Uranium mining fuels evolution in deep groundwater microbiomes
Xiu, W.; Bornemann, T. L. V.; Zhang, T.; Soares, A. R.; Xie, L.; Lian, G.; Weng, H.; Yang, B.; Gai, R.; Gao, Z.; Zhang, D.; Lloyd, J. R.; Guo, H.; Probst, A. J.
Show abstract
Deep-biosphere microbes have been underpinning global biogeochemical cycles throughout Earth history, yet their evolutionary responses to long-term anthropogenic disturbance remain poorly understood. Neutral-pH in-situ leaching (ISL), the dominant uranium-mining strategy, imposes persistent radiochemical and redox stress offering rare natural experiments across decades for observing subsurface microbial evolution. Here, by exploiting metagenomics and metatranscriptomics in examining microbial responses through various mining stages, we show that neutral U ISL causes substantial changes in microbial communities spanning 2,294 strains accompanied by diversification and selection of active microbial species. These changes occurred during elevated dissolved uranium and radiological activity which correlated with a substantial transcriptional change in energy metabolism, and with an overexpression of specific genes for oxidative-stress defence and DNA-repair pathways. Increased nucleotide diversity in 101 out of 392 species clusters and nonsynonymous/synonymous polymorphism ratios greater than one in 139 species clusters were predominantly observed in metatranscriptomes with elevated radiation, highlighting positive selection of transcriptionally active populations. These findings demonstrate that neutral U ISL drives functional and genetic diversification of subsurface microbiomes, revealing a dynamic and evolutionarily responsive deep biosphere.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Diverse secondary metabolites are expressed in particle-associated and free-living microorganisms of the permanently anoxic Cariaco Basin 96%
- Metabolically flexible microorganisms rapidly establish glacial foreland ecosystems 96%
- Metabolic interactions underpinning high methane fluxes across terrestrial freshwater wetlands 96%
Similar papers in this journal
- Occurrence of "under-the-radar" antibiotic resistance in anthropogenically affected produce 96%
- Depth-discrete metagenomics reveals the roles of microbes in biogeochemical cycling in the tropical freshwater Lake Tanganyika 96%
- Quantification of archaea-driven freshwater nitrification: from single cell to ecosystem level 96%
Similar papers in this journal
- Carbon monoxide exposure stimulates growth and activity of primary producers in diverse soil ecosystems 96%
- Mercury methylation trait dispersed across diverse anaerobic microbial guilds in a eutrophic sulfate-enriched lake 96%
- Using Culture-Enriched Phenotypic Metagenomics for Targeted High-Throughput Monitoring of Clinically-Important Fraction of Beta-Lactam Resistome 95%
Similar papers in this journal
- Sensitivity and consistency of long- and short-read metagenomics and epicPCR for the detection of antibiotic resistance genes and their bacterial hosts in wastewater 93%
- Integrated cellular and molecular responses to uranium chemotoxicity in the metal-tolerant microalga Coelastrella sp. PCV 93%
- Mechanistic insights into the success of xenobiotic degraders resolved from metagenomes of microbial enrichment cultures 91%
Similar papers in this journal
- Reductive dehalogenation by diverse microbes is central to biogeochemical cycles in deep-sea cold seeps 96%
- Expanding magnetic organelle biogenesis in the domain Bacteria 95%
- Single-colony sequencing reveals phylosymbiosis, co-phylogeny, and horizontal gene transfer between the cyanobacterium Microcystis and its microbiome 94%
"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.