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Environmental Microbiology|September 24, 2010
Metabolic networks, microbial ecology and 'omics' technologies: towards understanding in situ biodegradation processesRamiro Vilchez-Vargas, Howard Junca, Dietmar H PieperMicrobiome|May 17, 2017
Uncovering the trimethylamine-producing bacteria of the human gut microbiotaSilke Rath, Benjamin Heidrich, Dietmar H Pieper, et al.Journal of Bacteriology|November 18, 2003
New bacterial pathway for 4- and 5-chlorosalicylate degradation via 4-chlorocatechol and maleylacetate in Pseudomonas sp. strain MT1Patricia Nikodem, Volker Hecht, Michael Schlömann, et al.Frontiers in Microbiology|January 31, 2020
Potential TMA-Producing Bacteria Are Ubiquitously Found in MammaliaSilke Rath, Tatjana Rud, Dietmar H Pieper, et al.Journal of Microbiology (Seoul, Korea)|May 5, 2019
Superantigen SpeA attenuates the biofilm forming capacity of Streptococcus pyogenesAnshu Babbar, Israel Barrantes, Dietmar H Pieper, et al.Genome Announcements|October 1, 2016
Draft Genome Sequence of the Deep-Subsurface Actinobacterium Tessaracoccus lapidicaptus IPBSL-7TFernando Puente-Sánchez, Dietmar H Pieper, Alejandro Arce-RodríguezMicrobiology (Reading, England)|April 11, 2003
Rational engineering of the regioselectivity of TecA tetrachlorobenzene dioxygenase for the transformation of chlorinated toluenesKatrin Pollmann, Victor Wray, Hans-Jürgen Hecht, et al.Microbiology (Reading, England)|December 8, 2004
Difference in kinetic behaviour of catechol 2,3-dioxygenase variants from a polluted environmentHoward Junca, Iris Plumeier, Hans-Jürgen Hecht, et al.Microbiology (Reading, England)|November 13, 2002
Novel insights into the interplay between peripheral reactions encoded by xyl genes and the chlorocatechol pathway encoded by tfd genes for the degradation of chlorobenzoates by Ralstonia eutropha JMP134Thomas Ledger, Dietmar H Pieper, Danilo Pérez-Pantoja, et al.Applied and Environmental Microbiology|May 5, 2006
Assessment of toluene/biphenyl dioxygenase gene diversity in benzene-polluted soils: links between benzene biodegradation and genes similar to those encoding isopropylbenzene dioxygenasesRobert Witzig, Howard Junca, Hans-Jürgen Hecht, et al.Pageof 17