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Publications

Institute of Microbiology

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Showing entries 71 - 80 out of 163

2019


Jaeger, A., Coll, C., Posselt, M., Mechelke, J., Rutere, C., Betterle, A., Raza, M., Mehrtens, A., Meinikmann, K., Portmann, A., Singh, T., Blaen, P. J., Krause, S., Horn, M. A., Hollender, J., Benskin, J. P., Sobek, A., & Lewandowski, J. (2019). Using recirculating flumes and a response surface model to investigate the role of hyporheic exchange and bacterial diversity on micropollutant half-lives. Environmental science. Processes & impacts, 21(12), 2093-2108.

doi.org/10.1039/c9em00327d

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doi.org/10.15488/11166

Kwon, M., Ho, A., & Yoon, S. (2019). Novel approaches and reasons to isolate methanotrophic bacteria with biotechnological potentials: recent achievements and perspectives. Applied Microbiology and Biotechnology, 103(1).

doi.org/10.1007/s00253-018-9435-1

Lasota, S., Stephan, I., Horn, M. A., Otto, W., & Noll, M. (2019). Copper in wood preservatives delayed wood decomposition and shifted soil fungal but not bacterial community composition. Applied and Environmental Microbiology, 85(4), [e02391-18].

doi.org/10.1128/AEM.02391-18

Lewandowski, J., Arnon, S., Banks, E., Batelaan, O., Betterle, A., Broecker, T., Coll, C., Drummond, J. D., Garcia, J. G., Galloway, J., Gomez-Velez, J., Grabowski, R. C., Herzog, S. P., Hinkelmann, R., Höhne, A., Hollender, J., Horn, M. A., Jaeger, A., Krause, S., ... Wu, L. (2019). Is the hyporheic zone relevant beyond the scientific community? Water (Switzerland), 11(11), [2230].

doi.org/10.3390/w11112230

McManamon, O., Kaupper, T., Scollard, J., & Schmalenberger, A. (2019). Nisin application delays growth of Listeria monocytogenes on fresh-cut iceberg lettuce in modified atmosphere packaging, while the bacterial community structure changes within one week of storage. Postharvest biology and technology, 147, 185-195.

doi.org/10.1016/j.postharvbio.2018.10.002

Mulvenna, N., Hantke, I., Burchell, L., Nicod, S., Bell, D., Turgay, K., & Wigneshweraraj, S. (2019). Xenogeneic modulation of the ClpCP protease of Bacillus subtilis by a phage-encoded adaptor-like protein. Journal of Biological Chemistry, 294(46), 17501-17511.

doi.org/10.1101/569657

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doi.org/10.1074/jbc.RA119.010007

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doi.org/10.15488/10186

Schäfer, H., & Turgay, K. (2019). Spx, a versatile regulator of the Bacillus subtilis stress response. Current genetics, 65(4), 871-876.

doi.org/10.1007/s00294-019-00950-6

Schäfer, H. (2019). The Role of the Stringent Response and Spx in Stress Response and Thermotolerance Development. [Doctoral thesis, Gottfried Wilhelm Leibniz Universität Hannover]. Leibniz Universität Hannover.

doi.org/10.15488/9241

Wu, D., Horn, M. A., Behrendt, T., Müller, S., Li, J., Cole, J. A., Xie, B., Ju, X., Li, G., Ermel, M., Oswald, R., Fröhlich-Nowoisky, J., Hoor, P., Hu, C., Liu, M., Andreae, M. O., Pöschl, U., Cheng, Y., Su, H., ... Sörgel, M. (2019). Soil HONO emissions at high moisture content are driven by microbial nitrate reduction to nitrite: tackling the HONO puzzle. The ISME journal, 13(7), 1688-1699.

doi.org/10.1038/s41396-019-0379-y

Yan, R., Kappler, A., Muehe, E. M., Knorr, K-H., Horn, M. A., Poser, A., Lohmayer, R., & Peiffer, S. (2019). Effect of Reduced Sulfur Species on Chemolithoautotrophic Pyrite Oxidation with Nitrate. Geomicrobiology journal, 36(1), 19-29.

doi.org/10.1080/01490451.2018.1489915


Showing entries 71 - 80 out of 163