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1.
Amar, Y.* et al.: Skin microbiome diversity and transcriptome profiling in patients with atopic dermatitis. Exp. Dermatol. 28, E8-E9 (2019)
2.
Cania, B. et al.: A long-term field experiment demonstrates the influence of tillage on the bacterial potential to produce soil structure-stabilizing agents such as exopolysaccharides and lipopolysaccharides. Stand. Genomic Sci. 14:1 (2019)
3.
Degrune, F.* et al.: Distinct communities of Cercozoa at different soil depths in a temperate agricultural field. FEMS Microbiol. Ecol. 95:fiz041 (2019)
4.
Fösel, B. ; Pfeiffer, S. ; Raj, A.C.D. ; Krauss-Etschmann, S.* & Schloter, M.: Application of ecological theories in lung microbiome research - lessons learned from microbial ecology and evolution? In: The Lung Microbiome. 2019. 50-66 (ERS Monograph)
5.
Hammerl, V. et al.: Seasonal effects of extreme weather events on potential extracellular enzyme activities in a temperate grassland soil. Front. Env. Sci. 6:157 (2019)
6.
Hammerl, V. et al.: Influence of rewetting on microbial communities involved in nitrification and denitrification in a grassland soil after a prolonged drought period. Sci. Rep. 9:2280 (2019)
7.
Liu, S.* ; Schloter, M. ; Hu, R.* ; Vereecken, H.* & Brüggemann, N.*: Hydroxylamine contributes more to abiotic N2O production in soils than nitrite. Front. Env. Sci. 7:47 (2019)
8.
Milaković, M.* et al.: Pollution from azithromycin-manufacturing promotes macrolide-resistance gene propagation and induces spatial and seasonal bacterial community shifts in receiving river sediments. Environ. Int. 123, 501-511 (2019)
9.
Pérez Brandan, C.* et al.: Relationships between soil physicochemical properties and nitrogen fixing, nitrifying and denitrifying under varying land-use practices in the northwest region of Argentina. Soil water res. 14, 1-9 (2019)
10.
Pihlap, E.* et al.: Initial soil formation in an agriculturally reclaimed open-cast mining area - the role of management and loess parent material. Soil Tillage Res. 191, 224-237 (2019)
11.
Saenz Medina, J.S. et al.: Oral administration of antibiotics increased the potential mobility of bacterial resistance genes in the gut of the fish Piaractus mesopotamicus. Microbiome 7:24 (2019)
12.
Schloter, M.: Mikrobiome als Katalysatoren von Ökosystemdienstleistungen des Bodens. In: Die unbekannte Welt der Mikrobiome. 2019. 57-68 (Rundgespräche Forum Ökologie ; 47)
13.
Treichel, N. et al.: Effect of the nursing mother on the gut microbiome of the offspring during early mouse development. Microb. Ecol., accepted (2019)
14.
van der Plas, F.* et al.: Towards the development of general rules describing landscape heterogeneity-multifunctionality relationships. J. Appl. Ecol. 56, 168-179 (2019)
15.
Winkler, P.* et al.: Tracing organic carbon and microbial community structure in mineralogically different soils exposed to redox fluctuations. Biogeochemistry 143, 31-54 (2019)
16.
Baraniya, D.* et al.: The impact of the diurnal cycle on the microbial transcriptome in the rhizosphere of barley. Microb. Ecol. 75, 830–833 (2018)
17.
Bradford, L. et al.: Transcriptome-stable isotope probing provides targeted functional and taxonomic insights into microaerobic pollutant-degrading aquifer microbiota. Front. Microbiol. 9:2696 (2018)
18.
Chen, Z.* et al.: Enhanced nitrogen cycling and N2O loss in water-saving ground cover rice production systems (GCRPS). Soil Biol. Biochem. 121, 77-86 (2018)
19.
Felipe-Lucia, M.R.* et al.: Multiple forest attributes underpin the supply of multiple ecosystem services. Nat. Commun. 9:4839 (2018)
20.
Grafe, M. et al.: Bacterial potentials for uptake, solubilization and mineralization of extracellular phosphorus in agricultural soils are highly stable under different fertilization regimes. Environ. Microbiol. Rep. 10, 320-327 (2018)