"Svenning, Mette Marianne" - Selaus tekijän mukaan TUNICRIS-julkaisut
-
Batch Experiments Demonstrating a Two-Stage Bacterial Process Coupling Methanotrophic and Heterotrophic Bacteria for 1-Alkene Production From Methane
Khanongnuch, Ramita; Mangayil, Rahul; Santala, Ville; Hestnes, Anne Grethe; Svenning, Mette Marianne; Rissanen, Antti J. (19.05.2022)
article<p>Methane (CH<sub>4</sub>) is a sustainable carbon feedstock for value-added chemical production in aerobic CH<sub>4</sub>-oxidizing bacteria (methanotrophs). Under substrate-limited (e.g., ... -
Characterization and genome analysis of a psychrophilic methanotroph representing a ubiquitous Methylobacter spp. cluster in boreal lake ecosystems
Khanongnuch, Ramita; Mangayil, Rahul; Svenning, Mette Marianne; Rissanen, Antti Juhani (2022)
articleLakes and ponds are considered as a major natural source of CH4 emissions, particularly during the ice-free period in boreal ecosystems. Aerobic methane-oxidizing bacteria (MOB), which utilize CH4 using oxygen as an electron ... -
Draft genome sequence data of a psychrophilic tundra soil methanotroph, Methylobacter psychrophilus Z-0021 (DSM 9914)
Rissanen, Antti Juhani; Mangayil, Rahul; Svenning, Mette Marianne; Khanongnuch, Ramita (2022)
articlePsychrophilic methanotrophic bacteria are abundant and play an important role in methane removal in cold methanogenic environments, such as boreal and arctic terrestrial and aquatic ecosystems. They could be also applied ... -
Draft genome sequence data of methanotrophic Methylovulum psychrotolerans strain S1L and Methylomonas paludis strain S2AM isolated from hypoxic water column layers of boreal lakes
Rissanen, Antti J.; Mangayil, Rahul; Svenning, Mette Marianne; Khanongnuch, Ramita (2021)
data_articleMethanotrophic bacteria inhabit a wide range of natural (e.g. wetlands, lakes and soils) and anthropogenic (e.g. wastewater treatment plants and landfills) environments. They play a crucial role in mitigating atmospheric ...