Other disciplines of study, such as Greenhouse gas and Anaerobic oxidation of methane, are mixed together with his Methane studies. He performs multidisciplinary study on Greenhouse gas and Methane in his works. His Anaerobic oxidation of methane study frequently links to other fields, such as Catalysis. Yuri A. Trotsenko undertakes interdisciplinary study in the fields of Catalysis and Commodity chemicals through his research. He incorporates Bacteria and Isolation (microbiology) in his studies. He undertakes multidisciplinary investigations into Isolation (microbiology) and Microbiology in his work. Borrowing concepts from Botany, Yuri A. Trotsenko weaves in ideas under Microbiology. He applies his multidisciplinary studies on Botany and Genetics in his research. He regularly links together related areas like Methanol dehydrogenase in his Genetics studies.
His Ecology study has been linked to subjects such as Obligate and Methane. Biochemistry and Glyoxylate cycle are commonly linked in his work. His study ties his expertise on 16S ribosomal RNA together with the subject of Genetics. He combines Bacteria and Microbiology in his research. In his works, he undertakes multidisciplinary study on Microbiology and Genetics. Yuri A. Trotsenko connects Enzyme with Catalysis in his study. He performs integrative study on Catalysis and Enzyme. He performs integrative study on Gene and Molecular biology in his works. Yuri A. Trotsenko conducts interdisciplinary study in the fields of Molecular biology and Recombinant DNA through his works.
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Metabolic aspects of aerobic obligate methanotrophy.
Yuri A Trotsenko;John Colin Murrell.
Advances in Applied Microbiology (2008)
Methylocella palustris gen. nov., sp. nov., a new methane-oxidizing acidophilic bacterium from peat bogs, representing a novel subtype of serine-pathway methanotrophs.
Svetlana N. Dedysh;Werner Liesack;Valentina N. Khmelenina;Natalia E. Suzina.
International Journal of Systematic and Evolutionary Microbiology (2000)
Highly efficient methane biocatalysis revealed in a methanotrophic bacterium
M. G. Kalyuzhnaya;S. Yang;S. Yang;O. N. Rozova;N. E. Smalley.
Nature Communications (2013)
Methylocapsa acidiphila gen. nov., sp. nov., a novel methane-oxidizing and dinitrogen-fixing acidophilic bacterium from Sphagnum bog.
Svetlana N Dedysh;Valentina N Khmelenina;Natalia E Suzina;Yuri A Trotsenko.
International Journal of Systematic and Evolutionary Microbiology (2002)
Methylocella silvestris sp. nov., a novel methanotroph isolated from an acidic forest cambisol.
Peter F. Dunfield;Valentina N. Khmelenina;Natalia E. Suzina;Yuri A. Trotsenko.
International Journal of Systematic and Evolutionary Microbiology (2003)
Biology of extremophilic and extremotolerant methanotrophs.
Yuri A. Trotsenko;Valentina N. Khmelenina.
Archives of Microbiology (2002)
Methylocella tundrae sp. nov., a novel methanotrophic bacterium from acidic tundra peatlands.
Svetlana N. Dedysh;Yulia Y. Berestovskaya;Lina V. Vasylieva;Svetlana E. Belova.
International Journal of Systematic and Evolutionary Microbiology (2004)
Osmoadaptation in halophilic and alkaliphilic methanotrophs
Valentina N. Khmelenina;Marina G. Kalyuzhnaya;Valentin G. Sakharovsky;Natalia E. Suzina.
Archives of Microbiology (1999)
Isolation and characterization of halotolerant alkaliphilic methanotrophic bacteria from Tuva soda lakes
Valentina N. Khmelenina;Marina G. Kalyuzhnaya;Natalia G. Starostina;Natalia E. Suzina.
Current Microbiology (1997)
Aerobic methanotrophic bacteria of cold ecosystems.
Yuri A. Trotsenko;Valentina N. Khmelenina.
FEMS Microbiology Ecology (2005)
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