Vaccination with Ectoparasite Proteins Involved in Midgut Function and Blood Digestion Reduces Salmon Louse Infestations

Infestation with the salmon louse (Copepoda, Caligidae) affects Atlantic salmon ( L.) production in European aquaculture. Furthermore, high levels of salmon lice in farms significantly increase challenge pressure against wild salmon populations. Currently, available control methods for salmon louse...

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Veröffentlicht in:Vaccines (Basel) 2020-01, Vol.8 (1), p.32
Hauptverfasser: Contreras, Marinela, Karlsen, Marius, Villar, Margarita, Olsen, Rolf Hetlelid, Leknes, Lisa Marie, Furevik, Anette, Yttredal, Karine Lindmo, Tartor, Haitham, Grove, Soren, Alberdi, Pilar, Brudeseth, Bjorn, de la Fuente, José
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Sprache:eng
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Zusammenfassung:Infestation with the salmon louse (Copepoda, Caligidae) affects Atlantic salmon ( L.) production in European aquaculture. Furthermore, high levels of salmon lice in farms significantly increase challenge pressure against wild salmon populations. Currently, available control methods for salmon louse have limitations, and vaccination appears as an attractive, environmentally sound strategy. In this study, we addressed one of the main limitations for vaccine development, the identification of candidate protective antigens. Based on recent advances in tick vaccine research, herein, we targeted the salmon louse midgut function and blood digestion for the identification of candidate target proteins for the control of ectoparasite infestations. The results of this translational approach resulted in the identification and subsequent evaluation of the new candidate protective antigens, putative Toll-like receptor 6 (P30), and potassium chloride, and amino acid transporter (P33). Vaccination with these antigens provided protection in Atlantic salmon by reducing adult female (P33) or chalimus II (P30) sea lice infestations. These results support the development of vaccines for the control of sea lice infestations.
ISSN:2076-393X
2076-393X
DOI:10.3390/vaccines8010032