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Applied Microbiology and Biotechnology|March 6, 2024
Identifying environmental factors affecting the microbial community composition on outdoor structural timberLauritz Schrader, Jochen Trautner, Christoph C TebbeApplied Microbiology and Biotechnology|March 5, 2025
Microbial decay of wooden structures: actors, activities and means of protectionLauritz Schrader, Christian Brischke, Jochen Trautner, et al.Microbiologyopen|December 28, 2020
Hidden heterogeneity and co-occurrence networks of soil prokaryotic communities revealed at the scale of individual soil aggregatesMárton Szoboszlay, Christoph C TebbeMolecular Ecology|June 23, 2005
Field studies on the environmental fate of the Cry1Ab Bt-toxin produced by transgenic maize (MON810) and its effect on bacterial communities in the maize rhizosphereSusanne Baumgarte, Christoph C TebbeCanadian Journal of Microbiology|April 4, 2003
Genetic profiling of noncultivated bacteria from the rhizospheres of sugar beet (Beta vulgaris) reveal field and annual variability but no effect of a transgenic herbicide resistanceAchim Schmalenberger, Christoph C TebbeMolecular Ecology|December 21, 2002
Bacterial diversity in maize rhizospheres: conclusions on the use of genetic profiles based on PCR-amplified partial small subunit rRNA genes in ecological studiesAchim Schmalenberger, Christoph C TebbeMethods in Molecular Biology (Clifton, N.J.)|February 12, 2014
Profiling the diversity of microbial communities with single-strand conformation polymorphism (SSCP)Achim Schmalenberger, Christoph C TebbeApplied and Environmental Microbiology|May 7, 2003
Protocol for rapid fluorescence in situ hybridization of bacteria in cryosections of microarthropodsTorsten Thimm, Christoph C TebbeEnvironmental Biosafety Research|October 27, 2007
Differences in the rhizosphere bacterial community of a transplastomic tobacco plant compared to its non-engineered counterpartNicole Brinkmann, Christoph C TebbeEnvironmental Biosafety Research|October 27, 2007
Leaf-feeding larvae of Manduca sexta (Insecta, Lepidoptera) drastically reduce copy numbers of aadA antibiotic resistance genes from transplastomic tobacco but maintain intact aadA genes in their fecesNicole Brinkmann, Christoph C TebbePageof 8