pollution in the ocean. This study monitored their in the scats (N = 205) of four pinniped species/subspecies at five different locations in the southern Pacific Ocean (Peru and Chile). Samples from all rookeries contained microplastics, and overall, 68% of the examined scats contained fragments/fibers, mostly blue colored. We confirmed that 81.5% of the fragments/fibers were anthropogenic in origin , but only 30% were polymers. Scats from Juan Fernández Archipelago presented higher microplastic concentrations than continental rookeries. Also, the common diet in each location may influence the levels found in the samples. This study presents a useful non-invasive technique to track plastic pollution in top predator diets as bioindicators for future surveillance/management plans applied to different location.


Subject(s)
Environmental Monitoring , Microplastics , Water Pollutants, Chemical , Chile , Pacific Ocean , Peru , Plastics
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