Biotechnology
Bibliographic references
Adamczeski M., Reed A.R., Crews R, 1995. New and known diketopiperazines from the Caribbean sponge Calyx cf. podatypa. J. Nat.
Procl., 58, 201-208.
Amman R., Springer N., Ludwig W., Gërtz H.D., Schleifer K.H.,
1991. Identification in situ and phylogeny of uncultured bacterial
endosymbionts. Nature, 351, 161-164.
Batrakov S.G., Nikitin D.I., 1996. Lipid composition of the phosphatidylcholine-producing bacterium Hyphomicrobium vulgare NP160. Biochim. Biophys. Acta, 1302, 129-137.
Bultel-Poncé V., Debitus C., Blond A., Cerceau C., Guyot M., 1997.
Lutoside: an acyl-1 -(acyl-6’-mannobiosyl)-3-glycerol isolated from
the sponge-associated bacterium Micrococcus luteus. Tetrahedron Lett.,
38, 5805-5808.
Bultel-Poncé V., Debitus C., BergéJ.-P, Cerceau C., Guyot M., 1998.
Metabolites trom the sponge-associated bacterium Micrococcus luteus.
J. Mar. BiotechnoL, 6, 3 I 7-321.
Bultel-Poncé V, Debitus C., Bergé J.-P, NicolasJ.-L., Guyot M., 1999.
Metabolites from the sponge-associated bacterium Pseudomonas sp.
J. Mar. Biotechnol., (in press).
Carté B., Faulkner D.J., 1 981. Polybrominated diphenyl ethers from
Dysidea herhacea, Dysidea chlorea and Phyllospongia foliascens. Tetrahedron, 37, 2335-2339.
Elyakov G.B., Kuznetsova T, Mikhailov V.V., Maltsev II, Voinov V.G.,
Fedoreyev S.A., 1991- Brominated diphenyl ethers from marine
bacterium associated with the sponge Dysidea sp. Experientia, 47,
632-633.
Fenical W., 199.3. Chemical studies of marine bacteria: developing a
new resource. Chem. Rev., 93, 1673-1683.
Fu X., Schmitz F.J., Govindan M., Abbas S.A., Hanson K.M., Horton P.A., Crews P, Laney M., Schatzman R.C., 1995. Enzyme
inhibitors, new and known polybrominated phenols and diphenyl
ethers from four Indo-Pacific Dysidea sponges. J. Nat. Prod., 58,
1384-1391.
Hildebrand J.G., Law J.H., 1964. Fatty acid distribution in bacterial
phospholipids. The specificity of the cyclopropane synthetase
reaction. Biochemistry, 3, 1304-1308.
Imamura N., Nishijima M., Adachi K., Sano H., 1993. Novel antimycin
antibiotics, urauchimycins A and B produced by marine actinomycete. J. Antibiot., 46, 241-246.
Jansen P.R., Fenical W., 1994. Strategies for the discovery of secondary
metabolites from marine bacteria: ecological perspectives. Ann.
Rev. Microbiol., 48, 559-584.
201
Bibliographic references
Adamczeski M., Reed A.R., Crews R, 1995. New and known diketopiperazines from the Caribbean sponge Calyx cf. podatypa. J. Nat.
Procl., 58, 201-208.
Amman R., Springer N., Ludwig W., Gërtz H.D., Schleifer K.H.,
1991. Identification in situ and phylogeny of uncultured bacterial
endosymbionts. Nature, 351, 161-164.
Batrakov S.G., Nikitin D.I., 1996. Lipid composition of the phosphatidylcholine-producing bacterium Hyphomicrobium vulgare NP160. Biochim. Biophys. Acta, 1302, 129-137.
Bultel-Poncé V., Debitus C., Blond A., Cerceau C., Guyot M., 1997.
Lutoside: an acyl-1 -(acyl-6’-mannobiosyl)-3-glycerol isolated from
the sponge-associated bacterium Micrococcus luteus. Tetrahedron Lett.,
38, 5805-5808.
Bultel-Poncé V., Debitus C., BergéJ.-P, Cerceau C., Guyot M., 1998.
Metabolites trom the sponge-associated bacterium Micrococcus luteus.
J. Mar. BiotechnoL, 6, 3 I 7-321.
Bultel-Poncé V, Debitus C., Bergé J.-P, NicolasJ.-L., Guyot M., 1999.
Metabolites from the sponge-associated bacterium Pseudomonas sp.
J. Mar. Biotechnol., (in press).
Carté B., Faulkner D.J., 1 981. Polybrominated diphenyl ethers from
Dysidea herhacea, Dysidea chlorea and Phyllospongia foliascens. Tetrahedron, 37, 2335-2339.
Elyakov G.B., Kuznetsova T, Mikhailov V.V., Maltsev II, Voinov V.G.,
Fedoreyev S.A., 1991- Brominated diphenyl ethers from marine
bacterium associated with the sponge Dysidea sp. Experientia, 47,
632-633.
Fenical W., 199.3. Chemical studies of marine bacteria: developing a
new resource. Chem. Rev., 93, 1673-1683.
Fu X., Schmitz F.J., Govindan M., Abbas S.A., Hanson K.M., Horton P.A., Crews P, Laney M., Schatzman R.C., 1995. Enzyme
inhibitors, new and known polybrominated phenols and diphenyl
ethers from four Indo-Pacific Dysidea sponges. J. Nat. Prod., 58,
1384-1391.
Hildebrand J.G., Law J.H., 1964. Fatty acid distribution in bacterial
phospholipids. The specificity of the cyclopropane synthetase
reaction. Biochemistry, 3, 1304-1308.
Imamura N., Nishijima M., Adachi K., Sano H., 1993. Novel antimycin
antibiotics, urauchimycins A and B produced by marine actinomycete. J. Antibiot., 46, 241-246.
Jansen P.R., Fenical W., 1994. Strategies for the discovery of secondary
metabolites from marine bacteria: ecological perspectives. Ann.
Rev. Microbiol., 48, 559-584.
201
