Genomic patterns in the global soil microbiome emerge from microbial interactions
Crocker, K.; Chakraverti-Wuerthwein, M.; Li, Z.; Mani, M.; Gowda, K.; Kuehn, S.
Show abstract
Microbial metabolism sustains life on Earth. Sequencing surveys of communities in hosts, oceans, and soils have revealed ubiquitous patterns linking the microbes present, the genes they possess, and local environmental conditions. One prominent explanation for these patterns is environmental filtering: local conditions select strains with particular traits. However, filtering assumes ecological interactions do not influence patterns, despite the fact that interactions can and do play an important role in structuring communities. Here, we demonstrate the insufficiency of the environmental filtering hypothesis for explaining global patterns in topsoil microbiomes. Using denitrification as a model system, we find that the abundances of two characteristic genotypes trade-off with pH; nar gene abundances increase while nap abundances decrease with declining pH. Contradicting the filtering hypothesis, we show that strains possessing the Nar genotype are enriched in low pH conditions but fail to grow alone. Instead, the dominance of Nar genotypes at low pH arises from an ecological interaction with Nap genotypes that alleviates nitrite toxicity. Our study provides a roadmap for dissecting how global associations between environmental variables and gene abundances arise from environmentally modulated community interactions.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Microbial invasion of a toxic medium is facilitated by a resident community but inhibited as the community co-evolves 96%
- Halophilic microbial community compositional shift after a rare rainfall in the Atacama Desert 96%
- Soil microbial community response to corrinoids is shaped by a natural reservoir of vitamin B12. 96%
Similar papers in this journal
- Patterns of gene content and co-occurrence constrain the evolutionary path toward animal association in CPR bacteria 96%
- Genome evolution in bacteria isolated from million-year-old subseafloor sediments 95%
- Genomic features predict bacterial life history strategies in soil, as identified by metagenomic stable isotope probing 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.