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Genomics Data|January 25, 2017
Genome sequence of the copper resistant and acid-tolerant <i>Desulfosporosinus</i> sp. BG isolated from the tailings of a molybdenum-tungsten mine in the Transbaikal areaOlga V Karnachuk, Vitalii V Kadnikov, Inna A Panova, et al.International Journal of Systematic and Evolutionary Microbiology|July 13, 2021
<i>Desulfosporosinus metallidurans</i> sp. nov., an acidophilic, metal-resistant sulfate-reducing bacterium from acid mine drainageInna A Panova, Olga Ikkert, Marat R Avakyan, et al.Environmental Microbiology|April 1, 2026
A Novel Slowly Evolving Lineage of the Desulforudis Clade From the Deep SubsurfaceOlga V Karnachuk, Anastasia P Lukina, Marat R Avakyan, et al.FEMS Microbiology Ecology|May 26, 2016
Genomic insights into a new acidophilic, copper-resistant Desulfosporosinus isolate from the oxidized tailings area of an abandoned gold mineAndrey V Mardanov, Inna A Panova, Alexey V Beletsky, et al.Microbial Ecology|February 23, 2023
Coexistence of Psychrophilic, Mesophilic, and Thermophilic Sulfate-Reducing Bacteria in a Deep Subsurface Aquifer Associated with Coal-Bed Methane ProductionOlga V Karnachuk, Inna A Panova, Igor I Rusanov, et al.Scientific Reports|May 22, 2021
Microbial sulfate reduction by Desulfovibrio is an important source of hydrogen sulfide from a large swine finishing facilityOlga V Karnachuk, Igor I Rusanov, Inna A Panova, et al.Frontiers in Microbiology|October 2, 2023
The low-temperature germinating spores of the thermophilic <i>Desulfofundulus</i> contribute to an extremely high sulfate reduction in burning coal seamsOlga V Karnachuk, Igor I Rusanov, Inna A Panova, et al.Microorganisms|February 25, 2023
Active Sulfate-Reducing Bacterial Community in the Camel GutOlga V Karnachuk, Inna A Panova, Vasilii L Panov, et al.Scientific Reports|December 4, 2025
Thermophilic and mesophilic sulfate reduction by rare biosphere bacteria in acidic metal-bearing mine wastes from the temperate climate zoneOlga V Karnachuk, Inna A Panova, Igor I Rusanov, et al.Pageof 1