Complex bacterial diversity of Guaymas Basin hydrothermal sediments revealed by synthetic long-read sequencing (LoopSeq)
Hinkle, J. E.; Chanton, J. P.; Moynihan, M. A.; Ruff, S. E.; Teske, A.
Show abstract
Hydrothermal sediments host phylogenetically diverse and physiologically complex microbial communities. Previous studies of microbial community structure in hydrothermal sediments have typically used short-read sequencing approaches. To improve on these approaches, we use LoopSeq, a high-throughput synthetic long-read sequencing method that has yielded promising results in analyses of microbial ecosystems, such as the human gut microbiome. In this study, LoopSeq is used to obtain near-full length (approximately 1400 - 1500 nucleotides) bacterial 16S rRNA gene sequences from hydrothermal sediments in Guaymas Basin. Based on these sequences, high-quality alignments and phylogenetic analyses provided new insights into previously unrecognized taxonomic diversity of sulfur-cycling microorganisms and their distribution along a lateral hydrothermal gradient. Detailed phylogenies for free-living and syntrophic sulfur-cycling bacterial lineages identified well-supported monophyletic clusters that have implications for the taxonomic classification of these groups. Particularly, we identify clusters within Candidatus Desulfofervidus that represent unexplored physiological and genomic diversity. In general, LoopSeq-derived 16S rRNA gene sequences aligned consistently with reference sequences in GenBank; however, chimeras were prevalent in sequences as affiliated with the thermophilic Candidatus Desulfofervidus and Thermodesulfobacterium, and in smaller numbers within the sulfur-oxidizing family Beggiatoaceae. Our analysis of sediments along a well-documented thermal and geochemical gradient show how sulfur-cycling bacteria of different taxonomic groups persist as active catalysts of the sulfur cycle throughout surficial hydrothermal sediments in the Guaymas Basin.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Extremely thermophilic endospores germinate and metabolise organic carbon in sediments heated to above 80°C 97%
- Microbial communities from weathered outcrops of a sulfide-rich ultramafic intrusion, and implications for mine waste management 97%
- Illuminating microbial species-specific effects on organic matter remineralization in marine sediments 97%
Similar papers in this journal
- Single-cell analysis reveals an active and heterotrophic microbiome in the Guaymas Basin deep subsurface with significant heterotrophic inorganic carbon fixation 97%
- Metabolic strategies shared by basement residents of the Lost City hydrothermal field 97%
- Seafloor incubation experiment with deep-sea hydrothermal vent fluid reveals effect of pressureand lag time on autotrophic microbial communities 96%
Similar papers in this journal
- Metabolic Potential of Microbial Communities in the Hypersaline Sediments of the Bonneville Salt Flats 98%
- Carbon Assimilation Strategies in Ultrabasic Groundwater: Clues from the Integrated Study of a Serpentinization-Influenced Aquifer 97%
- Extracellular electron transfer genes expressed by candidate flocking bacteria in cable bacteria sediment 96%
Similar papers in this journal
- Seafloor Incubation Experiments at Deep-Sea Hydrothermal Vents Reveal Distinct Biogeographic Signatures of Autotrophic Communities 98%
- A ubiquitous and diverse methanogenic community drives microbial methane cycling in eutrophic coastal sediments 97%
- Seasonal dynamics of the microbial methane filter in the water column of a eutrophic coastal basin 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.