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28: pp 1265–1274.
• Rajesh K.-M et Rajesh M. (2001)Sea weeds and their commercial importance. Aqua
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Textorii and Hypnea Musciformis on seed germination and productivity of some
vegetable crops. Universal Journal of Plant Science2(7): 115-120 pp.
• Redjem Y.-B., Ktari L. et al.(2013) Antibacterial and algicidal properties of some
brown seaweeds from northern coasts of Tunisia. Vie et milieu - Life and
environment, 63 (3/4): 127-133 pp.
• Rodrigues D., Alves C. et al.(2015) Antitumor and antimicrobial potential of
bromoditerpenes isolated from the red Alga, Sphaerococcus coronopifolius. Mar.
Drugs, 13: 713-726 pp.
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Appl. Environ. Biol. Sci., 6(1): 242-248 pp.
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pour l’amélioration des produits végétales cas de la tomate. Thèse de master.
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• Salvador. N., Garreta. G.-A. et al.(2007) Antimicrobial activity of Iberian
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68
compounds from berries. [En ligne]. [Page consultée le 26 novembre 2020].
Disponible sur le Web :https://pubmed.ncbi.nlm.nih.gov/11309059/.
• Rafiquzzaman S.-M., Ahmed R. et al.(2015) Improved methods for isolation of
carrageenan from Hypnea musciformis and its antioxidant activity. J. Appl. Phycol.
28: pp 1265–1274.
• Rajesh K.-M et Rajesh M. (2001)Sea weeds and their commercial importance. Aqua
International: 22-23 pp.
• Rao G.-N. et Chatterjee R. (2014) Effect of seaweed liquid fertilizer from Gracilaria
Textorii and Hypnea Musciformis on seed germination and productivity of some
vegetable crops. Universal Journal of Plant Science2(7): 115-120 pp.
• Redjem Y.-B., Ktari L. et al.(2013) Antibacterial and algicidal properties of some
brown seaweeds from northern coasts of Tunisia. Vie et milieu - Life and
environment, 63 (3/4): 127-133 pp.
• Rodrigues D., Alves C. et al.(2015) Antitumor and antimicrobial potential of
bromoditerpenes isolated from the red Alga, Sphaerococcus coronopifolius. Mar.
Drugs, 13: 713-726 pp.
• Riahi R.-C., Tarhouni S. et Kharrat R. (2011) Criblage de l'effet anti-inflammatoire
et analgesique des algues marines de la Mer Mediterranee. Arch Inst Pasteur, Tunis.
88 (1-4): 19-28 pp.
• Sahnouni F., Benattouche Z. et al. (2016). Antimicrobial activity of two marine
algae Ulva rigida and Ulva intestinalis collected from Arzew gulf (Western Algeria).J.
Appl. Environ. Biol. Sci., 6(1): 242-248 pp.
• Sakhouna. D. (2016) Utilisation des bioengrais à base de quelques algues marines
pour l’amélioration des produits végétales cas de la tomate. Thèse de master.
Agriculture. Algérie :Université de Mostaganem. 62 p.
• Salvador. N., Garreta. G.-A. et al.(2007) Antimicrobial activity of Iberian
macroalgae. Spain. SCI. MAR., 71(1) : 101-113 pp.
• Sayah. A. et Boukhari. T. (2011) Etude de la flore de la region Ouest d’Alger :
Taxonomie et Valorisation. Mémoire d’Ingénieurat. Algologie. Algérie: ENSSMAL.
85 p.
• Selvam G.-G. et Sivakumar K. (2015) Phycosynthesis of silver nanoparticles and
photocatalytic degradation of methyl orange dye using silver (Ag) nanoparticles
68
