Aharon Oren
References
Aeckersberg F, Bak F, Widdel F (1991) Anaerobic oxidation of saturated hydrocarbons to CO 2 by a
new type of sulfate-reducing bacterium. Arch Microbiol 156:5–14
Arshad A, Speth DR, de Graaf RM et al (2015) A metagenomics-based metabolic model of nitratedependent anaerobic oxidation of methane by Methanoperedens-like archaea. Front Microbiol
6:1423
Beal EJ, House CH, Orphan VJ (2009) Manganese- and iron-dependent marine methane oxidation.
Science 325:184–187
Béjà O, Aravind L, Koonin EV et al (2000) Bacterial rhodopsin: evidence for a new type of
phototrophy in the sea. Science 289:1902–1906
Berg IA (2011) Ecological aspects of the distribution of different autotrophic CO 2 fixation pathways. Appl Environ Microbiol 77:1925–1936
Biegert T, Fuchs G, Heider J (1996) Evidence that an anaerobic oxidation of toluene in the
denitrifying bacterium Thauera aromatica is initiated by formation of benzylsuccinate from
toluene and fumarate. Eur J Biochem 238:661–668
Boetius A, Ravenschlag K, Schubert CJ et al (2000) A marine microbial consortium apparently
mediating anaerobic oxidation of methane. Nature 407:623–626
Broda E (1975) The evolution of bioenergetic processes. Pergamon Press, Oxford
Broda E (1977) Two kinds of lithotrophs missing in nature. Zeitschr Allg Mikrobiol 17:491–493
Bryant MP, Wolin EA, Wolin MJ et al (1967) Methanobacillus omelianskii, a symbiotic association
between two species of bacteria. Arch Mikrobiol 5:20–31
Cai C, Leu AO, Xie G-J et al (2018) A methanotrophic archaeon couples anaerobic oxidation of
methane to Fe(III) reduction. ISME J 12:1929–1939
Chen X, Schreiber K, Appel J et al (2016) The Entner-Doudoroff pathway is an overlooked
glycolytic route in cyanobacteria and plants. Proc Natl Acad Sci USA 113:5441–5446
Colby J, Dalton H, Whittenbury R (1979) Biological and biochemical aspects of microbial growth
on C 1 compounds. Ann Rev Microbiol 33:481–517
Costa E, Pérez J, Kreft JU (2006) Why is metabolic labour divided in nitrification? Trends
Microbiol 13:213–219
Daims H, Lebedeva EV, Pjevac P et al (2015) Complete nitrification by Nitrospira bacteria. Nature
528:504–509
de la Torre JR, Christianson LM, Béjà O et al (2003) Proteorhodopsin genes are distributed among
divergent bacterial taxa. Proc Natl Acad Sci USA 100:12830–12835
180
A. Oren
References
Aeckersberg F, Bak F, Widdel F (1991) Anaerobic oxidation of saturated hydrocarbons to CO 2 by a
new type of sulfate-reducing bacterium. Arch Microbiol 156:5–14
Arshad A, Speth DR, de Graaf RM et al (2015) A metagenomics-based metabolic model of nitratedependent anaerobic oxidation of methane by Methanoperedens-like archaea. Front Microbiol
6:1423
Beal EJ, House CH, Orphan VJ (2009) Manganese- and iron-dependent marine methane oxidation.
Science 325:184–187
Béjà O, Aravind L, Koonin EV et al (2000) Bacterial rhodopsin: evidence for a new type of
phototrophy in the sea. Science 289:1902–1906
Berg IA (2011) Ecological aspects of the distribution of different autotrophic CO 2 fixation pathways. Appl Environ Microbiol 77:1925–1936
Biegert T, Fuchs G, Heider J (1996) Evidence that an anaerobic oxidation of toluene in the
denitrifying bacterium Thauera aromatica is initiated by formation of benzylsuccinate from
toluene and fumarate. Eur J Biochem 238:661–668
Boetius A, Ravenschlag K, Schubert CJ et al (2000) A marine microbial consortium apparently
mediating anaerobic oxidation of methane. Nature 407:623–626
Broda E (1975) The evolution of bioenergetic processes. Pergamon Press, Oxford
Broda E (1977) Two kinds of lithotrophs missing in nature. Zeitschr Allg Mikrobiol 17:491–493
Bryant MP, Wolin EA, Wolin MJ et al (1967) Methanobacillus omelianskii, a symbiotic association
between two species of bacteria. Arch Mikrobiol 5:20–31
Cai C, Leu AO, Xie G-J et al (2018) A methanotrophic archaeon couples anaerobic oxidation of
methane to Fe(III) reduction. ISME J 12:1929–1939
Chen X, Schreiber K, Appel J et al (2016) The Entner-Doudoroff pathway is an overlooked
glycolytic route in cyanobacteria and plants. Proc Natl Acad Sci USA 113:5441–5446
Colby J, Dalton H, Whittenbury R (1979) Biological and biochemical aspects of microbial growth
on C 1 compounds. Ann Rev Microbiol 33:481–517
Costa E, Pérez J, Kreft JU (2006) Why is metabolic labour divided in nitrification? Trends
Microbiol 13:213–219
Daims H, Lebedeva EV, Pjevac P et al (2015) Complete nitrification by Nitrospira bacteria. Nature
528:504–509
de la Torre JR, Christianson LM, Béjà O et al (2003) Proteorhodopsin genes are distributed among
divergent bacterial taxa. Proc Natl Acad Sci USA 100:12830–12835
180
A. Oren
