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Marine macroalgae

Hara 1, T Sakurai (1998) Isolation and characterization of vanadium bromoperoxidase from a marine macroalga iicHowia stolonifera. J Inorg Chem 72 23-28. [Pg.139]

Handbook on the Toxicology of Metals. Second edition. Volume II Specific Metals. Elsevier, New York. Abalde, J., A. Cid, S. Reisiz, E. Torres, and C. Herrero. 1995. Response of the marine macroalga Dunaliella tertiolecta (Chlorophycea) to copper toxicity in short time experiments. Bull. Environ. Contam. Toxicol. 54 317-324. [Pg.215]

Thursby, G.B. and R.L. Steele. 1984. Toxicity of arsenite and arsenate to the marine macroalgae Champia parvula (Rhodophyta). Environ. Toxicol. Chem. 3 391-397. [Pg.1541]

Chemical defenses of marine macroalgae have been extensively studied during the past 20 years (Paul and Puglisi 2004), ranging from species collected in Antarctic polar waters (e.g., Amsler et al. 2005 see Chap. 4) to those from the... [Pg.29]

Van Alstyne KL, Paul VJ (1990) The biogeography of polyphenolic compounds in marine macroalgae - temperate brown algal defenses deter feeding by tropical herbivorous fishes. Ooecologia 84 158-163... [Pg.55]

Laturnus F (2001) Marine macroalgae in polar regions as natural sources for volatile organohalo-gens. Environ Sci Pollut Res 8 103-108... [Pg.102]

New Perspectives for Addressing Patterns of Secondary Metabolites in Marine Macroalgae... [Pg.121]

Van Alstyne KL, Wolfe GV, Freidenburg TL, Neill A, Hicken C (2001b) Activated defense systems in marine macroalgae evidence for an ecological role for DMSP cleavage. Mar Ecol Prog Ser 213 53-65... [Pg.145]

The criteria for inclusion of studies in this summary have been as follows (1) use of marine macroalgae as model organisms, and (2) explicit tests of any of the described defense theories (ODM, CNBM, or GDBM) either through observations or through manipulative experiments. We have not included studies that only measure variation in secondary metabolites in different seaweed parts or after different treatments, unless they have specifically mentioned any of the models or hypotheses derived from the models in the introductory part of the paper. Therefore, the summary presented here does not represent an exhaustive review of all data from algal studies that are relevant for defense theories and algal chemical defenses. [Pg.151]

Karsten U, Franklin LA, Liming K, Wiencke C (1998) Natural ultraviolet radiation and photosyn-thetically active radiation induce formation of mycosporine-like amino acids in the marine macroalga Chondrus crispus (Rhodophyta). Planta 205 257-262 Karsten U, Bischof K, Hanelt D, Tug H, Wiencke C (1999) The effect of ultraviolet radiation on photosynthesis and ultraviolet-absorbing substances in the endemic Arctic macroalga Devaleraea ramentacea (Rhodophyta). Physiol Plant 105 58-66 Kessler A, Baldwin IT (2002) Plant responses to insect herbivory the emerging molecular analysis. Ann Rev Plant Biol 53 299-328... [Pg.169]

There are only a few examples of intraindividual and temporal variation in DMSP concentrations in marine macroalgae. In Ulva lactuca, tissues at the base of... [Pg.176]

Several papers have commented that DMSP may function as a methyl donor (Challenger and Simpson 1948 Dubnoff and Borsook 1948 Visscher et al. 1994 Marc et al. 1995 Kirst 1996), but the importance of this process in marine macroalgae is not known. Marine bacteria can demethylate DMSP to methanethiol via 3-methiolpropionate or following the cleavage of DMSP into DMS and acrylate (Kiene and Taylor 1988 Taylor and Gilchrist 1991 Gonzalez et al. 1999) however, the fate of the methyl groups was not determined in these studies. [Pg.178]

Dacey JWH, Wakeham SG (1986) Oceanic dimethylsulfide production during zooplankton grazing on phytoplankton. Science 233 1314-1316 Davison IR, Pearson GA (1996) Stress tolerance in intertidal seaweeds. J Phycol 32 197-211 De Souza MP, Yoch DC (1996) Dimethylsulfoniopropionate lyase from the marine macroalga Ulva curvata purification and characterization of the enzyme. Planta 199 433—138 Dicke M, Agrawal AA, Bruin J (2003) Plants talk but are they deaf Trends Plant Sci 9 403-105... [Pg.189]

Dummermuth A, Karsten U, Fisch K, Konig G, Wiencke C (2003) Responses of marine macroalgae to hydrogen-peroxide stress. J Exp Mar Biol Ecol 289 103-121 Edwards DM, Reed RH, Chudek JA, Foster R, Stewart WDP (1987) Organic solute accumulation in osmotically-stressed Enteromorpha intestinalis. Mar Biol 95 583-592 Edwards DM, Reed RH, Stewart WDP (1988) Osmoacclimation in Enteromorpha intestinalis. ... [Pg.190]

Karsten U, Kuck K, Daniel C, Wiencke C, Kirst GO (1994) A method for complete determination of dimethylsulfoniopropionate (DMSP) in marine macroalgae for different geographical regions. Phycologia 33 171-176... [Pg.190]

Paul VJ, Van Alstyne KL (1992) Activation of chemical defenses in the tropical marine algae Halimeda spp. J Exp Mar Biol Ecol 160 191-203 Reed RH (1983) Measurement and osmotic significance of beta-dimethylsulfoniopiopionate in marine macroalgae. Mar Biol Lett 4 173-181... [Pg.192]

Steinke M, Kirst GO (1996) Enzymatic cleavage of dimethylsulfoniopropionate (DMSP) in cell-free extracts of the marine macroalga Enteromorpha clathrata (Roth) Grev. (U1 vales, Chlorophyta). J Exp Mar Biol Ecol 201 73-85... [Pg.193]

Van Alstyne KL, Puglisi MP (2007) DMSP in marine macroalgae and macroinvertebrates distribution, function, and ecological impacts. Aquat Sci (in press)... [Pg.194]

Laturnus F, Svensson T, Wiencke C, Oberg G (2004) Ultraviolet radiation affects emission of ozone-depleting substances by marine macroalgae results from a laboratory incubation study. Environ Sci Technol 38 6605-6609... [Pg.268]

Aguilera J, Dummermuth A, Karsten U, Schriek R, Wiencke C (2002) Enzymatic defenses against photooxidative stress induced by ultraviolet radiation in Arctic marine macroalgae. Polar Biol 25 432—441... [Pg.291]

Bischof K, Hanelt D, Wiencke C (2000) Effects of ultraviolet radiation on photosynthesis and related enzyme reactions of marine macroalgae. Planta 211 555-562... [Pg.291]


See other pages where Marine macroalgae is mentioned: [Pg.45]    [Pg.204]    [Pg.193]    [Pg.686]    [Pg.686]    [Pg.686]    [Pg.27]    [Pg.30]    [Pg.42]    [Pg.48]    [Pg.55]    [Pg.74]    [Pg.94]    [Pg.100]    [Pg.152]    [Pg.152]    [Pg.176]    [Pg.176]    [Pg.177]    [Pg.182]    [Pg.686]    [Pg.686]   
See also in sourсe #XX -- [ Pg.8 , Pg.918 , Pg.937 ]




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