Nile × blue tilapia hybrid ( × ) has become an important food fish in intensive freshwater aquaculture. Recently, the parasite (Cnidaria: Myxozoa) was found to infect hybrid tilapia gills at high prevalence, causing immune suppression and high mortality. Here, we explored additional characteristics of –tilapia interaction, which enable efficient proliferation of this parasite inside its specific host. Highly sensitive quantitative polymerase chain reaction (qPCR) and hybridization analyses of fry collected from fertilization ponds provided evidence to an early-life infection of fish by a myxozoan parasite, occurring less than 3 weeks post-fertilization. Because species are highly host-specific, we next compared infection rates in hybrid tilapia and in both its parental species following a 1-week exposure to infectious pond water. Analysis by qPCR and histological sections showed that while blue tilapia was as susceptible to as the hybrid, Nile tilapia appeared to be resistant. This is the first report of differential susceptibility of a hybrid fish its parental purebreds to a myxozoan parasite. These findings advance our understanding of the relationship between and tilapia fish and raise important questions regarding the mechanisms that allow the parasite to distinguish between very closely related species and to infect a specific organ at very early-life stages.
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http://dx.doi.org/10.1017/S0031182023000240 | DOI Listing |
Dis Aquat Organ
January 2025
Mississippi Aquarium, Department of Veterinary Services, Gulfport, Mississippi 39502, USA.
This report documents complications in false pilchard Harengula clupeola and scad Decapterus macarellus associated with a salinomycin (60 mg kg-1) and amprolium (100 mg kg-1) gel feed treatment, along with prolonged temperature increase, for an Enteromyxum leei outbreak in a salt water, mixed species, public aquarium exhibit. Shortly after administration, a mass mortality event ensued where hundreds of false pilchards and a few scad died. Medicated gel feed was noted within the gastrointestinal tracts of all affected fish.
View Article and Find Full Text PDFActa Parasitol
January 2025
ICAR-Central Island Agricultural Research Institute, Andaman & Nicobar Islands, Port Blair, India.
Purpose: Henneguya sp. is a crucial myxosporean parasite known to cause milky flesh or tapioca disease in the freshwater fish population, leading to heavy mortality. Studies to investigate its host range and to monitor their prevalence in wild and aquacultured fish are necessary.
View Article and Find Full Text PDFJ Fish Dis
December 2024
Department of Microbiology and Immunology, Faculty of Veterinary Medicine, University of Tehran, Tehran, Iran.
Myxobolus Bütschli, 1882 is a highly important genus of fish myxozoans, consisting of many species that cause serious diseases in ornamental cyprinid fish species in different geographic areas by infecting a wide range of organs. This study describes a new Myxobolus species infecting the gill lamellae, gill rakers and skin epidermis of goldfish (Carassius auratus) from Mohammadshahr, Iran, based on detailed morphological, histological and molecular analysis. Mature spores were small and spherical in shape, consisting of two symmetrical shell valves in frontal view, measuring 10.
View Article and Find Full Text PDFJ Parasitol
November 2024
602 Big Creek Drive, Sherwood, Arkansas 72120.
Syst Parasitol
December 2024
, 602 Big Creek Drive, Sherwood, AR, 72120, USA.
Forty-two species of myxozoans, including 31 species of Myxobolus Bütschli, 1882, have been described from centrarchid fishes. One species, the green sunfish (Lepomis cyanellus), has been reported to host at least three species of Myxobolus. Between March 2023 and June 2024, 42 L.
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