Microbial strategies of environmental adaptation revealed by trait-environmental relationships
Ren, M.; Hu, A.; Zhao, Z.; Yao, X.; Kimirei, I. A.; Zhang, L.; Wang, J.
Show abstract
Microbial trait variation along environment gradients is crucial to understanding their ecological adaptation mechanisms. With the increasing availability of microbial genomes, making full use of the genome-based traits to decipher their adaptation strategies becomes promising and urgent. Here, we examined microbial communities in water and sediments of 20 East African lakes with pH values ranging from 7.2 to 10.1 through taxonomic-profiling and genome-centric metagenomics. We identified functional traits important for microbial adaptation to the stresses of alkalinity and salinity based on the significant trait-environment relationships (TERs), including those involved in cytoplasmic pH homeostasis, compatible solute accumulation, cell envelope modification and energy requisition. By integrating these significant-TER traits, we further developed an environmental adaptation index to quantify the species-level adaptive capacity for environmental stresses, such as high pH environments. The adaptation index of pH showed consistently significant positive relationships with species pH optima across regional and global genomic datasets from freshwater, marine and soda lake ecosystems. The generality of the index for quantifying environmental adaptation was demonstrated by showing significant relationships with the species niche optima for the gradients of soil temperature and seawater salinity. These results highlight the importance of trait-environment relationships in facilitating the inference of microbial genomic-based adaptation mechanisms, and expand our understanding of ecological adaptative strategies along environmental gradients.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Data-driven identification of major axes of functional variation in bacteria 96%
- Environmental predictors of electroactive bacterioplankton in small boreal lakes. 96%
- Metabolic potential and survival strategies of microbial communities across extreme temperature gradients on Deception Island volcano, Antarctica 95%
Similar papers in this journal
- The role of land use types and water chemical properties in structuring the microbiomes of a connected lakes system 96%
- Abundance-occupancy relationships along taxonomic ranks reveal a consistency of niche differentiation in marine bacterioplankton with distinct lifestyles 95%
- Facilitative interaction networks in experimental microbial community dynamics 95%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- The relationship between land cover and microbial community composition in European lakes 96%
- Aquatic microbial community is partially functionally redundant: insights from an in situ reciprocal transplant experiment 96%
- Life on the edge: microbial diversity, resistome, and virulome in soils from the Union Glacier cold desert 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.