Nutrient parsimony shapes diversity and functionality in hyper-oligotrophic Antarctic soils
Van Goethem, M. W.; Vikram, S.; Hopkins, D. W.; Hall, G.; Woodborne, S.; Aspray, T. J.; Hogg, I. D.; Cowan, D. A.; Makhalanyane, T. P.
Show abstract
The balance of nutrients in soil is critical for microbial growth and function, and stoichiometric values below the Redfield ratio for C:N:P can negatively affect microbial ecosystem services. However, few studies have assessed the relationships between nutrient balance and biological productivity in extremely nutrient-poor habitats. The Mackay Glacier region of Eastern Antarctica is a hyper-oligotrophic ice-free desert and is an appropriate landscape to evaluate the effects of nutrient deficiency and imbalance on microbial community ecology. In a survey of multiple, widely dispersed soil samples from this region, we detected only low rates of microbial respiration, and observed that C:N:P ratios were well below those required for optimal activity. In silico metagenomic and soil isotopic ratio ({delta}15N) analyses indicated that the capacity for nitrogen fixation was low, but that soil microbial communities were enriched for soil nitrate assimilation processes, mostly associated with heterotrophic taxa.{delta} 13C isotope ratio data suggested that carbon dioxide was fixed principally via the Calvin cycle. Genes involved in this pathway were common to all metagenomes and were primarily attributed to members of the dominant soil bacterial phyla: Bacteroidetes and Acidobacteria. The identification of multiple genes encoding non-photoautotrophic RUBISCO and carbon dioxide dehydrogenase enzymes in both the metagenomic sequences and assembled MAGs is suggestive of a trace-gas scavenging physiology in members of these soil communities.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Resilient Antarctic soil bacteria consume trace gases across wide temperature ranges 97%
- Termite mounds contain distinct methanotroph communities that are kinetically adapted to elevated methane concentrations 96%
- Propagation of viral genomes by replicating ammonia-oxidising archaea during soil nitrification 96%
Similar papers in this journal
- The majority of microorganisms in gas hydrate bearing subseafloor sediments ferment macromolecules 96%
- A glimpse of the paleome in endolithic microbial communities 95%
- Adaptation to space conditions of novel bacterial species isolated from the International Space Station revealed by functional gene annotations and comparative genome analysis 95%
Similar papers in this journal
- Woeseiales transcriptional response in Arctic fjord surface sediment 96%
- Highly diverse - low abundance methanogenic communities in hypersaline microbial mats of Guerrero Negro B.C.S., assessed through microcosm experiments 95%
- Alpha-, beta-, and gamma-diversity of bacteria varies across global habitats 94%
Similar papers in this journal
"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.