Bioactivities, bioactive compounds and chemical constituents of mangrove plants

被引:302
作者
Bandaranayake W.M. [1 ]
机构
[1] Australian Inst. of Marine Science, MC, Townsville, QLD 4810
关键词
Chemical classes; Chemical structures; Mangal associates; Medicinal and traditional uses;
D O I
10.1023/A:1021397624349
中图分类号
学科分类号
摘要
This review article presents the traditional and medicinal uses, and examines recent investigations on the biological activities of extracts, and chemicals identified from mangroves and mangal associates. Metabolites identified from mangrove plants are classified according to 'chemical classes', and some of their structures are illustrated. The article also presents some of the functions of the chemicals present and attempt to emphasize and create an awareness of the great of potential mangroves and mangal associates possess as a source of novel agrochemicals, compounds of medicinal value, and a new source of many already known biologically active compounds.
引用
收藏
页码:421 / 452
页数:31
相关论文
共 199 条
[131]  
Marston A., Hostettmenn K., Plant molluscicides, Phytochemistry, 24, pp. 639-652, (1985)
[132]  
Masuda T., Yonemori S., Oyama Y., Takeda Y., Tanaka T., Andoh T., Shinohara A., Nakata M., Evaluation of the antioxidant activity of environmental plants: Activity of the leaf extracts from seashore plants, J. Agric. Food Chem., 47, pp. 1749-1754, (1999)
[133]  
Matos F.J.A., Gottlieb O.R., Otto R., Ollis W.D., Souza Andrade C.H., Chemistry of Brazilian Leguminosae. Flavonoids of Dalbergia ecastophylla, Boletin do INPA (Instituto Nacional de Pesquisas de Amazonia) Pesquisas Florestals, 10, (1970)
[134]  
McMillan C., Sulfated flavonoids and leaf morphology of the Halophila ovalis-H.minor complex (Hydrocharitaceae) in the Pacific Islands and Australia, Aquat. Bot., 16, pp. 337-347, (1983)
[135]  
Meow-Chan V., Choo-Loh L., n-Alkanes of the leaves of some mangrove plants. 1987, UNESCO Regional Seminar on the Chemistry of Mangrove Plants
[136]  
Miana G.A., Schmidt R., Hecker E., Shamma M., Moniot J.L., Kiamuddin M., 4-alpha-sapinine: A novel diterpene ester from Sapium indicum, Zentra, Natufforschung, 32, pp. 727-728, (1977)
[137]  
Milbrodt M., Konig W.A., Hausen B.M., 7-hydroxy-2,3,5,6-tetrahydro-3,6,9-trimethylnaphtho[1,8-B,C] pyran-4,8-dione from Thespesia populnea, Phytochemistry, 45, pp. 1523-1525, (1997)
[138]  
Miles D.H., Ly A.M., Chittavong V., De La Cruz A.A., Gomez E.D., Toxicants from mangrove plants, VI. Heritonin, a new piscicide from the mangrove plant Heritieria littoralis, J. Nat. Prod., 52, pp. 896-898, (1989)
[139]  
Miles D.H., Chittawong V., Lho D.S., Payne A.M., De La Cruz A.A., Gomez E.D., Weeks J.A., Atwood J.L., Toxicants from mangrove plants, VIII. Vallapin and vallapianin, novel sesquiterpene lactones from the mangrove plant Heritiera littoralis, J. Nat. Prod. (Lioydia), 54, pp. 286-289, (1991)
[140]  
Miles D.H., Tunsuwan K., Chittawong V., Hedin P.A., Kokpol U., Ni C.Z., Clardy J., Agrochemical activity and isolation of N- (bromophenyl)-2,2-diphenylacetanilide from the Thai plant Arundo donax, J. Nat. Prod., 56, pp. 1590-1593, (1993)