Bibliographie
48
Cymodocea nodosa (Ucria) Ascherson on the Mediterranean coast of France. Aquat. Bot.Vol. 22. P. P. 277–289.
Ceccherelli, G., Piazzi, L., & Cinelli, F., (2000). Réponse de l'espèce non indigène Caulerpa racemosa
(Forsskål) J. Agardh à l'herbier indigène Posidonia oceanica (L.) Delile : effet de la densité des pousses et de
l'orientation des bords de prairies. - J. Exp. Mar. Biol. Écol. Vol. 243. P. P. 227-240.
Christianen, M.J.A., van Belzen, J., Herman, P.M.J., van Katwijk, M.M., Lamers, L.P.M., van Leent,
P.J.M., Bouma, T.J., (2013). Low-Canopy Seagrass Beds Still Provide Important Coastal Protection Services.
PLoS ONE 8, e62413. https://doi.org/10.1371/journal.pone.0062413
Cinelli F., Pardi G., Papi I., (1995). Plant biology. In : F. Cinelli, E. Fresi, C. Lorenzi & A. Mucedola (Eds),
“La Posidonia oceanica“. Rivista Marittima Publ. Vol. 12 (Suppl.). P. P. 17-27.
Costanza, R., de Groot, R., Sutton, P., van der Ploeg, S., Anderson, S.J., Kubiszewski, I., Farber, S.,
Turner, R.K., (2014). Changes in the global value of ecosystem services. Global Environmental Change. Vol.
26, 152–158. https://doi.org/10.1016/j.gloenvcha.2014.04.002
Cunha, A.H. and C.M. Duarte., (2005). Population age structure and rhizome growth of Cymodocea nodosa in
the Ria Formosa (southern Portugal). Mar. Biol.Vol. 146. P. P. 841–847.
Cunha, A.H. and C.M. Duarte., (2007). Biomass and leaf dynamics of Cymodocea nodosa in the Ria Formosa
lagoon, south Portugal. Bot. Mar. Vol. 50. P. P. 1–7.
-DDagnelie P., (1998a). Statistique théorique et appliquée. Statistique appliquée et descriptive et bases de
l’inférence statistique. Tome 1. De Boeck et Larcier, Paris, Bruxelles : Département De Boeck Université. P. P.
1-499.
Dagnelie P., (1998b). Statistique théorique et appliquée. Inférence statistique à une et à deux dimensions. Tome
2. De Boeck et Larcier, Paris, Bruxelles : Département De Boeck Université. P. P. 1-659.
de la Torre-Castro, M., Di Carlo, G., Jiddawi, N.S., (2014). Seagrass importance for a small-scale fishery in
the tropics: The need for seascape management. Marine Pollution Bulletin Vol. 83. P.P. 398–407.
https://doi.org/10.1016/j.marpolbul.2014.03.034
de la Torre-Castro, M., Rönnbäck, P., (2004). Links between humans and seagrasses—an example from
tropical
East
Africa.
Ocean
&
Coastal
Management.
Vol.
47.
P.
P.
361–387.
https://doi.org/10.1016/j.ocecoaman.2004.07.005
Den Hartog C., (1970). Seagrasses of the World. North-Holland Publishing Company, Amsterdam Dorenbosch
M, Grol MGG, Christianen MJA, Nagelkerken I, van der Velde G (2005) Indo-Pacificseagrass beds and
mangroves contribute to fish density and diversity on adjacent coral reefs. Mar Ecol Prog Ser. Vol. 302. P. P.
63–76.
Drew E. A., (1971). Botany. Underwater Science. An introduction to experiments by divers. Woods and Lithgoe
Drew E. A., JUPP B. P., (1976). Some aspects of the growth of Posidonia oceanica in Malta. Underwater
Drew, E.A., (1978). Factors affecting photosynthesis and its seasonal variation in the seagrasses Cymodocea
nodosa (Ucria) Ascher, and Posidonia oceanica (L.) Delile in the Mediterranean. J. Exp. Mar. Biol. Ecol.Vol. 31.
P. P. 173–194.
Duarte CM., (2002). The future of seagrass meadows. Environ Conserv. Vol. 29. P. P. 192–206.
Duarte, C.M. & Cebrián, J., (1996). The fate of marine autotrophic production. Limnology and Oceanography.
Vol. 41.
Duarte, C.M., and Kirkman, H., (2001). Methods for the measurement of seagrass abundance and depth
distribution. In FT Short and RG Coles Global Seagrass Research methods, Elsevier. P. P. 141-153.
Duarte, C.M., Chiscano, C.L., (1999). Seagrass biomass and production: a reassessment. Aquatic Botany 65.P.
P. 159–174. https://doi.org/10.1016/S0304-3770(99)00038-8
Duarte, C.M., Losada, I.J., Hendriks, I.E., Mazarrasa, I., Marbà, N., (2013). The role of coastal plant
communities for climate change mitigation and adaptation. Nature Clim Change 3. P.P. 961–968.
https://doi.org/10.1038/nclimate1970
Duarte, C.M., Middelburg, J., and Caraco, N., (2005). Major role of marine vegetation on the oceanic carbon
cycle. Biogeosciences. Vol. 2. P. P. 1-8.
Duarte, C.M., Middelburg, J.J., Caraco, N., (2005). Major role of marine vegetation on the oceanic carbon
cycle 9. edit. London : 1-59. Research, Academic Press, London. P. P. 357-367.
-EEckert, CG., (2001). La perte du sexe chez les plantes. Évol. Écol. Vol. 15, n° (4–6). P. P. 501–520.
Eva, A.N., (1980). Premiocene seagrass communities in the Caribbean, P. 6.
-FFabbri, F., Espino, F., Herrera, R., Moro, L., Haroun, R., Riera, R., González-Henriquez, N., Bergasa, O.,
Monterroso, O., de la Rosa, M.R., (2015). Trends of the seagrass Cymodocea nodosa (Magnoliophyta) in the
Canary Islands: population changes in the last two decades. Sci. Mar.Vol. 79. P. P. 7–13.
48
Cymodocea nodosa (Ucria) Ascherson on the Mediterranean coast of France. Aquat. Bot.Vol. 22. P. P. 277–289.
Ceccherelli, G., Piazzi, L., & Cinelli, F., (2000). Réponse de l'espèce non indigène Caulerpa racemosa
(Forsskål) J. Agardh à l'herbier indigène Posidonia oceanica (L.) Delile : effet de la densité des pousses et de
l'orientation des bords de prairies. - J. Exp. Mar. Biol. Écol. Vol. 243. P. P. 227-240.
Christianen, M.J.A., van Belzen, J., Herman, P.M.J., van Katwijk, M.M., Lamers, L.P.M., van Leent,
P.J.M., Bouma, T.J., (2013). Low-Canopy Seagrass Beds Still Provide Important Coastal Protection Services.
PLoS ONE 8, e62413. https://doi.org/10.1371/journal.pone.0062413
Cinelli F., Pardi G., Papi I., (1995). Plant biology. In : F. Cinelli, E. Fresi, C. Lorenzi & A. Mucedola (Eds),
“La Posidonia oceanica“. Rivista Marittima Publ. Vol. 12 (Suppl.). P. P. 17-27.
Costanza, R., de Groot, R., Sutton, P., van der Ploeg, S., Anderson, S.J., Kubiszewski, I., Farber, S.,
Turner, R.K., (2014). Changes in the global value of ecosystem services. Global Environmental Change. Vol.
26, 152–158. https://doi.org/10.1016/j.gloenvcha.2014.04.002
Cunha, A.H. and C.M. Duarte., (2005). Population age structure and rhizome growth of Cymodocea nodosa in
the Ria Formosa (southern Portugal). Mar. Biol.Vol. 146. P. P. 841–847.
Cunha, A.H. and C.M. Duarte., (2007). Biomass and leaf dynamics of Cymodocea nodosa in the Ria Formosa
lagoon, south Portugal. Bot. Mar. Vol. 50. P. P. 1–7.
-DDagnelie P., (1998a). Statistique théorique et appliquée. Statistique appliquée et descriptive et bases de
l’inférence statistique. Tome 1. De Boeck et Larcier, Paris, Bruxelles : Département De Boeck Université. P. P.
1-499.
Dagnelie P., (1998b). Statistique théorique et appliquée. Inférence statistique à une et à deux dimensions. Tome
2. De Boeck et Larcier, Paris, Bruxelles : Département De Boeck Université. P. P. 1-659.
de la Torre-Castro, M., Di Carlo, G., Jiddawi, N.S., (2014). Seagrass importance for a small-scale fishery in
the tropics: The need for seascape management. Marine Pollution Bulletin Vol. 83. P.P. 398–407.
https://doi.org/10.1016/j.marpolbul.2014.03.034
de la Torre-Castro, M., Rönnbäck, P., (2004). Links between humans and seagrasses—an example from
tropical
East
Africa.
Ocean
&
Coastal
Management.
Vol.
47.
P.
P.
361–387.
https://doi.org/10.1016/j.ocecoaman.2004.07.005
Den Hartog C., (1970). Seagrasses of the World. North-Holland Publishing Company, Amsterdam Dorenbosch
M, Grol MGG, Christianen MJA, Nagelkerken I, van der Velde G (2005) Indo-Pacificseagrass beds and
mangroves contribute to fish density and diversity on adjacent coral reefs. Mar Ecol Prog Ser. Vol. 302. P. P.
63–76.
Drew E. A., (1971). Botany. Underwater Science. An introduction to experiments by divers. Woods and Lithgoe
Drew E. A., JUPP B. P., (1976). Some aspects of the growth of Posidonia oceanica in Malta. Underwater
Drew, E.A., (1978). Factors affecting photosynthesis and its seasonal variation in the seagrasses Cymodocea
nodosa (Ucria) Ascher, and Posidonia oceanica (L.) Delile in the Mediterranean. J. Exp. Mar. Biol. Ecol.Vol. 31.
P. P. 173–194.
Duarte CM., (2002). The future of seagrass meadows. Environ Conserv. Vol. 29. P. P. 192–206.
Duarte, C.M. & Cebrián, J., (1996). The fate of marine autotrophic production. Limnology and Oceanography.
Vol. 41.
Duarte, C.M., and Kirkman, H., (2001). Methods for the measurement of seagrass abundance and depth
distribution. In FT Short and RG Coles Global Seagrass Research methods, Elsevier. P. P. 141-153.
Duarte, C.M., Chiscano, C.L., (1999). Seagrass biomass and production: a reassessment. Aquatic Botany 65.P.
P. 159–174. https://doi.org/10.1016/S0304-3770(99)00038-8
Duarte, C.M., Losada, I.J., Hendriks, I.E., Mazarrasa, I., Marbà, N., (2013). The role of coastal plant
communities for climate change mitigation and adaptation. Nature Clim Change 3. P.P. 961–968.
https://doi.org/10.1038/nclimate1970
Duarte, C.M., Middelburg, J., and Caraco, N., (2005). Major role of marine vegetation on the oceanic carbon
cycle. Biogeosciences. Vol. 2. P. P. 1-8.
Duarte, C.M., Middelburg, J.J., Caraco, N., (2005). Major role of marine vegetation on the oceanic carbon
cycle 9. edit. London : 1-59. Research, Academic Press, London. P. P. 357-367.
-EEckert, CG., (2001). La perte du sexe chez les plantes. Évol. Écol. Vol. 15, n° (4–6). P. P. 501–520.
Eva, A.N., (1980). Premiocene seagrass communities in the Caribbean, P. 6.
-FFabbri, F., Espino, F., Herrera, R., Moro, L., Haroun, R., Riera, R., González-Henriquez, N., Bergasa, O.,
Monterroso, O., de la Rosa, M.R., (2015). Trends of the seagrass Cymodocea nodosa (Magnoliophyta) in the
Canary Islands: population changes in the last two decades. Sci. Mar.Vol. 79. P. P. 7–13.
