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Every fifth published metagenome is not available to science
Eckert, E. M., Di Cesare, A., Fontaneto, D., Berendonk, T. U., Bürgmann, H., Cytryn, E., … Corno, G. (2020). Every fifth published metagenome is not available to science. PLoS Biology, 18(4), e3000698 (7 pp.). https://doi.org/10.1371/journal.pbio.3000698
Growth and rapid succession of methanotrophs effectively limit methane release during lake overturn
Mayr, M. J., Zimmermann, M., Dey, J., Brand, A., Wehrli, B., & Bürgmann, H. (2020). Growth and rapid succession of methanotrophs effectively limit methane release during lake overturn. Communications Biology, 3, 108 (9 pp.). https://doi.org/10.1038/s42003-020-0838-z
Niche partitioning of methane-oxidizing bacteria along the oxygen–methane counter gradient of stratified lakes
Mayr, M. J., Zimmermann, M., Guggenheim, C., Brand, A., & Bürgmann, H. (2020). Niche partitioning of methane-oxidizing bacteria along the oxygen–methane counter gradient of stratified lakes. ISME Journal, 14, 274-287. https://doi.org/10.1038/s41396-019-0515-8
Aerobic methane oxidation under copper scarcity in a stratified lake
Guggenheim, C., Brand, A., Bürgmann, H., Sigg, L., & Wehrli, B. (2019). Aerobic methane oxidation under copper scarcity in a stratified lake. Scientific Reports, 9, 4817 (11 pp.). https://doi.org/10.1038/s41598-019-40642-2
Predator-induced changes in dissolved organic carbon dynamics
Limberger, R., Birtel, J., Peter, H., Catalán, N., da Silva Farias, D., Best, R. J., … Matthews, B. (2019). Predator-induced changes in dissolved organic carbon dynamics. Oikos, 128(3), 430-440. https://doi.org/10.1111/oik.05673
Water and sanitation: an essential battlefront in the war on antimicrobial resistance
Bürgmann, H., Frigon, D., Gaze, W., Manaia, C., Pruden, A., Singer, A. C., … Zhang, T. (2018). Water and sanitation: an essential battlefront in the war on antimicrobial resistance. FEMS Microbiology Ecology, 94(9), fiy101 (14 pp.). https://doi.org/10.1093/femsec/fiy101
Antibiotikaresistenzen im Trinkwasser?
Bürgmann, H., & Imminger, S. (2017). Antibiotikaresistenzen im Trinkwasser? Aqua & Gas, 97(10), 60-66.
Strong impact of anthropogenic contamination on the co-occurrence patterns of a riverine microbial community
Hu, A., Ju, F., Hou, L., Li, J., Yang, X., Wang, H., … Yu, C. P. (2017). Strong impact of anthropogenic contamination on the co-occurrence patterns of a riverine microbial community. Environmental Microbiology, 19(12), 4993-5009. https://doi.org/10.1111/1462-2920.13942
Bacteria-induced mixing in natural waters
Sommer, T., Danza, F., Berg, J., Sengupta, A., Constantinescu, G., Tokyay, T., … Wüest, A. (2017). Bacteria-induced mixing in natural waters. Geophysical Research Letters, 44(18), 9424-9432. https://doi.org/10.1002/2017GL074868
The effect of top-predator presence and phenotype on aquatic microbial communities
Sullam, K. E., Matthews, B., Aebischer, T., Seehausen, O., & Bürgmann, H. (2017). The effect of top-predator presence and phenotype on aquatic microbial communities. Ecology and Evolution, 7(5), 1572-1582. https://doi.org/10.1002/ece3.2784
Towards a comprehensive strategy to mitigate dissemination of environmental sources of antibiotic resistance
Vikesland, P. J., Pruden, A., Alvarez, P. J. J., Aga, D. S., Buergmann, H., Li, X., … Zhu, Y. G. (2017). Towards a comprehensive strategy to mitigate dissemination of environmental sources of antibiotic resistance. Environmental Science and Technology, 51(22), 13061-13069. https://doi.org/10.1021/acs.est.7b03623
Antibiotikaresistenzen im Wasserkreislauf. Ein Überblick über die Situation in der Schweiz
Czekalski, N., von Gunten, U., & Bürgmann, H. (2016). Antibiotikaresistenzen im Wasserkreislauf. Ein Überblick über die Situation in der Schweiz. Aqua & Gas, 96(9), 72-80.
Microbes as engines of ecosystem function: when does community structure enhance predictions of ecosystem processes?
Graham, E. B., Knelman, J. E., Schindlbacher, A., Siciliano, S., Breulmann, M., Yannarell, A., … Nemergut, D. R. (2016). Microbes as engines of ecosystem function: when does community structure enhance predictions of ecosystem processes? Frontiers in Microbiology, 7, 214 (10 pp.). https://doi.org/10.3389/fmicb.2016.00214
Estimating bacterial diversity for ecological studies: methods, metrics, and assumptions
Birtel, J., Walser, J. C., Pichon, S., Bürgmann, H., & Matthews, B. (2015). Estimating bacterial diversity for ecological studies: methods, metrics, and assumptions. PLoS One, 10(4), e0125356 (23 pp.). https://doi.org/10.1371/journal.pone.0125356
Hydrologic linkages drive spatial structuring of bacterial assemblages and functioning in alpine floodplains
Freimann, R., Bürgmann, H., Findlay, S. E. G., & Robinson, C. T. (2015). Hydrologic linkages drive spatial structuring of bacterial assemblages and functioning in alpine floodplains. Frontiers in Microbiology, 6, 1221 (15 pp.). https://doi.org/10.3389/fmicb.2015.01221
Eintrag von Antibiotika und Antibiotikaresistenzen in Wassersysteme der Schweiz
Bürgmann, H. (2014). Eintrag von Antibiotika und Antibiotikaresistenzen in Wassersysteme der Schweiz. Prävention und Gesundheitsforderung, 9(3), 185-190. https://doi.org/10.1007/s11553-014-0444-3
Wastewater as a point source of antibiotic-resistance genes in the sediment of a freshwater lake
Czekalski, N., Díez, E. G., & Bürgmann, H. (2014). Wastewater as a point source of antibiotic-resistance genes in the sediment of a freshwater lake. ISME Journal, 8(7), 1381-1390. https://doi.org/10.1038/ismej.2014.8
Spatio-temporal patterns of major bacterial groups in alpine waters
Freimann, R., Bürgmann, H., Findlay, S. E. G., & Robinson, C. T. (2014). Spatio-temporal patterns of major bacterial groups in alpine waters. PLoS One, 9(11), e113524 (8 pp.). https://doi.org/10.1371/journal.pone.0113524
Early diagenetic processes generate iron and manganese oxide layers in the sediments of Lake Baikal, Siberia
Torres, N. T., Och, L. M., Hauser, P. C., Furrer, G., Brandl, H., Vologina, E., … Müller, B. (2014). Early diagenetic processes generate iron and manganese oxide layers in the sediments of Lake Baikal, Siberia. Environmental Science: Processes and Impacts, 16(4), 879-889. https://doi.org/10.1039/c3em00676j
Evaluation und Optimierung einer Methode zur Beurteilung der Antibiotikaresistenz in Gewässern
Bürgmann, H., Czekalski, N., & Egli, A. (2013). Evaluation und Optimierung einer Methode zur Beurteilung der Antibiotikaresistenz in Gewässern. Kastanienbaum: Eawag.