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Assessing the presence and spread of Renibacterium salmoninarum between farmed and wild fish in Sweden

Bacterial kidney disease (BKD) can be a devastating bacterial infection in salmonids, and it is present in aquaculture throughout the world. BKD is caused by the Gram‐positive facultative intracellular bacterium Renibacterium salmoninarum (R. salmoninarum) that is spread both horizontally and vertic...

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Autores principales: Persson, David B., Aspán, Anna, Hysing, Paulina, Blomkvist, Eva, Jansson, Eva, Orsén, Ludvig, Hällbom, Hampus, Axén, Charlotte
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9304202/
https://www.ncbi.nlm.nih.gov/pubmed/35092707
http://dx.doi.org/10.1111/jfd.13586
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author Persson, David B.
Aspán, Anna
Hysing, Paulina
Blomkvist, Eva
Jansson, Eva
Orsén, Ludvig
Hällbom, Hampus
Axén, Charlotte
author_facet Persson, David B.
Aspán, Anna
Hysing, Paulina
Blomkvist, Eva
Jansson, Eva
Orsén, Ludvig
Hällbom, Hampus
Axén, Charlotte
author_sort Persson, David B.
collection PubMed
description Bacterial kidney disease (BKD) can be a devastating bacterial infection in salmonids, and it is present in aquaculture throughout the world. BKD is caused by the Gram‐positive facultative intracellular bacterium Renibacterium salmoninarum (R. salmoninarum) that is spread both horizontally and vertically. Disease signs include external ulcerations and blisters and internal signs such as organ swelling, granulomas, petechiae and ascites. In Sweden, BKD accounts for a significant income loss in aquacultures due to expensive decontamination of the facility and increased disease susceptibility for the immunocompromised fish leading to higher mortality rates. In addition, uncontrolled spread in aquaculture may threaten the survival of wild fish populations. The aim of our study was to investigate the prevalence of R. salmoninarum in wild salmonids caught in Swedish waters where net pen farms with a recent history of BKD are present. Four rivers with at least one BKD‐positive or recently BKD‐positive farm were selected. In addition, we evaluated the use of environmental DNA (eDNA) for surveillance and monitoring of ongoing infections at these locations. In total, 1058 fish were sampled from four different river systems, and of them 52 (4.9%) were positive for R. salmoninarum by antigen ELISA. Surprisingly, these fish were not evenly distributed between the four river systems, but 50 were caught in the same river (Ljungan). This accounts for an alarmingly high rate of 17% R. salmoninarum‐positive samples in wild salmonids in this area. This number is far above what was expected and clearly shows the risk with an open farming system as well as the importance of effective health monitoring programmes to avoid an uncontrolled spread of the disease. The use of eDNA for monitoring BKD is somewhat difficult to evaluate. Few of the water samples analysed were PCR positive for R. salmoninarum (2 of 38) and those were collected where no ELISA positive fish were identified. In addition to water, sediment samples were collected under a net pen farm that had recently slaughtered all fish due to ongoing R. salmoninarum infections. Sediment samples are more promising than water as 4 of 5 samples at one farming facility where positive for R. salmoninarum. Thus, sediment samples may be valuable for monitoring potential ongoing BKD in farms, without the need to sacrifice valuable fish.
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spelling pubmed-93042022022-07-28 Assessing the presence and spread of Renibacterium salmoninarum between farmed and wild fish in Sweden Persson, David B. Aspán, Anna Hysing, Paulina Blomkvist, Eva Jansson, Eva Orsén, Ludvig Hällbom, Hampus Axén, Charlotte J Fish Dis Research Articles Bacterial kidney disease (BKD) can be a devastating bacterial infection in salmonids, and it is present in aquaculture throughout the world. BKD is caused by the Gram‐positive facultative intracellular bacterium Renibacterium salmoninarum (R. salmoninarum) that is spread both horizontally and vertically. Disease signs include external ulcerations and blisters and internal signs such as organ swelling, granulomas, petechiae and ascites. In Sweden, BKD accounts for a significant income loss in aquacultures due to expensive decontamination of the facility and increased disease susceptibility for the immunocompromised fish leading to higher mortality rates. In addition, uncontrolled spread in aquaculture may threaten the survival of wild fish populations. The aim of our study was to investigate the prevalence of R. salmoninarum in wild salmonids caught in Swedish waters where net pen farms with a recent history of BKD are present. Four rivers with at least one BKD‐positive or recently BKD‐positive farm were selected. In addition, we evaluated the use of environmental DNA (eDNA) for surveillance and monitoring of ongoing infections at these locations. In total, 1058 fish were sampled from four different river systems, and of them 52 (4.9%) were positive for R. salmoninarum by antigen ELISA. Surprisingly, these fish were not evenly distributed between the four river systems, but 50 were caught in the same river (Ljungan). This accounts for an alarmingly high rate of 17% R. salmoninarum‐positive samples in wild salmonids in this area. This number is far above what was expected and clearly shows the risk with an open farming system as well as the importance of effective health monitoring programmes to avoid an uncontrolled spread of the disease. The use of eDNA for monitoring BKD is somewhat difficult to evaluate. Few of the water samples analysed were PCR positive for R. salmoninarum (2 of 38) and those were collected where no ELISA positive fish were identified. In addition to water, sediment samples were collected under a net pen farm that had recently slaughtered all fish due to ongoing R. salmoninarum infections. Sediment samples are more promising than water as 4 of 5 samples at one farming facility where positive for R. salmoninarum. Thus, sediment samples may be valuable for monitoring potential ongoing BKD in farms, without the need to sacrifice valuable fish. John Wiley and Sons Inc. 2022-01-29 2022-05 /pmc/articles/PMC9304202/ /pubmed/35092707 http://dx.doi.org/10.1111/jfd.13586 Text en © 2022 The Authors. Journal of Fish Diseases published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Persson, David B.
Aspán, Anna
Hysing, Paulina
Blomkvist, Eva
Jansson, Eva
Orsén, Ludvig
Hällbom, Hampus
Axén, Charlotte
Assessing the presence and spread of Renibacterium salmoninarum between farmed and wild fish in Sweden
title Assessing the presence and spread of Renibacterium salmoninarum between farmed and wild fish in Sweden
title_full Assessing the presence and spread of Renibacterium salmoninarum between farmed and wild fish in Sweden
title_fullStr Assessing the presence and spread of Renibacterium salmoninarum between farmed and wild fish in Sweden
title_full_unstemmed Assessing the presence and spread of Renibacterium salmoninarum between farmed and wild fish in Sweden
title_short Assessing the presence and spread of Renibacterium salmoninarum between farmed and wild fish in Sweden
title_sort assessing the presence and spread of renibacterium salmoninarum between farmed and wild fish in sweden
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9304202/
https://www.ncbi.nlm.nih.gov/pubmed/35092707
http://dx.doi.org/10.1111/jfd.13586
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