4 Interactions of Wild and Reared Fish and Invertebrates
151
Marteil L (1976) La conchyliculture française. 2. Biologie de l’huître et de la moule. Rev. Trav.
Inst. Pêches marit. 40: 149–345
Marty GD, Bower SM, Clarke KR, Meyer G, Lowe G, Osborn AL, Chow EP, Hannah H, Byrne
S, Sojonky K, Robinson JH (2006) Histopathology and a real-time PCR assay for detection of
Bonamia ostreae in Ostrea edulis cultured in western Canada. Aquaculture 261: 33–42
McElligott EA, Maguire TMF, Cross TF (1987) The amount and nature of electrophoreticallydetectable genetic polymorphism in hatchery reared Atlantic salmon (Salmo salar L.) in
Ireland. Conseils Internationale pour l’Exploration de la Mer CM Doc. 1987/M:13, Ref E,
10 pp
McGinnity P, de Eyto E, Cross T, Coughlan J, Ferguson A (in press) Population specific smolt
development, migration and maturity schedules in Atlantic salmon in a natural river environment. Proceedings of the 7th International Workshop on Salmonid Smoltification held in Tono,
Japan, 2005. Aquaculture (Special Issue)-in press
McGinnity P, Prodöhl P, O’Maoiléidigh N, Hynes R, Cotter D, Baker N, O’Hea B, Ferguson A
(2004) Differential lifetime success and performance of native and non-native Atlantic salmon
examined under communal natural conditions. Journal of Fish Biology 65 (Supplement A):
173–187
McGinnity P, Stone C, Taggart JB, Cooke D, Cotter D, Hynes R, McCamley C, Cross T, Ferguson
A (1997) Genetic impact of escaped farmed salmon (Salmo salar L.) on native populations:
use of DNA profiling to assess freshwater performance of wild, farmed, and hybrid progeny
in a natural river environment. ICES Journal of Marine Science 54: 998–1008
McGinnity P, Prodöhl P, Ferguson A, Hynes R, O’Maoiléidigh N, Baker N, Cotter D, O’Hea B,
Cooke D, Rogan G, Taggart J, Cross T (2003) Fitness reduction and potential extinction of
wild populations of Atlantic salmon, Salmo salar, as a result of interactions with escaped farm
salmon. Proceedings of the Royal Society B 270: 2443–2450
McMeel OM, Hoey EM, Ferguson A (2001) Partial nucleotide sequences, and routine typing by
polymerase chain reaction-restriction fragment length polymorphism, of the brown trout (Salmo
trutta) lactate dehydrogenase, LDH-C1
*
90 and
*
100 alleles. Molecular Ecology 10: 29–34
Miller KM, Shaorang L, Ming TJ, Kaukinen KH, Schulze AD (2006) The salmonid MHC class I:
more ancient loci uncovered. Immunogenetics 58: 571–589
Naciri-Graven Y, Martin AG, Baud JP, Renault T, Gerard A (1998) Selecting the flat oyster
Ostreae edulis (L.) for survival when infected with the parasite Bonamia ostreae. Journal of
Experimental Marine Biology and Ecology 224: 91–107
Naciri-Graven Y, Haure J, Gerard A, Baud JP (1999) Comparative growth of Bonamia ostreae
resistant and wild flat oyster Ostrea edulis in an intensive system II Second year of the
experiment. Aquaculture 171: 195–208
Nell JA, Perkins B (2006) Evaluation of the progeny of third generation Sydney rock oyster
Saccostrea glomerata (Gould 1850) breeding lines for resistance to QX disease Marteilia
sydneyi and winter mortality Bonamia roughleyi. Aquaculture Research 37: 693–700
Norris AT, Bradley DG, Cunningham EP (1999) Microsatellite genetic variation between and
within farmed and wild Atlantic salmon (Salmo salar) populations. Aquaculture 180:
247–264
O’Leary DB, Coughlan J, Dillane E, McCarthy TV, Cross TF (2007) Microsatellite variation in
cod Gadus morhua throughout its geographic range. Journal of Fish Biology 70: 310–335
Rajagopal S, van der Velde G, Jansen J, van der Gaag M, Atsma G, Janssen-Mommen J, Polma
H, Jenner HA (2005) Thermal tolerance of the invasive oyster Crassostrea gigas: feasibility of
heat treatment as an antifouling option. Water Research 39: 4335 – 4342
Reece KS, Bushek D, Hudson KL, Graves JE (2001) Geographic distribution of Perkinsus
marinus genetic strains along the Atlantic and Gulf coasts of the USA. Marine Biology 139:
1047–1055
Reisenbichler RR, Rubin SP, Wetzel L, Phelps SR (2004) Natural selection after release from a
hatchery leads to domestication in steelhead, Oncorhynchus mykiss. In: KM Leber, HL
Blankenship, S Kitada, T Svåsand (Editor), Stock enhancement and sea ranching: developments, pitfalls and opportunities, 2nd edn. Blackwell, Oxford, pp. 371–383
151
Marteil L (1976) La conchyliculture française. 2. Biologie de l’huître et de la moule. Rev. Trav.
Inst. Pêches marit. 40: 149–345
Marty GD, Bower SM, Clarke KR, Meyer G, Lowe G, Osborn AL, Chow EP, Hannah H, Byrne
S, Sojonky K, Robinson JH (2006) Histopathology and a real-time PCR assay for detection of
Bonamia ostreae in Ostrea edulis cultured in western Canada. Aquaculture 261: 33–42
McElligott EA, Maguire TMF, Cross TF (1987) The amount and nature of electrophoreticallydetectable genetic polymorphism in hatchery reared Atlantic salmon (Salmo salar L.) in
Ireland. Conseils Internationale pour l’Exploration de la Mer CM Doc. 1987/M:13, Ref E,
10 pp
McGinnity P, de Eyto E, Cross T, Coughlan J, Ferguson A (in press) Population specific smolt
development, migration and maturity schedules in Atlantic salmon in a natural river environment. Proceedings of the 7th International Workshop on Salmonid Smoltification held in Tono,
Japan, 2005. Aquaculture (Special Issue)-in press
McGinnity P, Prodöhl P, O’Maoiléidigh N, Hynes R, Cotter D, Baker N, O’Hea B, Ferguson A
(2004) Differential lifetime success and performance of native and non-native Atlantic salmon
examined under communal natural conditions. Journal of Fish Biology 65 (Supplement A):
173–187
McGinnity P, Stone C, Taggart JB, Cooke D, Cotter D, Hynes R, McCamley C, Cross T, Ferguson
A (1997) Genetic impact of escaped farmed salmon (Salmo salar L.) on native populations:
use of DNA profiling to assess freshwater performance of wild, farmed, and hybrid progeny
in a natural river environment. ICES Journal of Marine Science 54: 998–1008
McGinnity P, Prodöhl P, Ferguson A, Hynes R, O’Maoiléidigh N, Baker N, Cotter D, O’Hea B,
Cooke D, Rogan G, Taggart J, Cross T (2003) Fitness reduction and potential extinction of
wild populations of Atlantic salmon, Salmo salar, as a result of interactions with escaped farm
salmon. Proceedings of the Royal Society B 270: 2443–2450
McMeel OM, Hoey EM, Ferguson A (2001) Partial nucleotide sequences, and routine typing by
polymerase chain reaction-restriction fragment length polymorphism, of the brown trout (Salmo
trutta) lactate dehydrogenase, LDH-C1
*
90 and
*
100 alleles. Molecular Ecology 10: 29–34
Miller KM, Shaorang L, Ming TJ, Kaukinen KH, Schulze AD (2006) The salmonid MHC class I:
more ancient loci uncovered. Immunogenetics 58: 571–589
Naciri-Graven Y, Martin AG, Baud JP, Renault T, Gerard A (1998) Selecting the flat oyster
Ostreae edulis (L.) for survival when infected with the parasite Bonamia ostreae. Journal of
Experimental Marine Biology and Ecology 224: 91–107
Naciri-Graven Y, Haure J, Gerard A, Baud JP (1999) Comparative growth of Bonamia ostreae
resistant and wild flat oyster Ostrea edulis in an intensive system II Second year of the
experiment. Aquaculture 171: 195–208
Nell JA, Perkins B (2006) Evaluation of the progeny of third generation Sydney rock oyster
Saccostrea glomerata (Gould 1850) breeding lines for resistance to QX disease Marteilia
sydneyi and winter mortality Bonamia roughleyi. Aquaculture Research 37: 693–700
Norris AT, Bradley DG, Cunningham EP (1999) Microsatellite genetic variation between and
within farmed and wild Atlantic salmon (Salmo salar) populations. Aquaculture 180:
247–264
O’Leary DB, Coughlan J, Dillane E, McCarthy TV, Cross TF (2007) Microsatellite variation in
cod Gadus morhua throughout its geographic range. Journal of Fish Biology 70: 310–335
Rajagopal S, van der Velde G, Jansen J, van der Gaag M, Atsma G, Janssen-Mommen J, Polma
H, Jenner HA (2005) Thermal tolerance of the invasive oyster Crassostrea gigas: feasibility of
heat treatment as an antifouling option. Water Research 39: 4335 – 4342
Reece KS, Bushek D, Hudson KL, Graves JE (2001) Geographic distribution of Perkinsus
marinus genetic strains along the Atlantic and Gulf coasts of the USA. Marine Biology 139:
1047–1055
Reisenbichler RR, Rubin SP, Wetzel L, Phelps SR (2004) Natural selection after release from a
hatchery leads to domestication in steelhead, Oncorhynchus mykiss. In: KM Leber, HL
Blankenship, S Kitada, T Svåsand (Editor), Stock enhancement and sea ranching: developments, pitfalls and opportunities, 2nd edn. Blackwell, Oxford, pp. 371–383
