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Microbial Biotechnology|August 4, 2017
The contribution of bacterial genome engineering to sustainable developmentDaniel R Reuß, Fabian M Commichau, Jörg StülkeGenome Announcements|March 14, 2015
Complete Genome Sequence of Bacillus subtilis subsp. subtilis Strain 3NADaniel R Reuß, Jörg Schuldes, Rolf Daniel, et al.Microbiology (Reading, England)|August 6, 2014
Bacillus subtilis and Escherichia coli essential genes and minimal cell factories after one decade of genome engineeringMario Juhas, Daniel R Reuß, Bingyao Zhu, et al.Microbiology and Molecular Biology Reviews : MMBR|September 30, 2016
The Blueprint of a Minimal Cell: MiniBacillusDaniel R Reuß, Fabian M Commichau, Jan Gundlach, et al.Genome Announcements|July 30, 2016
Complete Genome Sequence of Bacillus subtilis subsp. subtilis Strain ∆6Daniel R Reuß, Andrea Thürmer, Rolf Daniel, et al.Metabolic Engineering|December 16, 2017
Changes of DNA topology affect the global transcription landscape and allow rapid growth of a Bacillus subtilis mutant lacking carbon catabolite repressionDaniel R Reuß, Hermann Rath, Andrea Thürmer, et al.Environmental Microbiology Reports|March 16, 2017
Hierarchical mutational events compensate for glutamate auxotrophy of a Bacillus subtilis gltC mutantMiriam Dormeyer, Anastasia L Lübke, Peter Müller, et al.Nucleic Acids Research|April 9, 2019
Topoisomerase IV can functionally replace all type 1A topoisomerases in Bacillus subtilisDaniel R Reuß, Patrick Faßhauer, Philipp Joel Mroch, et al.Metabolic Engineering|March 18, 2015
Engineering Bacillus subtilis for the conversion of the antimetabolite 4-hydroxy-l-threonine to pyridoxineFabian M Commichau, Ariane Alzinger, Rafael Sande, et al.Genome Research|December 15, 2016
Large-scale reduction of the Bacillus subtilis genome: consequences for the transcriptional network, resource allocation, and metabolismDaniel R Reuß, Josef Altenbuchner, Ulrike Mäder, et al.Pageof 2