REFERENCES BIBLIOGRAPHIQUES
52
MARTEL L., (1976). La conchyliculture Fransaise: II.Biologie de l'huître et de la moule. SD.
MELO E. M. C., SUHNEL S., et al., (2020). Growth, mortality and reproductive traits of
diploid and triploid Pacific oysters (Crassostrea gigas, THUNBERG, 1793) in Southern Brazil.
Aquaculture Research 51(9): pp. 3631-3640.
MESLEM-HAOUI N., BOUREHAEL N., et al., (2017). Elevage de l'hître creuse Crassostrea
gigas (THUNBERG) en Algérie. Resultats preleminaire. Bulletin de la Société zoologique de
France 138(1-4): pp. 73-79.
NEANT 1., and GUERRIER P., (1988). 6·dimethylaminopurine blocks starfish oocy1e
maturation by inhibiting a relevant protein kinase activity. Exp. Cell Res 176/68·79.
ROHFRITSCH A., BIERNE N., et al., (2013). Population genomics shed light on the
demographic and adaptive histories of European invasion in the Pacific oyster, Crassostrea
gigas. Evolutionary applications 6(7): pp 1064-1078.
ROLLET C., CHEVE J., et al., (2018). Qualité du Milieu Marin Littoral. Bulletin de la
surveillance 2017. Départements d'Ille-et-Vilaine et des Côtes d'Armor.
ROSANI U., VAROTTO L. et al. (2015). Dual analysis of host and pathogen transcriptomes in
ostreid herpesvirus 1‐positive C rassostrea gigas. Environmental microbiology 17(11): pp. 42004212.
RUBIO T., (2017). Diversité des mécanismes d’interactions des vibrios du clade Splendidus et
de leur hôte, l'huître creuse Crassostrea gigas. Thèse de Doctorat. Biologie de interactions.
Université de Montpellier : 230 p.
SALVI D., MARIOTTINI P., (2017). Molecular taxonomy in 2D: a novel ITS2 rRNA
sequence-structure approach guides the description of the oysters' subfamily Saccostreinae and
the genus Magallana (Bivalvia: Ostreidae). Zoological Journal of the Linnean Society 179(2):
pp. 263-276.
SAYED A., (2019). Suivi des paramètres physico-chimiques et des sels nutritifs dans la baie de
Bou-Ismail. Mémoire d'ingénieur d'état. Environnement marine. Alger. ENSSMAL : 55 p.
SEGARRA A., FAURY N., et al., (2014). Transcriptomic study of 39 ostreid herpesvirus 1
genes during an experimental infection. Journal of invertebrate pathology 119: pp. 5-11.
SOLETCHNIK P., HUVET A., et al., (2002). "A comparative field study of growth, survival
and reproduction of Crassostrea gigas, C. angulata and their hybrids." Aquatic Living Resources
15(4): pp 243-250.
STAFF P.-O., (2015). Correction: Comparative Transcriptome Analysis of Two Oysters,
Crassostrea gigas and Crassostrea hongkongensis Provides Insights into Adaptation to HypoOsmotic Conditions. Plos one 10(3): pp. 118-665.
SUPAN J.-E., WILSON C.-E. et al. (2000). The effect of cytochalasin B dosage on the
survival and ploidy of Crassostrea virginica (Gmelin) larvae. Journal of Shellfish Research
19(1): pp.125.
TARIS N., BATISTA F.-M ., et al., (2007). Evidence of response to unintentional selection for
faster development and inbreeding depression in Crassostrea gigas larvae. Aquaculture 272: pp.
69-79.
52
MARTEL L., (1976). La conchyliculture Fransaise: II.Biologie de l'huître et de la moule. SD.
MELO E. M. C., SUHNEL S., et al., (2020). Growth, mortality and reproductive traits of
diploid and triploid Pacific oysters (Crassostrea gigas, THUNBERG, 1793) in Southern Brazil.
Aquaculture Research 51(9): pp. 3631-3640.
MESLEM-HAOUI N., BOUREHAEL N., et al., (2017). Elevage de l'hître creuse Crassostrea
gigas (THUNBERG) en Algérie. Resultats preleminaire. Bulletin de la Société zoologique de
France 138(1-4): pp. 73-79.
NEANT 1., and GUERRIER P., (1988). 6·dimethylaminopurine blocks starfish oocy1e
maturation by inhibiting a relevant protein kinase activity. Exp. Cell Res 176/68·79.
ROHFRITSCH A., BIERNE N., et al., (2013). Population genomics shed light on the
demographic and adaptive histories of European invasion in the Pacific oyster, Crassostrea
gigas. Evolutionary applications 6(7): pp 1064-1078.
ROLLET C., CHEVE J., et al., (2018). Qualité du Milieu Marin Littoral. Bulletin de la
surveillance 2017. Départements d'Ille-et-Vilaine et des Côtes d'Armor.
ROSANI U., VAROTTO L. et al. (2015). Dual analysis of host and pathogen transcriptomes in
ostreid herpesvirus 1‐positive C rassostrea gigas. Environmental microbiology 17(11): pp. 42004212.
RUBIO T., (2017). Diversité des mécanismes d’interactions des vibrios du clade Splendidus et
de leur hôte, l'huître creuse Crassostrea gigas. Thèse de Doctorat. Biologie de interactions.
Université de Montpellier : 230 p.
SALVI D., MARIOTTINI P., (2017). Molecular taxonomy in 2D: a novel ITS2 rRNA
sequence-structure approach guides the description of the oysters' subfamily Saccostreinae and
the genus Magallana (Bivalvia: Ostreidae). Zoological Journal of the Linnean Society 179(2):
pp. 263-276.
SAYED A., (2019). Suivi des paramètres physico-chimiques et des sels nutritifs dans la baie de
Bou-Ismail. Mémoire d'ingénieur d'état. Environnement marine. Alger. ENSSMAL : 55 p.
SEGARRA A., FAURY N., et al., (2014). Transcriptomic study of 39 ostreid herpesvirus 1
genes during an experimental infection. Journal of invertebrate pathology 119: pp. 5-11.
SOLETCHNIK P., HUVET A., et al., (2002). "A comparative field study of growth, survival
and reproduction of Crassostrea gigas, C. angulata and their hybrids." Aquatic Living Resources
15(4): pp 243-250.
STAFF P.-O., (2015). Correction: Comparative Transcriptome Analysis of Two Oysters,
Crassostrea gigas and Crassostrea hongkongensis Provides Insights into Adaptation to HypoOsmotic Conditions. Plos one 10(3): pp. 118-665.
SUPAN J.-E., WILSON C.-E. et al. (2000). The effect of cytochalasin B dosage on the
survival and ploidy of Crassostrea virginica (Gmelin) larvae. Journal of Shellfish Research
19(1): pp.125.
TARIS N., BATISTA F.-M ., et al., (2007). Evidence of response to unintentional selection for
faster development and inbreeding depression in Crassostrea gigas larvae. Aquaculture 272: pp.
69-79.
