Bibliographie
52
Cymodocea nodosa (Ucria) Ascherson in the Canary Islands. Aquat. Bot.Vol. 50. P. P. 171– 180.
Rogers, K., Macreadie, P., Kelleway, J., Saintilan, N., (2018). Blue carbon in coastal landscapes: a spatial
framework for assessment of stocks and additionality. Sustain. Sci. Vol.14, n°2. P. P. 453–467.
Ralph P. J., Dukaro M. J., Enriquez S., Collier C. J., Doblin M. A., (2007). Impact of light limitation on
seagrasses. Journal of Experimental Marine Biology and Ecology. Vol. 350. P. P. 176-193.
Rioux L. E., et Turgeon S. L., (2015). Seaweed carbohydrates. Seaweed Sustainability. P. P. 141-192.
-SSchramm, W. & Nienhuis, Ph., (1996). Végétation benthique marine. Changements récents et effets de
l'eutrophisation. Springer, New York. P. 470.
Sculthorpe, C.D., (1967). The Biology of Aquatic Vascular Plants. 610 S. London : Edward Arnold Ltd. 1967, £
66 s. net. Internationale Revue der gesamten Hydrobiologie und Hydrographie. Vol. 53. P. P. 353–354.
https://doi.org/10.1002/iroh.19680530207
Sellali B., (1996). La pollution par les hydrocarbures pétroliers en Méditerranée sud-occidentale : niveaux de
contamination de l’eau et du sédiment superficiel des régions littorales Centre et Ouest de l’Algérie. Thèse de
Magister, environnement marin. Alger : ISMAL. P. P. 1-118.
Sellali B., Hadj-Amar S., Boudjellal B., Chouikhi A., (1995). Polycyclic aromatic hydrocarbons (PAHS) in
the nearshore superficial sediment of Bou Ismaïl’s bay (Algeria). Rapp. Comm. int. Mer Médit. Vol. 34. P. P.
147-147.
Sfriso, A. and P.F. Ghetti., (1998). Seasonal variation in biomass, morphometric parameters and production of
seagrasses in the lagoon of Venice. Aquat. Bot.Vol. 61. P. P. 207–223.
Sghaier Y.R., Zakhama-Sraieb R. & Charfi Cheikhrouha F., (2011). Primary production and biomass in a
Cymodocea nodosa meadow in the Ghar El Melh lagoon, Tunisia. Botanica Marina. Vol. 54. P. P. 411- 418.
Shili A., Trabelsi E.B., Ben Maïz N., (2002). Benthic macrophyte communities in the Ghar El Melh Lagoon
(North Tunisia). Journal of Coastal Conservation. Vol 8. P. P. 135–140.
Short, F., Carruthers, T., Dennison, W., Waycott, M., (2007). Global seagrass distribution and diversity: A
bioregional model. Journal of Experimental Marine Biology and Ecology. Vol. 350. P. P. 3–20.
https://doi.org/10.1016/j.jembe.2007.06.012
Short, F.T., Polidoro, B., Livingstone, S.R., Carpenter, K.E., Bandeira, S., Bujang, J.S., Calumpong, H.P.,
Carruthers, T.J.B., Coles, R.G., Dennison, W.C., Erftemeijer, P.L.A., Fortes, M.D., Freeman, A.S., Jagtap,
T.G., Kamal, A.H.M., Kendrick, G.A., Kenworthy, W.J., Nafie, Y.A.L., Nasution, I.M., Orth, R.J.,
Prathep, A., Sanciangco, J.C., Tussenbroek, B. van, Vergara, S.G., Waycott, M., Zieman, J.C., (2011).
Extinction risk assessment of the world’s seagrass species. BIOL. CONSERV. Vol. 144. P. P. 1961–1971.
https://doi.org/10.1016/j.biocon.2011.04.010
Short, F.T., Short, C.A., Novak, A.B., (2018). Seagrasses. p. 73-91. In: The Wetland Book II: Distribution,
Description, and Conservation. Finlayson C., Milton G., Prentice R., Davidson N. (Eds). Springer, Dordrecht.
Stumm, W. Morgan, J.J., (1996). Aquatic Chemistry, Chemical Equilibria and Rates in Natural Waters, 3rd ed.
John Wiley & Sons, Inc., New York. P. 1022.
Sghaier, M., (2013). LES MAGNOLIOPHYTES MARINE DE LA TUNISIE : Distribution, croissance et
production primaire. Thèse de doctorat. Tunis : Université de Tunis EL Manar. P. 249.
-TTerrados J., (1993). Sexual reproduction and seed banks of Cymodocea nodosa (Ucria) Ascherson meadows on
the Southeast Mediterranean coast of Spain. Aquat. Bot., 46(3-4). P. P. 293-299
Terrados, J. and J.D. Rós., (1992). Growth and primary production of Cymodocea nodosa (Ucria) Ascherson
in a Mediterranean coastal lagoon: the Mar Menor (SE Spain). Aquat. Bot. 43. P. 6.
Thomas, S., (2014). Blue Carbon: knowledge gaps, critical issues, and novel approaches. Ecol. Econ. Vol. 107,
22–38.
Thompson, S.M. & Valiela, I., (1999). Effet de la charge d'azote sur l'activité enzymatique des macroalgues
dans les estuaires de la baie de Waquoit. Botanica Marina. Vol. 42. P. P. 519-529.
Turk R., Vukovic A., (2000). Status of marine vegetation in Slovenian coastal waters. Proceedings of the 1st
Mediterranean Symposium on Marine Vegetation, Ajaccio, 3–4 October 2000, CAR/ASP Publ. P. P. 191–193.
Tuya, F., Ribeiro-Leite, L., Arto-Cuesta, N., Coca, J., Haroun, R., Espino, F., (2014). Decadal changes in
the structure of Cymodocea nodosa seagrass meadows: natural vs. human influences. Estuar. Coast. Shelf Sci.
Vol. 137. P. P. 41–49.
-UUnsworth, R.K., McKenzie, L.J., Collier, C.J., Cullen-Unsworth, L.C., Duarte, C.M. et al., (2019). Global
challenges for seagrass conservation. Ambio, 48 (8). P. P. 801-815.
Unsworth, R.K.F., Cullen, L.C., (2010). Recognising the necessity for Indo-Pacific seagrass conservation.
Conservation Letters. vol. 3. P. P. 63–73. https://doi.org/10.1111/j.1755263X.2010.00101.x
-VValentine, J.F., Duffy, J.E., (2006). The Central Role of Grazing in Seagrass Ecology, in: LARKUM, A.W.D.,
52
Cymodocea nodosa (Ucria) Ascherson in the Canary Islands. Aquat. Bot.Vol. 50. P. P. 171– 180.
Rogers, K., Macreadie, P., Kelleway, J., Saintilan, N., (2018). Blue carbon in coastal landscapes: a spatial
framework for assessment of stocks and additionality. Sustain. Sci. Vol.14, n°2. P. P. 453–467.
Ralph P. J., Dukaro M. J., Enriquez S., Collier C. J., Doblin M. A., (2007). Impact of light limitation on
seagrasses. Journal of Experimental Marine Biology and Ecology. Vol. 350. P. P. 176-193.
Rioux L. E., et Turgeon S. L., (2015). Seaweed carbohydrates. Seaweed Sustainability. P. P. 141-192.
-SSchramm, W. & Nienhuis, Ph., (1996). Végétation benthique marine. Changements récents et effets de
l'eutrophisation. Springer, New York. P. 470.
Sculthorpe, C.D., (1967). The Biology of Aquatic Vascular Plants. 610 S. London : Edward Arnold Ltd. 1967, £
66 s. net. Internationale Revue der gesamten Hydrobiologie und Hydrographie. Vol. 53. P. P. 353–354.
https://doi.org/10.1002/iroh.19680530207
Sellali B., (1996). La pollution par les hydrocarbures pétroliers en Méditerranée sud-occidentale : niveaux de
contamination de l’eau et du sédiment superficiel des régions littorales Centre et Ouest de l’Algérie. Thèse de
Magister, environnement marin. Alger : ISMAL. P. P. 1-118.
Sellali B., Hadj-Amar S., Boudjellal B., Chouikhi A., (1995). Polycyclic aromatic hydrocarbons (PAHS) in
the nearshore superficial sediment of Bou Ismaïl’s bay (Algeria). Rapp. Comm. int. Mer Médit. Vol. 34. P. P.
147-147.
Sfriso, A. and P.F. Ghetti., (1998). Seasonal variation in biomass, morphometric parameters and production of
seagrasses in the lagoon of Venice. Aquat. Bot.Vol. 61. P. P. 207–223.
Sghaier Y.R., Zakhama-Sraieb R. & Charfi Cheikhrouha F., (2011). Primary production and biomass in a
Cymodocea nodosa meadow in the Ghar El Melh lagoon, Tunisia. Botanica Marina. Vol. 54. P. P. 411- 418.
Shili A., Trabelsi E.B., Ben Maïz N., (2002). Benthic macrophyte communities in the Ghar El Melh Lagoon
(North Tunisia). Journal of Coastal Conservation. Vol 8. P. P. 135–140.
Short, F., Carruthers, T., Dennison, W., Waycott, M., (2007). Global seagrass distribution and diversity: A
bioregional model. Journal of Experimental Marine Biology and Ecology. Vol. 350. P. P. 3–20.
https://doi.org/10.1016/j.jembe.2007.06.012
Short, F.T., Polidoro, B., Livingstone, S.R., Carpenter, K.E., Bandeira, S., Bujang, J.S., Calumpong, H.P.,
Carruthers, T.J.B., Coles, R.G., Dennison, W.C., Erftemeijer, P.L.A., Fortes, M.D., Freeman, A.S., Jagtap,
T.G., Kamal, A.H.M., Kendrick, G.A., Kenworthy, W.J., Nafie, Y.A.L., Nasution, I.M., Orth, R.J.,
Prathep, A., Sanciangco, J.C., Tussenbroek, B. van, Vergara, S.G., Waycott, M., Zieman, J.C., (2011).
Extinction risk assessment of the world’s seagrass species. BIOL. CONSERV. Vol. 144. P. P. 1961–1971.
https://doi.org/10.1016/j.biocon.2011.04.010
Short, F.T., Short, C.A., Novak, A.B., (2018). Seagrasses. p. 73-91. In: The Wetland Book II: Distribution,
Description, and Conservation. Finlayson C., Milton G., Prentice R., Davidson N. (Eds). Springer, Dordrecht.
Stumm, W. Morgan, J.J., (1996). Aquatic Chemistry, Chemical Equilibria and Rates in Natural Waters, 3rd ed.
John Wiley & Sons, Inc., New York. P. 1022.
Sghaier, M., (2013). LES MAGNOLIOPHYTES MARINE DE LA TUNISIE : Distribution, croissance et
production primaire. Thèse de doctorat. Tunis : Université de Tunis EL Manar. P. 249.
-TTerrados J., (1993). Sexual reproduction and seed banks of Cymodocea nodosa (Ucria) Ascherson meadows on
the Southeast Mediterranean coast of Spain. Aquat. Bot., 46(3-4). P. P. 293-299
Terrados, J. and J.D. Rós., (1992). Growth and primary production of Cymodocea nodosa (Ucria) Ascherson
in a Mediterranean coastal lagoon: the Mar Menor (SE Spain). Aquat. Bot. 43. P. 6.
Thomas, S., (2014). Blue Carbon: knowledge gaps, critical issues, and novel approaches. Ecol. Econ. Vol. 107,
22–38.
Thompson, S.M. & Valiela, I., (1999). Effet de la charge d'azote sur l'activité enzymatique des macroalgues
dans les estuaires de la baie de Waquoit. Botanica Marina. Vol. 42. P. P. 519-529.
Turk R., Vukovic A., (2000). Status of marine vegetation in Slovenian coastal waters. Proceedings of the 1st
Mediterranean Symposium on Marine Vegetation, Ajaccio, 3–4 October 2000, CAR/ASP Publ. P. P. 191–193.
Tuya, F., Ribeiro-Leite, L., Arto-Cuesta, N., Coca, J., Haroun, R., Espino, F., (2014). Decadal changes in
the structure of Cymodocea nodosa seagrass meadows: natural vs. human influences. Estuar. Coast. Shelf Sci.
Vol. 137. P. P. 41–49.
-UUnsworth, R.K., McKenzie, L.J., Collier, C.J., Cullen-Unsworth, L.C., Duarte, C.M. et al., (2019). Global
challenges for seagrass conservation. Ambio, 48 (8). P. P. 801-815.
Unsworth, R.K.F., Cullen, L.C., (2010). Recognising the necessity for Indo-Pacific seagrass conservation.
Conservation Letters. vol. 3. P. P. 63–73. https://doi.org/10.1111/j.1755263X.2010.00101.x
-VValentine, J.F., Duffy, J.E., (2006). The Central Role of Grazing in Seagrass Ecology, in: LARKUM, A.W.D.,
