Jaenicke S, Zakrzewski M, Jünemann S, Pühler A, Goesmann A, Schlüter A. Analysis of the Metagenome from a Biogas-Producing Microbial Community by Means of Bioinformatics Methods. In: de Bruijn FJ, ed. Handbook of Molecular Microbial Ecology II: Metagenomics in Different Habitats. Hoboken, NJ, USA: Wiley-Blackwell; 2011: 403-414
Stolze Y, Bremges A, Maus I, Pühler A, Sczyrba A, Schlüter A. Targeted in situ metatranscriptomics f...
Key Words microbial ecology, environmental genomics, community genomics, culture-independent, and un...
Hanreich A, Schimpf U, Zakrzewski M, et al. Metagenome and metaproteome analyses of microbial commun...
Biogas production involves various types of intricate microbial populations in an anaerobic digester...
Stolze Y. Metagenomics and metatranscriptomics of microbial communities residing in one thermophilic...
Hassa J, Maus I, Off S, et al. Metagenome, metatranscriptome, and metaproteome approaches unraveled ...
To study the metaproteome of a biogas-producing microbial community, fermentation samples were taken...
Jünemann S, Kleinbölting N, Jaenicke S, et al. Bioinformatics for NGS-based metagenomics and the app...
Schlüter A, Bekel T, Diaz NN, et al. The metagenome of a biogas-producing microbial community of a p...
The aim of this work was to elucidate the microbial ecology in twelve mesophilic and thermophilic fu...
Next-generation sequencing technology allows culture- independent analysis of species and genes pres...
The microbial diversity in anaerobic digestion (AD) is important because it affects process robustne...
Background: Biogas production is an attractive technology for a sustainable generation of renewable ...
Zakrzewski M, Bekel T, Ander C, et al. MetaSAMS - A novel software platform for taxonomic classifica...
Zakrzewski M, Goesmann A, Jaenicke S, et al. Profiling of the metabolically active community from a ...
Stolze Y, Bremges A, Maus I, Pühler A, Sczyrba A, Schlüter A. Targeted in situ metatranscriptomics f...
Key Words microbial ecology, environmental genomics, community genomics, culture-independent, and un...
Hanreich A, Schimpf U, Zakrzewski M, et al. Metagenome and metaproteome analyses of microbial commun...
Biogas production involves various types of intricate microbial populations in an anaerobic digester...
Stolze Y. Metagenomics and metatranscriptomics of microbial communities residing in one thermophilic...
Hassa J, Maus I, Off S, et al. Metagenome, metatranscriptome, and metaproteome approaches unraveled ...
To study the metaproteome of a biogas-producing microbial community, fermentation samples were taken...
Jünemann S, Kleinbölting N, Jaenicke S, et al. Bioinformatics for NGS-based metagenomics and the app...
Schlüter A, Bekel T, Diaz NN, et al. The metagenome of a biogas-producing microbial community of a p...
The aim of this work was to elucidate the microbial ecology in twelve mesophilic and thermophilic fu...
Next-generation sequencing technology allows culture- independent analysis of species and genes pres...
The microbial diversity in anaerobic digestion (AD) is important because it affects process robustne...
Background: Biogas production is an attractive technology for a sustainable generation of renewable ...
Zakrzewski M, Bekel T, Ander C, et al. MetaSAMS - A novel software platform for taxonomic classifica...
Zakrzewski M, Goesmann A, Jaenicke S, et al. Profiling of the metabolically active community from a ...
Stolze Y, Bremges A, Maus I, Pühler A, Sczyrba A, Schlüter A. Targeted in situ metatranscriptomics f...
Key Words microbial ecology, environmental genomics, community genomics, culture-independent, and un...
Hanreich A, Schimpf U, Zakrzewski M, et al. Metagenome and metaproteome analyses of microbial commun...