Biology Reference
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Mohamed, Z. A., Carmichael, W. W., and El-Sharouny, H. M. (1998) Activated carbon removal effi ciency of microcystins
in an aqueous cell extract of Microcystis aeruginosa and Oscillatoria tenuis strains isolated from Egyptian freshwaters.
Environ Toxicol 14: 197-201.
Mohamed, Z. A., Carmichael, W. W., and Hussein, A. A. (2003) Estimation of microcystins in the freshwater fi sh Oreochromis
niloticus in an Egyptian fi sh farm containing a Microcystis bloom. Environ Toxicol 18: 137-141.
Moikeha, S. N., and Chu, G. W. (1971) Dermatitis-producing alga Lyngbya majuscula Gomont in Hawaii. II. Biological properties
of the toxic factor. J Phycol 7: 8-13.
Molica, R., Onodera, H., Garcia, C., Rivas, M., Andrinolo, D., Nascimento, S., Meguro, H., Oshima, Y., Azevedo, S., and Lagos,
N. (2002) Toxins in the freshwater cyanobacterium Cylindrospermopsis raciborskii (Cyanophyceae) isolated from Tabocas
reservoir in Caruaru, Brazil, including demonstration of a new STX analogue. Phycologia 41: 606-611.
Moore, B. S., Ohtani, I., de Koning, C. B., Moore, R. E., and Carmichael, W. W. (1992) Biosynthesis of anatoxin-a(s). Origin of
the carbons. Tetrahedron Lett 33: 6595-6598.
Moore, R. E. (1977) Toxins from blue-green algae. BioScience 27: 797-802.
Moore, R. E. (1996) Cyclic peptides and depsipeptides from cyanobacteria: A review. J Ind Microbiol 16: 134-143.
Moore, R. E., Chen, J. L., Moore, B. S., Patterson, G. M. L., and Carmichael, W. W. (1991) Biosynthesis of microcystin-LR.
Origin of the carbons in the Adda and Masp units. J Am Chem Soc 113: 5083.
Moore, R. E., Ohtani, I., Moore, B. S., de Koning, C. B., Yoshida, W. Y., Runnegar, M. T., and Carmichael, W. W. (1993)
Cyanobacterial toxins. Gazzatta Chimica Italiana 123: 329-336.
Moreno, I. M., Pereira, P., Franca, S., and Camean, A. (2004) Toxic cyanobacteria strains isolated from blooms in the Guadiana
River (southwestern Spain). Biol Res 37: 405-417.
Morrison, K. F., Parkin, G., and Codd, G. A. (2006) Optimization of anabaenopeptin extraction from cyanobacteria and the
effect of methanol on laboratory manipulation. Peptides 27: 10-17.
Mouchet, P., and Bonnelye, V. (1998) Solving algae problems: French expertise and world-wide applications. J Water SRT -
Aqua 47: 125-141.
Mountfort, D. O., Holland, P., and Sprosen, J. (2005) Method for detecting classes of microcystins by combination of protein
phosphatase inhibition assay and ELISA: Comparison with LC-MS. Toxicon 45: 199-206.
Moustafa, A., Loram, J. E., Hackett, J. D., Andersen, O. M., Plumley, F. G., and Bhattacharya, D. (2009) Origin of STX biosynthetic
genes in cyanobacteria. PLoS ONE 4: e5758. doi: 10.1371/journal.pone.0005758
Mulligan, M. E., and Haselkorn, R. (1989) Nitrogen fi xation ( nif ) genes of the cyanobacterium Anabaena sp. strain PCC 7120:
The nifB - fdxN - nifS - nifU operon. J Biol Chem 264: 19200-19207.
Mynderse, J. S., Moore, R. E., Kashiwagi, M., and Norton, T. R. (1977) Antileukemia activity in the oscillatoriaceae: Isolation
of debromoaplysiatoxin from Lyngbya . Science 196: 538-540.
Nagata, S., Soutome, H., Tsutsumi, T., Hasegawa, A., Sekijima, M., Sugamata, M., Harada, K., Suganuma, M., and Ueno, Y.
(1995) Novel monoclonal antibodies against microcystin and their protective activity for hepatotoxicity. Nat Toxins 3:
78-86.
Nagle, D. G., Paul, V. J., and Roberts, M. A. (1996) Y paoamide, a new broadly acting feeding deterrent from the marine
cyanobacterium Lyngbya majuscula . Tetrahedron Lett 37: 6263-6266.
Namikoshi, M., and Rinehart, K. L. (1996) Bioactive compounds produced by cyanobacteria. J Ind Microbiol 17: 373-384.
Namikoshi, M., Rinehart, K. L., Sakai, R., Sivonen, K., and Carmichael, W. W. (1990) Structure of three new cyclic hepatotoxins
produced by the cyanobacterium (blue-green alga) Nostoc sp. strain 152. J Org Chem 55: 6135-6139.
Namikoshi, M., Rinehart, K. L., Sakai, R., Stotts, R. R., Dahlem, A. M., Beasley, V. R., Carmichael, W. W., and Evans, W. R.
(1992a) Identifi cation of 12 hepatotoxins from a Homer lake bloom of the cyanobacteria Microcystis aeruginosa , Microcystis
viridis , and Microcystis wesenbergii : Nine new microcystins. J Org Chem 57: 866-872.
Namikoshi, M., Sivonen, K., Evans, W. R., Carmichael, W. W., Rouhiainen, L., Luukkainen, R., and Rinehart, K. L. (1992b)
Structure of three new homotyrosine-containing microcystins and a new homophenylalanine variant from Anabaena
sp. strain 66. Chem Res Toxicol 5: 661-666.
Namikoshi, M., Sivonen, K., Evans, W. R., Carmichael, W. W., Sun, F., Rouhiainen, L., Luukkainen, R., and Rinehart, K. L.
(1992c) Two new L-serine variants of microcystin-LR and -RR from Anabaena sp. strain 202 A1 and 202 A2. Toxicon 30:
1457-1464.
Namikoshi, M., Sivonen, K., Evans, W. R., Sun, F., Carmichael, W. W., and Rinehart, K. L. (1992d) Isolation and structure of
microcystins from a cyanobacterial water bloom (Finland). Toxicon 30: 1473-1479.
Namikoshi, M., Choi, B. W., Sakai, R., Sun, F., Rinehart, K. L., Carmichael, W. W., Evans, W. R., Cruz, P., Munro, M. H. G.,
and Blunt, J. W. (1994) New nodularin: A general method for structure assignment. J Org Chem 59: 2349-2357.
Namikoshi, M., Sun, F., Choi, B. W., Rinehart, K. L., Carmichael, W. W., Evans, W. R., and Beasley, V. R. (1995). Seven more
microcystins from Homer lake cells: Application of the general method for structure assignement of peptides containing,-
dehydroamino acid unit(s). J Org Chem 60: 3671-3679.
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