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1.
Sci Rep ; 12(1): 22219, 2022 12 23.
Article in English | MEDLINE | ID: mdl-36564404

ABSTRACT

A key in species conservation is understanding the amount and distribution of genetic diversity and how environmental changes that occurred in the recent past may have influenced current patterns of population structure. Commerson's dolphin, Cephalorhynchus commersonii, has two subspecies, one of which is endemic to South America (C. commersonii commersonii) and little is known about its population genetics. Our objective was to investigate the population genetics of this subspecies throughout its distribution. Using 70 skin samples and information available in GenBank, 308 mitochondrial DNA sequences and 28 species-specific microsatellites were analyzed. The species presented low genetic diversity when compared to other dolphin species, but was consistent with other species within the genus. Strong population structure based on mitochondrial DNA was exhibited throughout its entire distribution, a pattern consistent with female philopatry. However, this pattern was not detected when using microsatellites, suggesting male-mediated gene flow. Demographic tests suggested a population expansion beginning approximately 15,000 years ago, after the Last Glacial Maximum. In a climate change scenario, we recommended considering each sampling location as an independent population management unit in order to evaluate the impact of possible environmental changes on the distribution of genetic information within the species.


Subject(s)
Dolphins , Animals , Female , Male , Dolphins/genetics , Genetics, Population , DNA, Mitochondrial/genetics , South America , Genetic Variation , Microsatellite Repeats/genetics
2.
Zoonoses Public Health ; 68(6): 691-695, 2021 09.
Article in English | MEDLINE | ID: mdl-33991441

ABSTRACT

Diphyllobothriosis caused by the Pacific broad tapeworm Adenocephalus pacificus (syn. Diphyllobothrium pacificum) is an emerging parasitic disease reported also from non-endemic areas, including Europe (Spain). The origin of these human cases is unknown but should be related to fresh marine fish imported from endemic areas. In this study, we molecularly confirmed common dolphins Delphinus delphis off Argentina as euparatenic transit hosts of A. pacificus. Preliminary analysis of their stomach content, together with data from previous studies from the Southwest Atlantic, showed that common dolphins feed almost exclusively on schooling Argentine hake Merluccius hubbsi and Argentine anchovy Engraulis anchoita. Therefore, we suggest that Argentine hake and Argentine anchovy may represent the intermediate hosts of A. pacificus in the Southwest Atlantic, but also in Europe to where M. hubbsi is imported on ice (unfrozen).


Subject(s)
Common Dolphins/parasitology , Diphyllobothriasis/veterinary , Disease Reservoirs/veterinary , Fishes/parasitology , Food Microbiology , Zoonoses/parasitology , Animals , Argentina , Cestoda/isolation & purification , Diphyllobothriasis/transmission , Disease Reservoirs/parasitology , Europe , Humans , Zoonoses/epidemiology
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