Bibliographie
50
Angiosperms (Seagrasses) and Hydrophily. Systematic Botany. Vol. 22. P. 443. https://doi.org/10.2307/2419820
Lipkin Y., Beer S., Zakai D., (2003). The seagrasses of the eastern Mediterranean and Red Sea. In: E.P. Green
& F.T. Short (Eds), “World atlas of seagrasses”, University of California Press, Berkeley. P. P. 65–73.
-MMacreadie, P.I., Baird, M.E., Trevathan-Tackett, S.M., Larkum, A.W.D., Ralph, P.J., (2014). Quantifying
and modelling the carbon sequestration capacity of seagrass meadows - a critical assessment. Mar. Pollut. Bull.
Vol. 83, n ° 2. P. P. 430–439.
Macreadie, P.I., Nielsen, D.A., Kelleway, J.J., Atwood, T.B., Seymour, J.R., Petrou, K., Connolly, R.M.,
Thomson, A.C.G., Trevathan-Tackett, S.M., Ralph, P.J., (2017). Can we manage coastal ecosystems to
sequester more blue Carbon? Front. Ecol. Environ. Vol. 15 n° 4. P. P. 206–213.
Madsen, T.V., Warncke, E., (1983). Velocities of currents around and within submerged aquatic vegetation.
Archiv fur hydrobiology.
Malea, P., (1993). Bioaccumulation of aluminium in the seagrasses Cymodocea nodosa (Ucria) Aschers and
Posidonia oceanica (L) Delile and in macroalgae of the Gulf of Antikyra (Greece). Botanica Marina. Vol. 36. P.
P. 423-431.
Malea, P., Haritonidis, S., (1995). Local distribution and seasonal variation of Fe, Pb, Zn, Cu, Cd, Na, K, Ca
and Mg concentrations in the seagrass Cymodocea nodosa (Ucria) Aschers in the Antikyra Gulf (Greece)
P.S.Z.N.I: Marine Ecology. Vol.16. P. P. 41-56.
Marbà, N., Duarte, C.M., (2001). Growth and sediment space occupation by seagrass Cymodocea nodosa
roots. Marine Ecology Progress Series. Vol. 224. P. P. 291–298.
Marbà, N., Krause-Jensen, D., Alcoverro, T., Birk, S., Pedersen, A., Neto, JM, Orfanidis, S., Garmendia,
JM, Muxika, I., Borja, A., Dencheva, K., Duarte, CM., (2013). Diversité des indicateurs des herbiers marins
européens : modèles au sein et entre les régions. Hydrobiologie. P. P. 1–14.
Marbà, N., Krause-Jensen, D., Alcoverro, T., Birk, S., Pedersen, A., Neto, J.M., Orfanidis, S., Garmendia,
J.M., Muxika, I., Borja, A., Dencheva, K., Duarte, C.M., (2013). Diversity of European seagrass indicators:
patterns within and across regions. Hydrobiologia. P. P. 1–14.
Mazzella L., (1990). Il ruolo dei sistemi a fanerogame marine nell'economia delle communità costiere ed i
problemi causati dal distrubo antropico. In "Inquinamento ed ecosistemi acquatici", Atti Congresso Ordine
Nazionale dei Biologi (ed. S. Dumontet & E. Landi). P. P. 103-116.
Mazzella, L., M.B. Scipione, M.C. Gambi, M.C. Buia, M. Lorenti, V. Zupo and G. Cancemi., (1993). The
mediterranean seagrass- es Posidonia oceanica and Cymodocea nodosa. A comparative overview. MedCoast
conference, Ozhan ed. Vol. 1. P. P. 103-116.
Mcleod, E., Chmura, G.L., Bouillon, S., Salm, R., Björk, M., Duarte, C.M., Lovelock, C.E., Schlesinger,
W.H., Silliman, B.R., (2011). A blueprint for blue carbon: toward an improved understanding of the role of
vegetated coastal habitats in sequestering CO 2. Frontiers in Ecology and the Environment. Vol. 9. P. P. 552–
560. https://doi.org/10.1890/110004
Molinier M. & Picard J., (1952). Etudes biologiques sur les herbiers de Phanérogames marines à l’Ouest
d’Alger. Bull. Stat. Aquic. Et Pêche, Castiglione. Vol. 4 (n.s). P. P. 335- 362.
Montefalcone M., Albertelli G., Morri C., Bianchi C.N., (2007). Urban seagrass: status of Posidonia oceanica
facing the Genoa city waterfront (Italy) and implications for management. Marine Pollution Bulletin. Vol 54. P.
P. 206–213.
Mostafa, H.M., (1996). Preliminary observations of the seagrass Cymodoca nodosa (Ucria) Ascherson in the
Mediterranean waters of Alexandria, Egypt. Bull. Nat. Inst. Oceanogr. Fish. Vol. 22. P. P. 19–28.
Mukai, H., (1993). Biogeography of the tropical seagrasses in the western Pacific. Mar. Freshwater Res.Vol. 44.
P. P. 1–17. https://doi.org/10.1071/mf9930001
-NNienhuis, P.H., Coosen, J., Kiswara, W., (1989). Community structure and biomass distribution of seagrasses
and macrofauna in the flores sea, Indonesia. Netherlands Journal of Sea Research. Vol. 23. P. P. 197–214.
https://doi.org/10.1016/0077-7579(89)90014-8
-OOliva, S., Mascaró, O., Llagostera, I., Pérez, M., Romero, J., (2012). Selection of metrics based on the
seagrass Cymodocea nodosa and development of a biotic index (CYMOX) for assessing ecological status of
coastal and transitional waters. Estuar. Coast. Shelf Sci.Vol. 114. P. P. 7–17.
Olsen, J.L., Stam, W.T., Coyer, J.A., Reusch, T.B.H., Billingham, M., Boström, C., Calvert, E., Christie,
H., Granger, S., Lumière, R.L., Milchakova, N., Secq, M.-P.O., Procaccini, G., Sanjabi, B., Serrão, E.,
Veldsink, J., Widdicombe, S., Wyllie‐Echeverria, S., (2004). North Atlantic phylogeography and large-scale
population differentiation of the seagrass Zostera marina L. Molecular Ecology.Vol. 13. P. P. 1923–1941.
Ondiviela, B., Losada, I.J., Lara, J.L., Maza, M., Galván, C., Bouma, T.J., van Belzen, J., (2014). The role
of seagrasses in coastal protection in a changing climate. Coastal Engineering.Vol. 87. P. P. 158–168.
50
Angiosperms (Seagrasses) and Hydrophily. Systematic Botany. Vol. 22. P. 443. https://doi.org/10.2307/2419820
Lipkin Y., Beer S., Zakai D., (2003). The seagrasses of the eastern Mediterranean and Red Sea. In: E.P. Green
& F.T. Short (Eds), “World atlas of seagrasses”, University of California Press, Berkeley. P. P. 65–73.
-MMacreadie, P.I., Baird, M.E., Trevathan-Tackett, S.M., Larkum, A.W.D., Ralph, P.J., (2014). Quantifying
and modelling the carbon sequestration capacity of seagrass meadows - a critical assessment. Mar. Pollut. Bull.
Vol. 83, n ° 2. P. P. 430–439.
Macreadie, P.I., Nielsen, D.A., Kelleway, J.J., Atwood, T.B., Seymour, J.R., Petrou, K., Connolly, R.M.,
Thomson, A.C.G., Trevathan-Tackett, S.M., Ralph, P.J., (2017). Can we manage coastal ecosystems to
sequester more blue Carbon? Front. Ecol. Environ. Vol. 15 n° 4. P. P. 206–213.
Madsen, T.V., Warncke, E., (1983). Velocities of currents around and within submerged aquatic vegetation.
Archiv fur hydrobiology.
Malea, P., (1993). Bioaccumulation of aluminium in the seagrasses Cymodocea nodosa (Ucria) Aschers and
Posidonia oceanica (L) Delile and in macroalgae of the Gulf of Antikyra (Greece). Botanica Marina. Vol. 36. P.
P. 423-431.
Malea, P., Haritonidis, S., (1995). Local distribution and seasonal variation of Fe, Pb, Zn, Cu, Cd, Na, K, Ca
and Mg concentrations in the seagrass Cymodocea nodosa (Ucria) Aschers in the Antikyra Gulf (Greece)
P.S.Z.N.I: Marine Ecology. Vol.16. P. P. 41-56.
Marbà, N., Duarte, C.M., (2001). Growth and sediment space occupation by seagrass Cymodocea nodosa
roots. Marine Ecology Progress Series. Vol. 224. P. P. 291–298.
Marbà, N., Krause-Jensen, D., Alcoverro, T., Birk, S., Pedersen, A., Neto, JM, Orfanidis, S., Garmendia,
JM, Muxika, I., Borja, A., Dencheva, K., Duarte, CM., (2013). Diversité des indicateurs des herbiers marins
européens : modèles au sein et entre les régions. Hydrobiologie. P. P. 1–14.
Marbà, N., Krause-Jensen, D., Alcoverro, T., Birk, S., Pedersen, A., Neto, J.M., Orfanidis, S., Garmendia,
J.M., Muxika, I., Borja, A., Dencheva, K., Duarte, C.M., (2013). Diversity of European seagrass indicators:
patterns within and across regions. Hydrobiologia. P. P. 1–14.
Mazzella L., (1990). Il ruolo dei sistemi a fanerogame marine nell'economia delle communità costiere ed i
problemi causati dal distrubo antropico. In "Inquinamento ed ecosistemi acquatici", Atti Congresso Ordine
Nazionale dei Biologi (ed. S. Dumontet & E. Landi). P. P. 103-116.
Mazzella, L., M.B. Scipione, M.C. Gambi, M.C. Buia, M. Lorenti, V. Zupo and G. Cancemi., (1993). The
mediterranean seagrass- es Posidonia oceanica and Cymodocea nodosa. A comparative overview. MedCoast
conference, Ozhan ed. Vol. 1. P. P. 103-116.
Mcleod, E., Chmura, G.L., Bouillon, S., Salm, R., Björk, M., Duarte, C.M., Lovelock, C.E., Schlesinger,
W.H., Silliman, B.R., (2011). A blueprint for blue carbon: toward an improved understanding of the role of
vegetated coastal habitats in sequestering CO 2. Frontiers in Ecology and the Environment. Vol. 9. P. P. 552–
560. https://doi.org/10.1890/110004
Molinier M. & Picard J., (1952). Etudes biologiques sur les herbiers de Phanérogames marines à l’Ouest
d’Alger. Bull. Stat. Aquic. Et Pêche, Castiglione. Vol. 4 (n.s). P. P. 335- 362.
Montefalcone M., Albertelli G., Morri C., Bianchi C.N., (2007). Urban seagrass: status of Posidonia oceanica
facing the Genoa city waterfront (Italy) and implications for management. Marine Pollution Bulletin. Vol 54. P.
P. 206–213.
Mostafa, H.M., (1996). Preliminary observations of the seagrass Cymodoca nodosa (Ucria) Ascherson in the
Mediterranean waters of Alexandria, Egypt. Bull. Nat. Inst. Oceanogr. Fish. Vol. 22. P. P. 19–28.
Mukai, H., (1993). Biogeography of the tropical seagrasses in the western Pacific. Mar. Freshwater Res.Vol. 44.
P. P. 1–17. https://doi.org/10.1071/mf9930001
-NNienhuis, P.H., Coosen, J., Kiswara, W., (1989). Community structure and biomass distribution of seagrasses
and macrofauna in the flores sea, Indonesia. Netherlands Journal of Sea Research. Vol. 23. P. P. 197–214.
https://doi.org/10.1016/0077-7579(89)90014-8
-OOliva, S., Mascaró, O., Llagostera, I., Pérez, M., Romero, J., (2012). Selection of metrics based on the
seagrass Cymodocea nodosa and development of a biotic index (CYMOX) for assessing ecological status of
coastal and transitional waters. Estuar. Coast. Shelf Sci.Vol. 114. P. P. 7–17.
Olsen, J.L., Stam, W.T., Coyer, J.A., Reusch, T.B.H., Billingham, M., Boström, C., Calvert, E., Christie,
H., Granger, S., Lumière, R.L., Milchakova, N., Secq, M.-P.O., Procaccini, G., Sanjabi, B., Serrão, E.,
Veldsink, J., Widdicombe, S., Wyllie‐Echeverria, S., (2004). North Atlantic phylogeography and large-scale
population differentiation of the seagrass Zostera marina L. Molecular Ecology.Vol. 13. P. P. 1923–1941.
Ondiviela, B., Losada, I.J., Lara, J.L., Maza, M., Galván, C., Bouma, T.J., van Belzen, J., (2014). The role
of seagrasses in coastal protection in a changing climate. Coastal Engineering.Vol. 87. P. P. 158–168.
