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99
80. Zahn JA, Bergmann DJ, Boyd JM, Kunz RC, DiSpirito AA (2001) Membrane-associated
quinoprotein formaldehyde dehydrogenase from Methylococcus capsulatus Bath. J Bacteriol
183:6832–6840
81. Chistoserdova L, Kalyuzhnaya MG, Lidstrom ME (2009) The expanding world of methylotrophic metabolism. Annu Rev Microbiol 63:477–499
82. Jollie DR, Lipscomb JD (1991) Formate dehydrogenase from Methylosinus tricho-sporium
OB3b. Purification and spectroscopic characterization of the cofactors. J Biol Chem
266:21853–21863
83. Ferry JG (1990) Formate dehydrogenase. FEMS Microbiol Rev 7:377–382
84. Jollie DR, Lipscomb JD (1990) Formate dehydrogenase from Methylosinus trichosporium
OB3b. Methods Enzymol 188:331–334
85. Yoch DC, Chen YP, Hardin MG (1990) Formate dehydrogenase from the methane oxidizer
Methylosinus trichosporium OB3b. J Bacteriol 72:4456–4463
86. Quayle JR (1972) The metabolism of one-carbon compounds by micro-organisms. Adv
Microbiol Physiol 7:119–203
87. Hwang IY, Lee SH, Choi YS, Park SJ, Na JG, Chang IS, Kim C, Kim HC, Kim YH, Lee JW,
Lee EY (2014) Biocatalytic conversion of methane to methanol as a key step for development
of methane-based biorefineries. J Microbiol Biotechnol 24:1597–1605
88. Karthikeyan OP, Chidambarampadmavathy K, Nadarajan S, Lee PK, Heimann K (2015) Effect
of CH 4 /O 2 ratio on fatty acid profile and polyhydroxybutyrate content in a heterotrophicmethanotrophic consortium. Chemosphere 141:235–242
89. Khmelenina VN, Rozova N, But CY, Mustakhimov II, Reshetnikov AS, Beschastnyi AP,
Trotsenko YA (2015) Biosynthesis of secondary metabolites in methanotrophs: biochemical
and genetic aspects. Prikl Biokhim Mikrobiol 51:140–150
90. Crowther GJ, Kosály G, Lidstrom ME (2008) Formate as the Main Branch Point for Methylotrophic Metabolism in Methylobacterium extorquens AM1. J Bacteriol 190(14):5057–5062
91. Chidambarampadmavathy K, Karthik O, Heimann K (2015) Role of copper and iron in
methane oxidation and bacterial biopolymer accumulation. Eng Life Sci 15:387–399
92. Dedysh SN, Panikov NS, Tiedje JM (1998) Acidophilic methanotrophic communities from
Sphagnum peat bogs. Appl Env Microbiol 64:922–929
93. Pol A, Heijmans K, Harhangi HR, Tedesco D, Jetten MSM, den Camp HJMO (2007)
Methanotrophy below pH1 by a new Verrucomicrobia species. Nature 450:874–U817
94. Bowman JP, McCammon SA, Skerratt JH (1997) Methylosphaera hansonii gen. nov., sp.
nov., a psychrophilic, group I methanotroph from Antarctic marine-salinity, meromictic lakes.
Microbiol 143:1451–1459
95. Heyer J, Berger U, Hardt M, Dunfield PF (2005) Methylohalobius crimeensis gen. nov., sp.
nov., a moderately halophilic, methanotrophic bacterium isolated from hypersaline lakes of
Crimea. Int J System Evol Microbiol 55:1817–1826
96. Kaluzhnaya M, Khmelenina V, Eshinimaev B, Suzina N, Nikitin D, Solonin A, Lin JL,
McDonald I, Murrell JC, Trotsenko Y (2001) Taxonomic characterization of new alkaliphilic
and alkalitolerant methanotrophs from soda lakes of the Southeastern Transbaikal region
and description of Methylomicrobium buryatense sp.nov. Systematic and Appl Microbiol
24:166–176
97. Andersen KB, von Meyenburg K (1980) Are growth rates of Escherichia coli in batch cultures
limited by respiration? J Baceriol 144:114–123
98. López JC, Quijano G, Pérez R, Muñoz R (2014) Assessing the influence of CH 4 concentration
during culture enrichment on the biodegradation kinetics and population structure. J Environ
Manage 146:116–123
99. Fennel DE, Underhill SE, Jewell WJ (1992) Methanotrophic attached-film reactor development and biofilm characteristics. Biotechnol Bioeng 40:1218–1232
100. Hirayama H, Abe M, Miyazaki M, Nunoura T, Furushima Y, Yamamoto H, Takai K (2014)
Methylomarinovum caldicuralii gen. nov., sp. nov., a moderately thermophilic methanotroph isolated from a shallow submarine hydrothermal system, and proposal of the family
Methylothermaceae fam. nov. Int J Syst Evol Microbiol 64:989–999
