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Secondary metabolities of seagrasses (Alismatales and
Potamogetonales; Alismatidae): Chemical diversity, bioactivity, and ecological
function. Phytochemistry. Vol 124, P.P. 5- 28.
Tsioli, S., Koutalianou, M., Gkafas, A, G., et al. (2022). Responses of the Mediterranean
seagrass Cymodocea nodosa to combined temperature and salinity stress at the
ionomic, transcriptomic, ultrastructural and photosynthetic levels. Vol 175, P.P.
105- 512.
Vasileios, P., Sotiris, O. (2017). Anthropogenic eutrophication affects the body size of
Cymodocea nodosa in the North Aegean Sea: A long-term, scale-based approach.
Marine Pollution Bulletin. Vol 134, P.P. 38- 48.
Verlaque, M. (1987). Relations entre Paracentrotus lividus (Lamarck) et le phytobenthos
de Méditerranée occidentale. « Colloque international sur Paracentrotus lividus et
les oursins comestibles », C.F Boudouresque edit., GIS Posidonie publ. Marseille,
P.P. 5-36.
Wilson, JB., Agnew, ADQ. (1992). Positive-Feedback Switches in Plant-Communities.
Advances in Botanical Research. Vol 23, P.P. 263- 336
Wittman, K.J., Mazzella, L., Fresi, E. (1981). Age specific patterns leaf growth: their
determination and importance epiphytic colonization in Posidonia oceanica (L.)
Delile. Report of the Proceedings of the International Commission for the
Exploration of Mediterranean Scientific Meetings. Vol 27, P.P. 189-19.
Wittmann, K.J. (1984). Temporal and morphological variations of growth in a natural stand
of Posidonia oceanica(L.) Delile. Marine ecologie. Vol 5., n°4, P.P. 301-316.
Zapata, O. (1979). McMillan, C. Phenolic acids in seagrasses. Aquatica Botanica. Vol 7,
P.P. 307- 317.
Zaprometov, M. N. (1993). Plants. Russ. Journal of Plant Physiology. Vol 40, P.796.
Zidorn, C. (2016).
Secondary metabolities of seagrasses (Alismatales and
Potamogetonales; Alismatidae): Chemical diversity, bioactivity, and ecological
function. Phytochemistry. Vol 124, P.P. 5- 28.
