Environ Monit Assess
(2021) 193:333
1 3
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communities subjected to the combined stress of high
irradiance and low nutrients during summer stratification.
Continental Shelf Research, 186, 48–63. https:// doi. org/
10. 1016/j. csr. 2019. 07. 014
Meroni, L., Chiantore, M., Petrillo, M., & Asnaghi, V. (2018).
Habitat effects on Ostreopsis cf. ovata bloom dynamics.
Harmful Algae, 80, 64–71. https:// doi. org/ 10. 1016/j. hal.
2018. 09. 006
Muñiz, O., Revilla, M., Rodríguez, J. G., Laza-Martínez, A., &
Fontán, A. (2019). Annual cycle of phytoplankton community through the water column: Study applied to the
implementation of bivalve offshore aquaculture in the
southeastern Bay of Biscay. Oceanologia, 61(1), 114–130.
https:// doi. org/ 10. 1016/j. oceano. 2018. 08. 001
Neves, R. A. F., Contins, M., & Nascimento, S. M. (2018). Effects
of the toxic benthic dinoflagellate Ostreopsis cf. ovata on
fertilization and early development of the sea urchin Lytechinus variegatus. Marine Environmental Research, 135,
11–17. https:// doi. org/ 10. 1016/j. maren vres. 2018. 01. 014
Pagliara, P., & Caroppo, C. (2012). Toxicity assessment of
Amphidinium carterae, Coolia cfr. monotis and Ostreopsis cfr. ovata (Dinophyta) isolated from the northern Ionian Sea (Mediterranean Sea). Toxicon, 60(6), 1203–1214.
https:// doi. org/ 10. 1016/j. toxic on. 2012. 08. 005
Parsons, M. L., Aligizaki, K., Bottein, M. Y. D., Fraga, S.,
Morton, S. L., Penna, A., & Rhodes, L. (2012). Gambierdiscus and Ostreopsis: Reassessment of the state of
knowledge of their taxonomy, geography, ecophysiology,
and toxicology. Harmful Algae, 14, 107–129. https:// doi.
org/ 10. 1016/j. hal. 2011. 10. 017
Patocka, J., Nepovimova, E., Wu, Q., & Kuca, K. (2018). Palytoxin congeners. Archives of Toxicology, 92, 143–156.
https:// doi. org/ 10. 1007/ s00204- 017- 2105-8
Pavaux, A-S. (2019). Ecologie chimique du dinoflagellé toxique Ostreopsis cf. ovata en Méditerranée Nord Occidentale. PhD thesis. Sorbonne University.
Pavaux, A.-S., Julie, R., Laurence, G. G., Sophie, M., Eva, T.,
Thomas, O. P., et al. (2019). Effects of the toxic dinoflagellate Ostreopsis cf. ovata on survival, feeding and
reproduction of a phytal harpacticoid copepod. Journal
of Experimental Marine Biology and Ecology, 516, 103–
113. https:// doi. org/ 10. 1016/j. jembe. 2019. 05. 004
Pavaux, A. S., Ternon, E., Dufour, L., Marro, S., Gémin, M. P.,
Thomas, O. P., & Lemée, R. (2020). Efficient, fast and inexpensive bioassay to monitor benthic microalgae toxicity:
Application to Ostreopsis species. Aquatic Toxicology, 223,
105485. https:// doi. org/ 10. 1016/j. aquat ox. 2020. 105485
Pelin, M., Sosa, S., Brovedani, V., Fusco, L., Poli, M., &
Tubaro, A. (2018). A Novel Sensitive Cell-Based Immunoenzymatic Assay for Palytoxin Quantitation in Mussels.
Toxins, 10(8), 329. https:// doi. org/ 10. 3390/ toxin s1008 0329
Pereira, J. C., Abrantes, I., Martins, I., Barata, J., Frias, P., &
Pereira, I. (2011). Ecological and morphological features
of Amyloodinium ocellatum occurrences in cultivated
gilthead seabream Sparus aurata L. A Case Study. Aquaculture, 310(3–4), 289–297. https:// doi. org/ 10. 1016/j.
aquac ulture. 2010. 11. 011
Poli, M., Ruiz-Olvera, P., Nalca, A., Ruiz, S., Livingston, V.,
Frick, O., et al. (2018). Toxicity and pathophysiology
of palytoxin congeners after intraperitoneal and aerosol
administration in rats. Toxicon, 150, 235–250. https:// doi.
org/ 10. 1016/j. toxic on. 2018. 06. 067
Privitera, D., Giussani, V., Isola, G., Faimali, M., Piazza, V.,
Garaventa, F., et al. (2012). Toxic effects of Ostreopsis
ovata on larvae and juveniles of Paracentrotus lividus.
Harmful Algae, 18, 16–23. https:// doi. org/ 10. 1016/j. hal.
2012. 03. 009
Qiao, L., Chang, Z., Li, J., & Chen, Z. (2020). Phytoplankton
community succession in relation to water quality changes
in the indoor industrial aquaculture system for Litopenaeus vannamei. Aquaculture, 527, 735441. https:// doi.
org/ 10. 1016/j. aquac ulture. 2020. 735441
Rhodes, L., & Munday, R. (2016). Harmful Algae and Their
Commercial Implications. In: Bux F., Chisti Y. (eds)
Algae Biotechnology. Green Energy and Technology.
Springer, Cham (pp. 301–315). https:// doi. org/ 10. 1007/
978-3- 319- 12334-9_ 15
Soliño, L., García-Altares, M., Godinho, L., & Costa, P. R.
(2020). Toxin profile of Ostreopsis cf. ovata from Portuguese continental coast and Selvagens Islands (Madeira,
Portugal). Toxicon, 181, 91–101. https:// doi. org/ 10. 1016/j.
toxic on. 2020. 04. 102
Sun, D., Liu, Z., & Wang, C. (2016). Scale-dependent environmental control of mesozooplankton community structure
in three aquaculture subtropical bays of China. Oceanologia, 58(2), 124–134. https:// doi. org/ 10. 1016/j. oceano.
2015. 11. 002
Tester, P. A., Litaker, R. W., & Berdalet, E. (2020). Climate
change and harmful benthic microalgae. Harmful Algae,
91, 101655. https:// doi. org/ 10. 1016/j. hal. 2019. 101655
Tibiriçá, C. E. J. A., Leite, I. P., Batista, T. V. V., Fernandes,
L. F., Chomérat, N., Herve, F., et al (2019). Ostreopsis cf.
ovate Bloom in Currais, Brazil: Phylogeny, Toxin Profile
and Contamination of Mussels and Marine Plastic Litter.
Toxins, 11(8), 446. https:// doi. org/ 10. 3390/ toxin s1108 0446
Tichadou, L., Glaizal, M., Armengaud, A., Grossel, H., Lemée,
R., Kantin, R., et al. (2010). Health impact of unicellular
algae of the Ostreopsis genus blooms in the Mediterranean Sea: Experience of the French Mediterranean coast
surveillance network from 2006 to 2009. Clinical Toxicology, 48(8), 839–844. https:// doi. org/ 10. 3109/ 15563 650.
2010. 513687
Utermöhl, H. (1958). Zur Vervollkommung der quantitative
phytoplankton-methodik. Mitt. Int. Verein. Theor. Angew.
Limnol., 9, 1–38
Vaillancourt, R. D., Lance, V. P., & Marra, J. F. (2018). Phytoplankton chemotaxonomy within contiguous optical layers
across the western North Atlantic Ocean and its relationship to environmental parameters. Deep-Sea Research
Part I: Oceanographic Research Papers, 139, 14–26.
https:// doi. org/ 10. 1016/j. dsr. 2018. 05. 007
van de Poll, W. H., Boute, P. G., Rozema, P. D., Buma, A. G. J.,
Kulk, G., & Rijkenberg, M. J. A. (2015). Sea surface temperature control of taxon specific phytoplankton production along an oligotrophic gradient in the Mediterranean
Sea. Marine Chemistry, 177, 536–544. https:// doi. org/ 10.
1016/j. march em. 2015. 08. 005
Vassalli, M., Penna, A., Sbrana, F., Casabianca, S., Gjeci, N.,
Capellacci, S., et al. (2018). Intercalibration of counting
methods for Ostreopsis spp. blooms in the Mediterranean
(2021) 193:333
1 3
Page 11 of 12 333
communities subjected to the combined stress of high
irradiance and low nutrients during summer stratification.
Continental Shelf Research, 186, 48–63. https:// doi. org/
10. 1016/j. csr. 2019. 07. 014
Meroni, L., Chiantore, M., Petrillo, M., & Asnaghi, V. (2018).
Habitat effects on Ostreopsis cf. ovata bloom dynamics.
Harmful Algae, 80, 64–71. https:// doi. org/ 10. 1016/j. hal.
2018. 09. 006
Muñiz, O., Revilla, M., Rodríguez, J. G., Laza-Martínez, A., &
Fontán, A. (2019). Annual cycle of phytoplankton community through the water column: Study applied to the
implementation of bivalve offshore aquaculture in the
southeastern Bay of Biscay. Oceanologia, 61(1), 114–130.
https:// doi. org/ 10. 1016/j. oceano. 2018. 08. 001
Neves, R. A. F., Contins, M., & Nascimento, S. M. (2018). Effects
of the toxic benthic dinoflagellate Ostreopsis cf. ovata on
fertilization and early development of the sea urchin Lytechinus variegatus. Marine Environmental Research, 135,
11–17. https:// doi. org/ 10. 1016/j. maren vres. 2018. 01. 014
Pagliara, P., & Caroppo, C. (2012). Toxicity assessment of
Amphidinium carterae, Coolia cfr. monotis and Ostreopsis cfr. ovata (Dinophyta) isolated from the northern Ionian Sea (Mediterranean Sea). Toxicon, 60(6), 1203–1214.
https:// doi. org/ 10. 1016/j. toxic on. 2012. 08. 005
Parsons, M. L., Aligizaki, K., Bottein, M. Y. D., Fraga, S.,
Morton, S. L., Penna, A., & Rhodes, L. (2012). Gambierdiscus and Ostreopsis: Reassessment of the state of
knowledge of their taxonomy, geography, ecophysiology,
and toxicology. Harmful Algae, 14, 107–129. https:// doi.
org/ 10. 1016/j. hal. 2011. 10. 017
Patocka, J., Nepovimova, E., Wu, Q., & Kuca, K. (2018). Palytoxin congeners. Archives of Toxicology, 92, 143–156.
https:// doi. org/ 10. 1007/ s00204- 017- 2105-8
Pavaux, A-S. (2019). Ecologie chimique du dinoflagellé toxique Ostreopsis cf. ovata en Méditerranée Nord Occidentale. PhD thesis. Sorbonne University.
Pavaux, A.-S., Julie, R., Laurence, G. G., Sophie, M., Eva, T.,
Thomas, O. P., et al. (2019). Effects of the toxic dinoflagellate Ostreopsis cf. ovata on survival, feeding and
reproduction of a phytal harpacticoid copepod. Journal
of Experimental Marine Biology and Ecology, 516, 103–
113. https:// doi. org/ 10. 1016/j. jembe. 2019. 05. 004
Pavaux, A. S., Ternon, E., Dufour, L., Marro, S., Gémin, M. P.,
Thomas, O. P., & Lemée, R. (2020). Efficient, fast and inexpensive bioassay to monitor benthic microalgae toxicity:
Application to Ostreopsis species. Aquatic Toxicology, 223,
105485. https:// doi. org/ 10. 1016/j. aquat ox. 2020. 105485
Pelin, M., Sosa, S., Brovedani, V., Fusco, L., Poli, M., &
Tubaro, A. (2018). A Novel Sensitive Cell-Based Immunoenzymatic Assay for Palytoxin Quantitation in Mussels.
Toxins, 10(8), 329. https:// doi. org/ 10. 3390/ toxin s1008 0329
Pereira, J. C., Abrantes, I., Martins, I., Barata, J., Frias, P., &
Pereira, I. (2011). Ecological and morphological features
of Amyloodinium ocellatum occurrences in cultivated
gilthead seabream Sparus aurata L. A Case Study. Aquaculture, 310(3–4), 289–297. https:// doi. org/ 10. 1016/j.
aquac ulture. 2010. 11. 011
Poli, M., Ruiz-Olvera, P., Nalca, A., Ruiz, S., Livingston, V.,
Frick, O., et al. (2018). Toxicity and pathophysiology
of palytoxin congeners after intraperitoneal and aerosol
administration in rats. Toxicon, 150, 235–250. https:// doi.
org/ 10. 1016/j. toxic on. 2018. 06. 067
Privitera, D., Giussani, V., Isola, G., Faimali, M., Piazza, V.,
Garaventa, F., et al. (2012). Toxic effects of Ostreopsis
ovata on larvae and juveniles of Paracentrotus lividus.
Harmful Algae, 18, 16–23. https:// doi. org/ 10. 1016/j. hal.
2012. 03. 009
Qiao, L., Chang, Z., Li, J., & Chen, Z. (2020). Phytoplankton
community succession in relation to water quality changes
in the indoor industrial aquaculture system for Litopenaeus vannamei. Aquaculture, 527, 735441. https:// doi.
org/ 10. 1016/j. aquac ulture. 2020. 735441
Rhodes, L., & Munday, R. (2016). Harmful Algae and Their
Commercial Implications. In: Bux F., Chisti Y. (eds)
Algae Biotechnology. Green Energy and Technology.
Springer, Cham (pp. 301–315). https:// doi. org/ 10. 1007/
978-3- 319- 12334-9_ 15
Soliño, L., García-Altares, M., Godinho, L., & Costa, P. R.
(2020). Toxin profile of Ostreopsis cf. ovata from Portuguese continental coast and Selvagens Islands (Madeira,
Portugal). Toxicon, 181, 91–101. https:// doi. org/ 10. 1016/j.
toxic on. 2020. 04. 102
Sun, D., Liu, Z., & Wang, C. (2016). Scale-dependent environmental control of mesozooplankton community structure
in three aquaculture subtropical bays of China. Oceanologia, 58(2), 124–134. https:// doi. org/ 10. 1016/j. oceano.
2015. 11. 002
Tester, P. A., Litaker, R. W., & Berdalet, E. (2020). Climate
change and harmful benthic microalgae. Harmful Algae,
91, 101655. https:// doi. org/ 10. 1016/j. hal. 2019. 101655
Tibiriçá, C. E. J. A., Leite, I. P., Batista, T. V. V., Fernandes,
L. F., Chomérat, N., Herve, F., et al (2019). Ostreopsis cf.
ovate Bloom in Currais, Brazil: Phylogeny, Toxin Profile
and Contamination of Mussels and Marine Plastic Litter.
Toxins, 11(8), 446. https:// doi. org/ 10. 3390/ toxin s1108 0446
Tichadou, L., Glaizal, M., Armengaud, A., Grossel, H., Lemée,
R., Kantin, R., et al. (2010). Health impact of unicellular
algae of the Ostreopsis genus blooms in the Mediterranean Sea: Experience of the French Mediterranean coast
surveillance network from 2006 to 2009. Clinical Toxicology, 48(8), 839–844. https:// doi. org/ 10. 3109/ 15563 650.
2010. 513687
Utermöhl, H. (1958). Zur Vervollkommung der quantitative
phytoplankton-methodik. Mitt. Int. Verein. Theor. Angew.
Limnol., 9, 1–38
Vaillancourt, R. D., Lance, V. P., & Marra, J. F. (2018). Phytoplankton chemotaxonomy within contiguous optical layers
across the western North Atlantic Ocean and its relationship to environmental parameters. Deep-Sea Research
Part I: Oceanographic Research Papers, 139, 14–26.
https:// doi. org/ 10. 1016/j. dsr. 2018. 05. 007
van de Poll, W. H., Boute, P. G., Rozema, P. D., Buma, A. G. J.,
Kulk, G., & Rijkenberg, M. J. A. (2015). Sea surface temperature control of taxon specific phytoplankton production along an oligotrophic gradient in the Mediterranean
Sea. Marine Chemistry, 177, 536–544. https:// doi. org/ 10.
1016/j. march em. 2015. 08. 005
Vassalli, M., Penna, A., Sbrana, F., Casabianca, S., Gjeci, N.,
Capellacci, S., et al. (2018). Intercalibration of counting
methods for Ostreopsis spp. blooms in the Mediterranean
