Amyloodiniosis in cultured Dicentrarchus labrax: parasitological and molecular diagnosis, and an improved treatment protocol

Dis Aquat Organ. 2018 Jun 19;129(1):41-51. doi: 10.3354/dao03237.

Abstract

Amyloodinium ocellatum, the causative agent of amyloodiniosis (marine velvet, velvet disease), affects marine and brackish fish in various warm and temperate habitats. We recorded disease outbreaks with high morbidity and mortality rates in marine-cultured European seabass Dicentrarchus labrax fry at 2 locations in northwest Egypt. The sudden outbreak, high morbidity and mortality rates, and skin lesions with a velvety appearance in affected fish all indicated A. ocellatum infection. This was further confirmed by microscopic findings of the parasitic stage (trophonts) in skin and gill smears. While ecological factors including water temperature and salinity were all amenable to parasite establishment and propagation, mortality rates differed between the 2 farms, with rates of mortality well correlated with prevalence and intensity of A. ocellatum infections. Characterization by PCR targeting rDNA gene fragments and subsequent DNA sequencing and phylogenetic analysis further confirmed the molecular identity of the A. ocellatum isolate, which was genetically similar to isolates from other geographical locations. Finally, an improved treatment method using dual hyposalination and copper sulfate exposure to increase the efficiency and decrease the toxicity of copper sulfate was tested. The gradual reduction in water salinity coupled with copper sulfate treatment was more efficient at controlling the disease than only applying copper sulfate. To our knowledge, this is the first parasitological and molecular characterization of A. ocellatum in marine cultures in Egypt. The high molecular identity and close phylogenetic relationship further confirmed the monophyletic nature of A. ocellatum isolates.

Keywords: Amyloodiniosis; Copper sulfate treatment; Dicentrarchus labrax; European seabass; PCR; Phylogenetic analysis.

Publication types

  • Clinical Trial
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Aquaculture*
  • Bass / parasitology*
  • Copper Sulfate / therapeutic use
  • Dinoflagellida / genetics
  • Dinoflagellida / isolation & purification*
  • Disease Outbreaks
  • Ectoparasitic Infestations / parasitology
  • Ectoparasitic Infestations / veterinary*
  • Fish Diseases / parasitology*
  • Phylogeny
  • Protozoan Infections, Animal / parasitology*
  • Salinity
  • Water / chemistry

Substances

  • Water
  • Copper Sulfate