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Michael Schloter: Publikationen

Referierte Zeitschriften

von Heßberg, A; Jentsch, A; Berauer, B; Ewald, J; Fütterer, S; Görgen, A; Kluth, S; Krämer, A; Köllner, T; Scharmann, M; Schloter, M; Schmidt, T; Schödl, M; Schuchardt, M; Schucknecht, A; Steinberger, S; Vidal, A; Voith, J; Wiesmeier, M; Dannenmann, M: Almen in Zeiten des Klimawandels – Schutz der Artenvielfalt durch (Wieder-) Beweidung? Die Fallstudie Brunnenkopfalm im Ammergebirge, Naturschutz und Landschaftsplanung, 53(3), 28-36 (2021), doi:10.1399/NuL.2021.03.02
Michas, A; Harir, M; Lucio, M; Vestergaard, G; Himmelberg, AM; Schmitt-Kopplin, Ph; Lueders, T; Hatzinikolaou, D; Schöler, A; Rabus, R; Schloter, M: Sulfate Alters the Competition Among Microbiome Members of Sediments Chronically Exposed to Asphalt., Frontiers in Microbiology, 11:556793 (2020), doi:https://doi.org/10.3389/fmicb.2020.556793 -- Details
Bradford, LM; Vestergaard, G; Táncsics, A; Zhu, B; Schloter, M; Lüders, T: Transcriptome-Stable Isotope Probing Provides Targeted Functional and Taxonomic Insights Into Microaerobic Pollutant-Degrading Aquifer Microbiota, Frontiers in Microbiology, 9, 2696 (2018), doi:10.3389/fmicb.2018.02696
Uksa, M; Buegger, F; Gschwendtner, S; Lüders, T; Kublik, S; Kautz, T; Athmann, M; Köpke, U; Munch, JC; Schloter, M; Fischer, D: Bacteria utilizing plant-derived carbon in the rhizosphere of Triticum aestivum change in different depths of an arable soil, Environmental Microbiology Reports, 9(6), 729-741 (2017), doi:10.1111/1758-2229.12588
Wei, J; Amelung, W; Lehndorff, E; Schloter, M; Vereecken, H; Brüggemann, N: N2O and NOx emissions by reactions of nitrite with soil organic matter of a Norway spruce forest, Biogeochemistry, 132, 325-342 (2017), doi:10.1007/s10533-017-0306-0 -- Details
Bergkemper, F; Bünemann, EK; Hauenstein, S; Heuck, C; Kandeler, E; Krüger, J; Marhan, S; Mészáros, É; Nassal, P; Oelmann, Y; Pistocchi, C; Schloter, M; Spohn, M; Talkner, U; Zederer, DP; Schulz, St: An inter-laboratory comparison of gaseous- and liquid fumigation based methods for measuring microbial phosphorus (Pmic) in forest soils with differing P stock, Journal of Microbial Methods, 128, 66-68 (2016), doi:10.1016/j.mimet.2016.07.006 -- Details
Gschwendtner, S; Engel, M; Lüders, T; Buegger, F; Schloter, M: Nitrogen fertilization affects bacteria utilizing plant-derived carbon in the rhizosphere of beech seedlings, Plant and Soil, 407, 203-215 (2016), doi:10.1007/s11104-016-2888-z
Spohn, M; Treichel, NS; Cormann, M; Schloter, M; Fischer, D: Distribution of phosphatase activity and various bacterial phyla in the rhizosphere of Hordeum vulgare L. depending on P availability, Soil Biology & Biochemistry, 89, 44-51 (2015), doi:dx.doi.org/10.1016/j.soilbio.2015.06.018 -- Details
Kölbl, A; Schad, P; Jahn, R; Amelung, W; Bannert, A; Cao, ZH; Fiedler, S; Kalbitz, K; Lehndorff, E; Mueller-Niggemann, C; Schloter, M; Schwark, L; Vogelsang, V; Wissing, L; Kögel-Knabner, I: Accelerated soil formation due to paddy management on marshlands (Zhejiang Province, China), Geoderma, 228-229, 67-89 (2014), doi:10.1016/j.geoderma.2013.09.005
Roth, PJ; Lehndorff, E; Cao, ZH; Zhuang, S; Bannert, A; Wissing, L; Schloter, M; Kögel-Knabner, I; Amelung, W: Accumulation of nitrogen and microbial residues during 2000 years of rice paddy and non-paddy soil development in the Yangtze River Delta, China., Global Change Biology, 17, 3405-3417 (2011), doi:10.1111/j.1365-2486.2011.02500.x
Rasche, F; Lüders, T; Schloter, M; Schaefer, S; Buegger, F; Gattinger, A; Hood-Nowotny, RC; Sessitsch, A: DNA-based stable isotope probing enables the identification of active bacterial endophytes in potatoes, New Phytologist, 181(4), 802-807 (2009)
Scheel, T; Pritsch, K; Schloter, M; Kalbitz, K: Precipitation of enzymes and organic matter by aluminium - impacts on carbon mineralization, Journal of Plant Nutr. Soil Sci., 171, 900-907 (2008), doi:DOI: 10.1002/jpln.200700146 -- Details

Bücher und Buchkapitel

Rasche, F; Schloter, M; Lueders, T; Sessitsch, A: DNA-based stable isotope probing for identifying active bacterial endophytes in potato, , In: Molecular Microbial Ecology of the Rhizosphere, vol. 1 (F.J. de Bruijn, ed.), pp. 413-421, John Wiley & Sons, Inc.: Chichester, UK (2013) doi:10.1002/9781118297674.ch38

Sonstige Publikationen

Wang, Z; Jimenez-Fernandez, O; Osenbrück, K; Schwientek, M; Schloter, M; Fleckenstein, JH; Lueders, T: Streambed microbial communities in the transition zone between groundwater and a first-order stream as impacted by bidirectional water exchange, ScienceDirect, Elsevier B.V., Vol. 215(Water Research) (2022) doi:https://doi.org/10.1016/j.watres.2022.118334 -- Details
Zhu, B; Wang, Z; Kanaparthi, D; Kublik, S; Ge, T; Casper, P; Schloter, M; Lueders, T: Long-Read Amplicon Sequencing of Nitric Oxide Dismutase (nod) Genes Reveal Diverse Oxygenic Denitrifiers in Agricultural Soils and Lake Sediments, Microbial Ecology, 80, 243-247 (2020) doi:https://doi.org/10.1007/s00248-020-01482-0 -- Details
Vidal, A; Schucknecht, A; Toechterle, P; Linares, DRA; Garcia-Franco, N; von Heßberg, A; Krämer, A; Sierts, A; Fischer, A; Willibald, G; Fütterer, S; Ewald, J; Baumert, V; Schulz, S; Schloter, M; Bogacki, W; Wiesmeier, M; Müller, CW; Dannenmann, M: High resistance of soils to short-term re-grazing in a long-term abandoned alpine pasture, Agriculture, Ecosystems and Environment, 300, 107008 (2020) doi:10.1016/j.agee.2020.107008
Berauer, B; Wilfahrt, P; Arfin Khan, M; Eibes, P; von Heßberg, A; Ingrisch, J; Schloter, M; Schuchardt, M; Jentsch, A: Low resistance of montane and alpine grasslands to abrupt changes in temperature and precipitation regimes, Arctic, Antarctic and Alpine Research, 51(1), 215-231 (2019) doi:10.1080/15230430.2019.1618116
Mueller-Niggemann, C; Bannert, A; Schloter, M; Lehndorff, E; Schwark, L: Intra-versus inter-site macroscale variation in biogeochemical properties along a paddy soil chronosequence., Biogeosciences, 9, 1237–1251 (2012) doi:10.5194/bg-9-1237-2012
Kotzerke, A; Klemer, S; Kleineidam, K; Horn, MA; Drake, HL; Schloter, M; Wlke, BM: Manure Contaminated with the Antibiotic Sulfadiazine Impairs the Abundance of NirK- and NirS-Type Denitrifiers in the Gut of the Earthworm Eisenia Fetida, Biology and Fertility of Soils, 46, 415-418 (2010) -- Details