The genomic basis of trophic strategy in marine bacteria
Results
Complete Genome Sequence of Nitrobacter hamburgensis X14 and Comparative Genomic Analysis of Species within the Genus Nitrobacter▿ †
Identification of novel biomass‐degrading enzymes from genomic dark matter: Populating genomic sequence space with functional annotation
Genomic Analysis of the Yet-Uncultured Binatota Reveals Broad Methylotrophic, Alkane-Degradation, and Pigment Production Capacities
Genomic Analysis Enlightens Agaricales Lifestyle Evolution and Increasing Peroxidase Diversity
Comparative Genomic Analysis of the Class Epsilonproteobacteria and Proposed Reclassification to Epsilonbacteraeota (phyl. nov.)
Genomic Analysis of “Elusimicrobium minutum,” the First Cultivated Representative of the Phylum “Elusimicrobia” (Formerly Termite Group 1)▿ †
Comparative genomic and physiological analysis provides insights into the role of Acidobacteria in organic carbon utilization in Arctic tundra soils
The first two chromosome‐scale genome assemblies of American hazelnut enable comparative genomic analysis of the genus Corylus
Genomic analysis of three Bifidobacterium species isolated from the calf gastrointestinal tract
Marine Synechococcus isolates representing globally abundant genomic lineages demonstrate a unique evolutionary path of genome reduction without a decrease in GC content
Genomic Analysis of Aspergillus Section Terrei Reveals a High Potential in Secondary Metabolite Production and Plant Biomass Degradation