Untapped microbial composition along a horizontal oxygen gradient in a Costa Rican volcanic influenced acid rock drainage system
Arce-Rodriguez, A.; Puente-Sanchez, F.; Avendano, R.; Libby, E.; Mora-Amador, R.; Rojas, K.; Pieper, D. H.; Chavarria, M.
Show abstract
Based on the analysis of 16S rRNA gene metabarcoding, here we report the shift in the microbial community structure along a horizontal oxygen gradient (0.40-6.06 mg L-1) in a volcanic influenced acid rock drainage (VARD) environment, known as San Cayetano (Cartago, Costa Rica; pH =2.94-3.06, sulfate ~0.87-1.19 g L-1, iron ~35-61 mg L-1). This VARD is dominated by microorganisms involved in the geochemical cycling of iron, sulfur and nitrogen; however, the identity of the species changes with the oxygen gradient along the river course. The anoxic spring of San Cayetano is dominated by a putative anaerobic sulfate-reducing Deltaproteobacterium as well as sulfur-oxidizing bacteria (such as Acidithiobacillus or Sulfobacillus), which favor the process of dissolution of sulfide minerals and oxidation of H2S. In oxic conditions, aerobic iron-oxidizers (Leptospirillum, Acidithrix, Ferritrophicum, Ferrovum) and heterotrophic bacteria (Burkholderiaceae Betaproteobacterium, Trichococcus, Acidocella) were identified among others. Thermoplasmatales archaea closely related to environmental phylotypes found in other ARD/AMD niches were also found throughout the entire ecosystem. This work describes the changes in bacterial diversity, and possible metabolic activities occurring along a horizontal oxygen gradient in a volcanic influenced acid rock drainage system.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Spatial and Temporal Dynamics at an Actively Silicifying Hydrothermal System 96%
- Comparative analysis of microbial diversity across temperature gradients in hot springs from Yellowstone and Iceland 96%
- Response relationships between CO2, CH4 and N2O emissions and microbial functional groups in wetland sediments after trace metal addition. 96%
Similar papers in this journal
- Legacy copper/nickel mine tailings potentially harbor novel iron/sulfur cycling microorganisms within highly variable communities 96%
- Seasonal Patterns of Viromes in Urban Aquatic Environments of Manitoba 95%
- Viral enumeration using cost-effective wet-mount epifluorescence microscopy for aquatic ecosystems and modern microbialites 94%
Similar papers in this journal
- Impact of temperature on Legionella pneumophila, its protozoan host cells, and the microbial diversity of the biofilm community of a pilot cooling tower 96%
- Characterisation of the bacterial microbiota of a landfill-contaminated confined aquifer undergoing intrinsic remediation 96%
- The presence of SARS-CoV-2 RNA in different freshwater environments in urban settings determined by RT-qPCR: implications for water safety 96%
Similar papers in this journal
- Time series metagenomic sampling of the Thermopyles, Greece, geothermal springs reveals stable microbial communities dominated by novel sulfur-oxidizing chemoautotrophs 96%
- Sediments from a seasonally euxinic coastal ecosystem show high nitrogen cycling potential 96%
- Microbial communities from weathered outcrops of a sulfide-rich ultramafic intrusion, and implications for mine waste management 95%
Similar papers in this journal
- Seafloor Incubation Experiments at Deep-Sea Hydrothermal Vents Reveal Distinct Biogeographic Signatures of Autotrophic Communities 97%
- A ubiquitous and diverse methanogenic community drives microbial methane cycling in eutrophic coastal sediments 96%
- Sea foams are ephemeral hotspots for distinctive bacterial communities contrasting sea-surface microlayer and underlying surface water 95%
"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.