Bonamia -free flat oyster ( Ostrea edulis L.) seed for restoration projects: non-destructive screening of broodstock, hatchery production and test for Bonamia -tolerance

Native (flat) oyster ( Ostrea edulis ) beds, once a major component of the North Sea, largely disappeared from the region in the late 19th century. Flat oyster restoration is taking place at a number of locations in the North Sea. When flat oyster beds are restored in areas where O. edulis is functi...

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Published in:Aquatic living resources (Montrouge) Vol. 36; p. 11
Main Authors: Kamermans, Pauline, Blanco, Ainhoa, van Dalen, Pim, Engelsma, Marc, Bakker, Nienke, Jacobs, Pascalle, Dubbeldam, Marco, Sambade, Inés M., Vera, Manuel, Martinez, Paulino
Format: Journal Article
Language:English
Published: Les Ulis EDP Sciences 2023
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ISSN:1765-2952, 0990-7440, 1765-2952
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Abstract Native (flat) oyster ( Ostrea edulis ) beds, once a major component of the North Sea, largely disappeared from the region in the late 19th century. Flat oyster restoration is taking place at a number of locations in the North Sea. When flat oyster beds are restored in areas where O. edulis is functionally extinct it is advised to treat these as disease-free areas. Adult oysters were collected in the Dutch Delta area which is infected with the pathogenic parasite Bonamia ostreae . The aim of this research was to obtain Bonamia -free seed from parents collected in a Bonamia -infected area. In addition, the oysters were analysed to identify candidate genomic regions related to bonamiosis tolerance and exposed to Bonamia in the field to assess survival compared to a naïve control group. With the aid of a non-destructive screening method, Bonamia -free broodstock were selected. These oysters produced Bonamia -free larvae and seed. For comparison, broodstock oysters were collected in the Dutch Wadden Sea, an area free of Bonamia . These oysters also produced Bonamia -free larvae and seed. To study if the Delta area oysters had developed a degree of resistance to the disease, while the naïve Wadden Sea oysters had not, seed of both groups was challenged in Lake Grevelingen where Bonamia occurs. Survival of the pre-selected Bonamia -free oysters was significantly higher than the naïve group. Samples of seed were analysed for association of candidate genetic markers related to bonamiosis tolerance. A higher percentage of individuals with tolerance-associated marker genotypes was found in the screened group compared to the naïve one. However, mortality of the naïve group could not be related to Bonamia presence. Further challenge tests are needed before firm conclusions regarding the genetic markers can be made. The results show that hatchery production of Bonamia -free and potentially Bonamia -tolerant flat oysters is possible.
AbstractList Native (flat) oyster ( Ostrea edulis ) beds, once a major component of the North Sea, largely disappeared from the region in the late 19th century. Flat oyster restoration is taking place at a number of locations in the North Sea. When flat oyster beds are restored in areas where O. edulis is functionally extinct it is advised to treat these as disease-free areas. Adult oysters were collected in the Dutch Delta area which is infected with the pathogenic parasite Bonamia ostreae . The aim of this research was to obtain Bonamia -free seed from parents collected in a Bonamia -infected area. In addition, the oysters were analysed to identify candidate genomic regions related to bonamiosis tolerance and exposed to Bonamia in the field to assess survival compared to a naïve control group. With the aid of a non-destructive screening method, Bonamia -free broodstock were selected. These oysters produced Bonamia -free larvae and seed. For comparison, broodstock oysters were collected in the Dutch Wadden Sea, an area free of Bonamia . These oysters also produced Bonamia -free larvae and seed. To study if the Delta area oysters had developed a degree of resistance to the disease, while the naïve Wadden Sea oysters had not, seed of both groups was challenged in Lake Grevelingen where Bonamia occurs. Survival of the pre-selected Bonamia -free oysters was significantly higher than the naïve group. Samples of seed were analysed for association of candidate genetic markers related to bonamiosis tolerance. A higher percentage of individuals with tolerance-associated marker genotypes was found in the screened group compared to the naïve one. However, mortality of the naïve group could not be related to Bonamia presence. Further challenge tests are needed before firm conclusions regarding the genetic markers can be made. The results show that hatchery production of Bonamia -free and potentially Bonamia -tolerant flat oysters is possible.
Native (flat) oyster (Ostrea edulis) beds, once a major component of the North Sea, largely disappeared from the region in the late 19th century. Flat oyster restoration is taking place at a number of locations in the North Sea. When flat oyster beds are restored in areas where O. edulis is functionally extinct it is advised to treat these as disease-free areas. Adult oysters were collected in the Dutch Delta area which is infected with the pathogenic parasite Bonamia ostreae. The aim of this research was to obtain Bonamia-free seed from parents collected in a Bonamia-infected area. In addition, the oysters were analysed to identify candidate genomic regions related to bonamiosis tolerance and exposed to Bonamia in the field to assess survival compared to a naïve control group. With the aid of a non-destructive screening method, Bonamia-free broodstock were selected. These oysters produced Bonamia-free larvae and seed. For comparison, broodstock oysters were collected in the Dutch Wadden Sea, an area free of Bonamia. These oysters also produced Bonamia-free larvae and seed. To study if the Delta area oysters had developed a degree of resistance to the disease, while the naïve Wadden Sea oysters had not, seed of both groups was challenged in Lake Grevelingen where Bonamia occurs. Survival of the pre-selected Bonamia-free oysters was significantly higher than the naïve group. Samples of seed were analysed for association of candidate genetic markers related to bonamiosis tolerance. A higher percentage of individuals with tolerance-associated marker genotypes was found in the screened group compared to the naïve one. However, mortality of the naïve group could not be related to Bonamia presence. Further challenge tests are needed before firm conclusions regarding the genetic markers can be made. The results show that hatchery production of Bonamia-free and potentially Bonamia-tolerant flat oysters is possible.
Author Dubbeldam, Marco
Engelsma, Marc
Vera, Manuel
van Dalen, Pim
Blanco, Ainhoa
Bakker, Nienke
Jacobs, Pascalle
Kamermans, Pauline
Martinez, Paulino
Sambade, Inés M.
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Snippet Native (flat) oyster ( Ostrea edulis ) beds, once a major component of the North Sea, largely disappeared from the region in the late 19th century. Flat oyster...
Native (flat) oyster (Ostrea edulis) beds, once a major component of the North Sea, largely disappeared from the region in the late 19th century. Flat oyster...
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StartPage 11
SubjectTerms bonamia
Breeding stock
Disease resistance
disease tolerance
Feasibility studies
flat oyster
Genetic markers
Genotypes
Hatcheries
Larvae
Marine molluscs
Mortality
Nondestructive testing
Ostrea edulis
Oyster reefs
Oysters
Parasites
Restoration
Seawater
Seeds
Survival
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Title Bonamia -free flat oyster ( Ostrea edulis L.) seed for restoration projects: non-destructive screening of broodstock, hatchery production and test for Bonamia -tolerance
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Volume 36
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