Spatial and intra‐host distribution of myxozoan parasite Tetracapsuloides bryosalmonae among Baltic sea trout (Salmo trutta)

Author:

Lauringson Magnus1ORCID,Kahar Siim1,Veevo Taigor1,Silm Maidu2,Philpott Duncan3,Svirgsden Roland4,Rohtla Mehis4,Päkk Priit1,Gross Riho1,Kaart Tanel5,Vasemägi Anti13

Affiliation:

1. Chair of Aquaculture, Institute of Veterinary Medicine and Animal Sciences Estonian University of Life Sciences Tartu Estonia

2. Centre for Limnology, Institute of Agricultural and Environmental Sciences Estonian University of Life Sciences Tartu Estonia

3. Department of Aquatic Resources, Institute of Freshwater Research Swedish University of Agricultural Sciences Drottningholm Sweden

4. Estonian Marine Institute University of Tartu Tartu Estonia

5. Chair of Animal Breeding and Biotechnology, Institute of Veterinary Medicine and Animal Sciences Estonian University of Life Sciences Tartu Estonia

Abstract

AbstractProliferative kidney disease caused by the myxozoan parasite Tetracapsuloides bryosalmonae has been actively studied in juvenile salmonids for decades. However, very little is known about parasite prevalence and its geographical and intra‐host distribution at older life stages. We screened T. bryosalmonae among adult sea trout (Salmo trutta) (n = 295) collected along the Estonian Baltic Sea coastline together with juvenile trout from 33 coastal rivers (n = 1752) to assess spatial infection patterns of the adult and juvenile fish. The parasite was detected among 38.6% of adult sea trout with the prevalence increasing from west to east, and south to north, along the coastline. A similar pattern was observed in juvenile trout. Infected sea trout were also older than uninfected fish and the parasite was detected in sea trout up to the age of 6 years. Analysis of intra‐host distribution of the parasite and strontium to calcium ratios from the otoliths revealed that (re)infection through freshwater migration may occur among adult sea trout. The results of this study indicate that T. bryosalmonae can persist in a brackish water environment for several years and that returning sea trout spawners most likely contribute to the parasite life cycle by transmitting infective spores.

Funder

European Maritime and Fisheries Fund

Publisher

Wiley

Subject

Veterinary (miscellaneous),Aquatic Science

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