ABRAM J.W, NEDWELL D.B., 1978. Inhibition of methanogenesis by sulphate reducing bacteria competiting for
transferred hydrogen. Arch. Microbiol; 117 : 89-92.
ATKINSON L.P., RICHARDS F.A., 1967. The occurence and distribution of methane in the marine environment.
Deep Sea Res. 14:673-684.
BRYANT M.P., 1976. The microbiology of anaerobic degradation and methanogenesis with special reference to
sewage. Microbial Energy conversion , Seminar UNITAR Gottingen 4-8 oct. 1976, pp. 107-117.
BRYANT M.P., 1979. Microbial methane production : theoretical aspects. J. anim. Sci. 48: 193-201.
CHEN M., WOLIN M.J., 1977. Influence of CPU production by Methanobacterium ruminantium on the
fermentation of glucose and lactate by Selenomonas ruminantium.Appl. environ. Microbiol. 34: 756-759.
HUNGATE R.E., 1969. A roll tube method for cultivation of strict anaerobes. Methods in Microbiology Eds
Norris and Ribbon, Academic Press Inc. , London, 3B : 117-132.
KING G.M., WIEBE W.J., 1980. Regulation of sulfate concentrations and methanogenesis in salt marsh soils.
Estuarine Coast. Mar. Sci. 10:215-223.
KING G.M., 1984. Utilization of hydrogen, acetate, and “noncompetitive” substrates by methanogenic bacteria
in marine sediments. Geomicrobiol. J. 3:275-306.
KRISTJANSSON J.K., SCHONHEIT P., THAUER R.K., 1982. Different Ks values for hydrogen of methanogenic
bacteria and sulfate reducing bacteria : an explanation for the apparent inhibition of methanogenesis by sulfate.
Arch. Microbiol. 131: 278-282.
LANG E„ LANG H., 1972. Spezifishe Farbreaktion zum direkten Nachweis der Ameisensaure. J. Anal. Chem.
260:8-10.
LOVLEY D.R., DWYER D.F., KLUG M.J., 1982. Kinetic analysis of competition between sulfate reducers and
methanogens for hydrogen in sediments. Appl. environ. Microbiol. 43 : 1373-1379.
MARTY D., 1981. Distribution of different anaerobic bacteria in Arabian Sea sediments. Mar. Biol. 63:277-281.
MARTY D., 1983. Cellulolyse et méthanogénèse dans les sédiments marins. Thèse d'Etat. Université de Provence,
Marseille.
NEDWELL D.B., BANAT I.M., 1981. Hydrogen as an electron donnor for sulfate reducing bacteria in slurries of
salt marsh sediment. Microbiol. Ecol. 7: 305-313.
Ng T.K BEN BASSAT A., ZEIKUS J.G., 1981. Ethanol production by thermophilic bacteria : fermentation of
cellulosic substrates by cocultures of Clostridium Thermocellum and Clostridium thermohydrosulfuricum.
Appl. environ. Microbiol. 41 : 1337-1343.
SENIOR E LINDSTROM E.B., BANAT I.M., NEDWELL D.B., 1982. Sulfate reduction and methanogenesis in the
sediment of a saltmarsh on the East Coast of the United Kingdom. Appl. environ. Microbiol. 43 : 987-996.
WEIMER P.J., ZEIKUS J.G., 1977. Fermentation of cellulose and cellobiose by Clostridium thermocellum in
absence and presence of Methanobacterium thermoautotrophicum. Appl. environ. Microbiol. 33 :289-297.
WINFREY M. R., Zeikus J.G., 1979. Anaerobic metabolism of immediate methane precursors in Lake Mendota.
Appl. environ. Microbiol. 37:244-253.
WINFREY MR., MARTY D., BIANCHI A., WARD D.M., 1981. Vertical distribution of sulfate reduction, methane
production, and bacteria in marine sediments. Geomicrobiol. J. 2: 341-362.
WINFREY M R., WARD D.M., 1983. Substrates for sulfate reduction and methane production in intertidal
sediments. Appl. environ. Microbiol. 45: 193-199.
WOLFE R.S. HIGGINS I.J., 1979. Microbial biochemistry of methane. A study in contrasts. Microbial Biochem
21:267-300.
ZEHNDER A.J.B., 1978. Ecology of methane formation. In Mitchell Ed., Water pollution Microbiology, Wiley
and Sons, New York, 2: 349-376.
ZEIKUS J.G., 1980. Chemical and fuel production by anaerobic bacteria. Ann. Rev. Microbiol. 34. 423464.
95
transferred hydrogen. Arch. Microbiol; 117 : 89-92.
ATKINSON L.P., RICHARDS F.A., 1967. The occurence and distribution of methane in the marine environment.
Deep Sea Res. 14:673-684.
BRYANT M.P., 1976. The microbiology of anaerobic degradation and methanogenesis with special reference to
sewage. Microbial Energy conversion , Seminar UNITAR Gottingen 4-8 oct. 1976, pp. 107-117.
BRYANT M.P., 1979. Microbial methane production : theoretical aspects. J. anim. Sci. 48: 193-201.
CHEN M., WOLIN M.J., 1977. Influence of CPU production by Methanobacterium ruminantium on the
fermentation of glucose and lactate by Selenomonas ruminantium.Appl. environ. Microbiol. 34: 756-759.
HUNGATE R.E., 1969. A roll tube method for cultivation of strict anaerobes. Methods in Microbiology Eds
Norris and Ribbon, Academic Press Inc. , London, 3B : 117-132.
KING G.M., WIEBE W.J., 1980. Regulation of sulfate concentrations and methanogenesis in salt marsh soils.
Estuarine Coast. Mar. Sci. 10:215-223.
KING G.M., 1984. Utilization of hydrogen, acetate, and “noncompetitive” substrates by methanogenic bacteria
in marine sediments. Geomicrobiol. J. 3:275-306.
KRISTJANSSON J.K., SCHONHEIT P., THAUER R.K., 1982. Different Ks values for hydrogen of methanogenic
bacteria and sulfate reducing bacteria : an explanation for the apparent inhibition of methanogenesis by sulfate.
Arch. Microbiol. 131: 278-282.
LANG E„ LANG H., 1972. Spezifishe Farbreaktion zum direkten Nachweis der Ameisensaure. J. Anal. Chem.
260:8-10.
LOVLEY D.R., DWYER D.F., KLUG M.J., 1982. Kinetic analysis of competition between sulfate reducers and
methanogens for hydrogen in sediments. Appl. environ. Microbiol. 43 : 1373-1379.
MARTY D., 1981. Distribution of different anaerobic bacteria in Arabian Sea sediments. Mar. Biol. 63:277-281.
MARTY D., 1983. Cellulolyse et méthanogénèse dans les sédiments marins. Thèse d'Etat. Université de Provence,
Marseille.
NEDWELL D.B., BANAT I.M., 1981. Hydrogen as an electron donnor for sulfate reducing bacteria in slurries of
salt marsh sediment. Microbiol. Ecol. 7: 305-313.
Ng T.K BEN BASSAT A., ZEIKUS J.G., 1981. Ethanol production by thermophilic bacteria : fermentation of
cellulosic substrates by cocultures of Clostridium Thermocellum and Clostridium thermohydrosulfuricum.
Appl. environ. Microbiol. 41 : 1337-1343.
SENIOR E LINDSTROM E.B., BANAT I.M., NEDWELL D.B., 1982. Sulfate reduction and methanogenesis in the
sediment of a saltmarsh on the East Coast of the United Kingdom. Appl. environ. Microbiol. 43 : 987-996.
WEIMER P.J., ZEIKUS J.G., 1977. Fermentation of cellulose and cellobiose by Clostridium thermocellum in
absence and presence of Methanobacterium thermoautotrophicum. Appl. environ. Microbiol. 33 :289-297.
WINFREY M. R., Zeikus J.G., 1979. Anaerobic metabolism of immediate methane precursors in Lake Mendota.
Appl. environ. Microbiol. 37:244-253.
WINFREY MR., MARTY D., BIANCHI A., WARD D.M., 1981. Vertical distribution of sulfate reduction, methane
production, and bacteria in marine sediments. Geomicrobiol. J. 2: 341-362.
WINFREY M R., WARD D.M., 1983. Substrates for sulfate reduction and methane production in intertidal
sediments. Appl. environ. Microbiol. 45: 193-199.
WOLFE R.S. HIGGINS I.J., 1979. Microbial biochemistry of methane. A study in contrasts. Microbial Biochem
21:267-300.
ZEHNDER A.J.B., 1978. Ecology of methane formation. In Mitchell Ed., Water pollution Microbiology, Wiley
and Sons, New York, 2: 349-376.
ZEIKUS J.G., 1980. Chemical and fuel production by anaerobic bacteria. Ann. Rev. Microbiol. 34. 423464.
95
