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The ISME Journal|September 8, 2012
Organic carbon transformations in high-Arctic peat soils: key functions and microorganismsAlexander Tveit, Rainer Schwacke, Mette M Svenning, et al.Environmental Microbiome|August 18, 2021
North Sea spring bloom-associated Gammaproteobacteria fill diverse heterotrophic nichesBen Francis, Tim Urich, Annett Mikolasch, et al.FEMS Microbiology Ecology|March 13, 2015
Adaptation of soil microbial community structure and function to chronic metal contamination at an abandoned Pb-Zn mineLur Epelde, Anders Lanzén, Fernando Blanco, et al.Foods (Basel, Switzerland)|January 23, 2024
Deep Impact: Shifts of Native Cultivable Microbial Communities on Fresh Lettuce after Treatment with Plasma-Treated WaterHauke Winter, Robert Wagner, Jörg Ehlbeck, et al.FEMS Microbiology Letters|April 27, 2013
Responses of the terrestrial ammonia-oxidizing archaeon Ca. Nitrososphaera viennensis and the ammonia-oxidizing bacterium Nitrosospira multiformis to nitrification inhibitorsTianlin Shen, Michaela Stieglmeier, Jiulan Dai, et al.Proceedings of the National Academy of Sciences of the United States of America|April 29, 2015
Metabolic and trophic interactions modulate methane production by Arctic peat microbiota in response to warmingAlexander Tøsdal Tveit, Tim Urich, Peter Frenzel, et al.FEMS Microbiology Ecology|October 5, 2020
Temporal dynamics in the taxonomic and functional profile of the Sphagnum-associated fungi (mycobiomes) in a Sphagnum farming field site in Northwestern GermanyMathilde Borg Dahl, Matthias Krebs, Martin Unterseher, et al.ISME Communications|November 8, 2023
The impact of summer drought on peat soil microbiome structure and function-A multi-proxy-comparisonHaitao Wang, Mareike Meister, Corinna Jensen, et al.Journal of Bioenergetics and Biomembranes|June 1, 2004
Dissimilatory oxidation and reduction of elemental sulfur in thermophilic archaeaArnulf Kletzin, Tim Urich, Fabian Müller, et al.FEMS Microbiology Letters|June 23, 2005
Identification of core active site residues of the sulfur oxygenase reductase from Acidianus ambivalens by site-directed mutagenesisTim Urich, Anja Kroke, Christian Bauer, et al.Pageof 10