Mediterranean Aquaculture and Genetic Pollution: A Review Combined with Data from a Fish Farm Evaluating the Ecological Risks of Finfish Escapes

Author:

Alvanou Maria V.1ORCID,Gkagkavouzis Konstantinos2ORCID,Karaiskou Nikoleta2,Feidantsis Konstantinos3ORCID,Lattos Athanasios4,Michaelidis Basile4ORCID,Theodorou John A.3ORCID,Batargias Costas5ORCID,Triantafyllidis Alexandros2ORCID,Giantsis Ioannis A.1ORCID

Affiliation:

1. Department of Animal Science, Faculty of Agricultural Sciences, University of Western Macedonia, 53100 Florina, Greece

2. Department of Genetics, Development and Molecular Biology, School of Biology, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece

3. Department of Fisheries & Aquaculture, University of Patras, 26504 Mesolonghi, Greece

4. Laboratory of Animal Physiology, Department of Zoology, School of Biology, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece

5. Department of Biology, University of Patras, Rio, 26504 Patra, Greece

Abstract

Mediterranean finfish aquaculture is mainly represented by the production of the gilthead sea bream (Sparus aurata) and sea bass (Dicentrarchus labrax) growing in marine cage farms. Despite the numerous benefits of fish farming, the ecological risk potentially caused by fish escapes to the wild populations is occasionally high. In the current study, an integrated review of fish escapes is presented regarding S. aurata and D. labrax escapes and their potential effect on the genetic composition of wild populations. The collected data from the literature are combined and discussed along with recorded escapes in a fish farm located in the Aegean Sea, Greece. According to these records, fish escapes present a generally stable rate, ranging between 0 and 2% in each escape event, which occur 5–8 times per year. Although for other farmed fish species worldwide, the ecological risk may be higher, this risk is probably lower in Mediterranean finfish populations, which are characterized by generally low levels of genetic differentiation. Nevertheless, the risk of genetic introgression still exists. Particularly in sea bream and sea bass farming, genetic structure and differentiation in wild populations seem to be unaffected for now. Nevertheless, suitable management measurements would be a useful strategy to avoid future negative effects of fish escapes. These strategies should be focused on further efforts towards recapture program development, reduced escapees’ survival, and proper legislation. Furthermore, more data on escapees’ survival percentage, their migration pathways, and the way these pathways relate to mortality, the type of escape event, and the season of release would be also valuable.

Publisher

MDPI AG

Subject

Ocean Engineering,Water Science and Technology,Civil and Structural Engineering

Reference90 articles.

1. FAO (2018). The State of World Fisheries and Aquaculture—Meeting the Sustainable Development Goals, FAO.

2. Influence of genetic drift on patterns of genetic variation: The footprint of aquaculture practices in Sparus aurata (Teleostei: Sparidae);Cossu;Mol. Ecol.,2019

3. (2023, May 15). European Commission. Available online: https://cordis.europa.eu/project/id/6540/reporting.

4. Escapes of Marine Fish from Sea-Cage Aquaculture in the Mediterranean Sea: Status and Prevention;Dempster;CIESM Work. Monogr.,2007

5. Insurance Requirements of the Greek Mariculture Industry during the period 1986–1994 (1st semester). In Aquaculture Production Economics;Christophilogiannis;Cah. Options Mediterr.,1995

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