Bibliographie
49
Fourqurean, J.W., Duarte, C.M., Kennedy, H., Marbà, N., Holmer, M., Mateo, M.A., Apostolaki, E.T.,
Kendrick, G.A., Krause-Jensen, D., McGlathery, K.J., Serrano, O., (2012). Seagrass ecosystems as a
globally significant carbon stock. Nature Geosci. Vol.5. P. P. 505–509. https://doi.org/10.1038/ngeo1477
-GGaspar, R., Pereira, L., Neto, J., (2012). Ecological reference conditions and quality states of marine
macroalgae sensu Water Framework Directive: An example from the intertidal rockyshores of the Portuguese
coastal waters. Ecological Indicators.Vol. 19, P. P. 24–38.
Gerbal, M., Verlaque, M., (1995). Macrophytobenthos de substrat meuble dans l’étang de Thau (France,
Méditerranée) et facteurs environnementaux associés. Oceanologica Acta.Vol. 18, n°5. P. P. 557-571.
Giraud, G., (1977). Contribution à la description et à la phénologie des herbiers de Posidonia oceanica (L.)
Delile. Thèse Doctorat. Spécialité, France : Univ. Aix-Marseille II. P. P. 1-150.
Goldberg, D.E., (1996). Competitive ability: definitions, contingency and correlated traits.Philos. Trans.: Biol.
Sci. n° (1377–1385).
Gramulin-Brida, H., Giaccone, G., Golubic, S., (1967). Contribution aux études des biocénoses subtidales.
Helgolander. Wiss. Meecesanters, Allen. Vol. 15, P.P. 429-444.
Green, A., Chadwick, M.S., Jones, P.J.S., (2018). Variability of UK seagrass sediment Carbon: implications
for blue carbon estimates and marine conservation management. PloS One. Vol. 13, n°9, e0204431.
Green, E.P., Short, F.T., (2003). World Atlas of Seagrasses. UNEP-WCMC.
Guidetti, P., M. Lorenti, M.C. Buia and L. Mazella., (2002). Temporal dynamics and biomass portioning in
three Adriatic seagrass species: Posidonia oceanica, Cymodocea nodosa, Zostera marina. P.S.Z.N.I: Mar. Ecol.
Vol. 23. P. P. 51–67.
Gutiérrez DG., (2019). Spatial and temporal variability of Cymodocea nodosa meadows in Gran Canaria Island.
Thesis, España : Facultad De Ciencias Del Mar, Universidad de Las Palmas de Gran Canaria. P. 32.
-HHaritonidis S., Diapoulis A., Nikolaidis G., (1990). First results on the localisation of the herbiers of marine
phanerogams in the Gulf of Thermaikos. Posidonia Newsletter. Vol. 3, n°2. P. P. 11–18.
Harlin, MM., (1995). Changements dans les principaux groupes de plantes suite à un enrichissement en
éléments nutritifs. P. P. 173-187. Dans : Estuaires et lagons peu profonds eutrophiques, AJMC Comb (Ed.),
Institute for Environmental Science, Murdoch University, CRC Press, Murdoch, Australie.
Hemminga, M.A., Duarte, C.M., (2000). Seagrass Ecology. Cambridge University Press.
-IIFREMER., (2021). Suivi DCE 2020 - Indicateur « Macroalgues subtidales » masse d’eau côtière FRFC11 «
Côte basque ».
-KKadari-Meziane Y., (1994). Contribution à l’étude de l’impact de la pollution sur la distribution spatiotemporelle des peuplements phytobenthiques dans la baie de Bou Ismaïl (Algérie). Thèse de Magister, Alger :
Ecole Normale Supérieure, Vieux Kouba. P. P. 1-226.
Kelaher, B.P., Van Den Broek, J., York, P.H., Bishop, M.J. et al., (2013). Positive responses of a seagrass
ecosystem to experimental nutrient enrichment. Marine Ecology Progress Series. Vol. 487. P. P. 15-25.
Kilminster, K., McMahon, K., Waycott, M., Kendrick, G.A., Scanes, P., McKenzie, L., O’Brien, K.R.,
Lyons, M., Ferguson, A., Maxwell, P., Glasby, T., Udy, J., (2015). Unravelling complexity in seagrass
systems for management: Australia as a microcosm. Science of The Total Environment. Vol. 534. P. P. 97–109.
https://doi.org/10.1016/j.scitotenv.2015.04.061
Koch, E.W., Booth, D.M., Palinkas, C., (2012). Seagrasses and the ecosystem service of shoreline protection
(or is it sediment stabilization?). In: Creed, J.C., Oigman-Pszczol, S.S. (Eds.), Proc. 10th Int. Seagrass Biology
Workshop (ISBW10), 25–30 Nov. 2012. Armacão dos Búzios, Brazil. Instituto Biodiversidade Marinha, Rio
deJaneiro, Brazil.
P. 108.
Kuo, J., Cambridge, M., Kirkman, H., (2018). Anatomy and Structure of Australian Seagrasses. Seagrasses of
Australia: Structure, Ecology and Conservation. P. P. 93–125.
-LLarkum AWD, Kendrick GA, Ralph PJ (eds)., (2018). Seagrasses of Australia: Structure, Ecology and
Conservation. Springer International Publishing, Cham
Le Gall J.Y., 1969. Etude de l’endofaune des pelouses de Zostéracées superficielles de la baie de Castiglione.
Téthys. Vol. 1, n°2. P. P. 395- 420.
Leoni, V., Vela, A., Pasqualini, V., Pergent-Martini, C., Pergent, G., (2008). Effects of experimental
reduction of light and nutrient enrichments (N and P) on seagrasses: a review. Aquatic Conservation-Marine and
Freshwater Ecosystems. Vol. 18, n°2. P. P. 202-220.
Les, D.H., Cleland, M.A., Waycott, M., (1997). Phylogenetic Studies in Alismatidae, II: Evolution of Marine
49
Fourqurean, J.W., Duarte, C.M., Kennedy, H., Marbà, N., Holmer, M., Mateo, M.A., Apostolaki, E.T.,
Kendrick, G.A., Krause-Jensen, D., McGlathery, K.J., Serrano, O., (2012). Seagrass ecosystems as a
globally significant carbon stock. Nature Geosci. Vol.5. P. P. 505–509. https://doi.org/10.1038/ngeo1477
-GGaspar, R., Pereira, L., Neto, J., (2012). Ecological reference conditions and quality states of marine
macroalgae sensu Water Framework Directive: An example from the intertidal rockyshores of the Portuguese
coastal waters. Ecological Indicators.Vol. 19, P. P. 24–38.
Gerbal, M., Verlaque, M., (1995). Macrophytobenthos de substrat meuble dans l’étang de Thau (France,
Méditerranée) et facteurs environnementaux associés. Oceanologica Acta.Vol. 18, n°5. P. P. 557-571.
Giraud, G., (1977). Contribution à la description et à la phénologie des herbiers de Posidonia oceanica (L.)
Delile. Thèse Doctorat. Spécialité, France : Univ. Aix-Marseille II. P. P. 1-150.
Goldberg, D.E., (1996). Competitive ability: definitions, contingency and correlated traits.Philos. Trans.: Biol.
Sci. n° (1377–1385).
Gramulin-Brida, H., Giaccone, G., Golubic, S., (1967). Contribution aux études des biocénoses subtidales.
Helgolander. Wiss. Meecesanters, Allen. Vol. 15, P.P. 429-444.
Green, A., Chadwick, M.S., Jones, P.J.S., (2018). Variability of UK seagrass sediment Carbon: implications
for blue carbon estimates and marine conservation management. PloS One. Vol. 13, n°9, e0204431.
Green, E.P., Short, F.T., (2003). World Atlas of Seagrasses. UNEP-WCMC.
Guidetti, P., M. Lorenti, M.C. Buia and L. Mazella., (2002). Temporal dynamics and biomass portioning in
three Adriatic seagrass species: Posidonia oceanica, Cymodocea nodosa, Zostera marina. P.S.Z.N.I: Mar. Ecol.
Vol. 23. P. P. 51–67.
Gutiérrez DG., (2019). Spatial and temporal variability of Cymodocea nodosa meadows in Gran Canaria Island.
Thesis, España : Facultad De Ciencias Del Mar, Universidad de Las Palmas de Gran Canaria. P. 32.
-HHaritonidis S., Diapoulis A., Nikolaidis G., (1990). First results on the localisation of the herbiers of marine
phanerogams in the Gulf of Thermaikos. Posidonia Newsletter. Vol. 3, n°2. P. P. 11–18.
Harlin, MM., (1995). Changements dans les principaux groupes de plantes suite à un enrichissement en
éléments nutritifs. P. P. 173-187. Dans : Estuaires et lagons peu profonds eutrophiques, AJMC Comb (Ed.),
Institute for Environmental Science, Murdoch University, CRC Press, Murdoch, Australie.
Hemminga, M.A., Duarte, C.M., (2000). Seagrass Ecology. Cambridge University Press.
-IIFREMER., (2021). Suivi DCE 2020 - Indicateur « Macroalgues subtidales » masse d’eau côtière FRFC11 «
Côte basque ».
-KKadari-Meziane Y., (1994). Contribution à l’étude de l’impact de la pollution sur la distribution spatiotemporelle des peuplements phytobenthiques dans la baie de Bou Ismaïl (Algérie). Thèse de Magister, Alger :
Ecole Normale Supérieure, Vieux Kouba. P. P. 1-226.
Kelaher, B.P., Van Den Broek, J., York, P.H., Bishop, M.J. et al., (2013). Positive responses of a seagrass
ecosystem to experimental nutrient enrichment. Marine Ecology Progress Series. Vol. 487. P. P. 15-25.
Kilminster, K., McMahon, K., Waycott, M., Kendrick, G.A., Scanes, P., McKenzie, L., O’Brien, K.R.,
Lyons, M., Ferguson, A., Maxwell, P., Glasby, T., Udy, J., (2015). Unravelling complexity in seagrass
systems for management: Australia as a microcosm. Science of The Total Environment. Vol. 534. P. P. 97–109.
https://doi.org/10.1016/j.scitotenv.2015.04.061
Koch, E.W., Booth, D.M., Palinkas, C., (2012). Seagrasses and the ecosystem service of shoreline protection
(or is it sediment stabilization?). In: Creed, J.C., Oigman-Pszczol, S.S. (Eds.), Proc. 10th Int. Seagrass Biology
Workshop (ISBW10), 25–30 Nov. 2012. Armacão dos Búzios, Brazil. Instituto Biodiversidade Marinha, Rio
deJaneiro, Brazil.
P. 108.
Kuo, J., Cambridge, M., Kirkman, H., (2018). Anatomy and Structure of Australian Seagrasses. Seagrasses of
Australia: Structure, Ecology and Conservation. P. P. 93–125.
-LLarkum AWD, Kendrick GA, Ralph PJ (eds)., (2018). Seagrasses of Australia: Structure, Ecology and
Conservation. Springer International Publishing, Cham
Le Gall J.Y., 1969. Etude de l’endofaune des pelouses de Zostéracées superficielles de la baie de Castiglione.
Téthys. Vol. 1, n°2. P. P. 395- 420.
Leoni, V., Vela, A., Pasqualini, V., Pergent-Martini, C., Pergent, G., (2008). Effects of experimental
reduction of light and nutrient enrichments (N and P) on seagrasses: a review. Aquatic Conservation-Marine and
Freshwater Ecosystems. Vol. 18, n°2. P. P. 202-220.
Les, D.H., Cleland, M.A., Waycott, M., (1997). Phylogenetic Studies in Alismatidae, II: Evolution of Marine
