Insights into the diversity and survival strategies of soil bacterial isolates from the Atacama Desert
Reverdy, A.; Hathaway, D.; Jha, J.; Sullivan, J.; Michaels, G.; Diaz Mac-Adoo, D.; Riquelme, C.; Chai, Y.; Godoy, V. G.
Show abstract
The Atacama Desert, the driest and oldest desert in the world, is a hostile environment for life. Despite the inhospitable conditions, bacterial sequences detected in this location suggest rich bacterial life. This study tested the idea that certain bacteria would thrive in this location and that some of them could be cultivated permitting further characterization. Environmental surface soil samples from 1-5 cm deep were collected from 18 diverse locations within the Atacama Desert. To assess the bacterial taxa, diversity, and abundance, Illumina 16S rRNA gene sequencing was performed directly on soil samples. Bacteria were also cultured from the samples. We have a collection of 74 unique bacterial isolates after cultivation and confirmation by 16S rRNA gene sequencing. Pigmentation, biofilm formation, antibiotic production against Escherichia coli MG1655 and Staphylococcus aureus HG003, and antibiotic resistance were assessed on these isolates. We found that approximately a third of the colonies produced pigments, 80% of isolates formed biofilms, many isolates had antibiotic activity against E. coli and/or S. aureus, and many were resistant to commercial antibiotics. The functional characterization of these isolates gives us insight into the adaptive bacterial strategies in harsh environments and enables us to learn about their possible use in agriculture, healthcare, or biotechnology. Originality-Significant StatementThis study provides the first microbial diversity analysis from Atacama Desert soil, presents the cultivation and isolation of 74 unique bacterial isolates, many of which may be novel genera and species, and explores pigment production, antibiotic production and resistance, and unique biofilm development as bacterial survival strategies for living within extreme environments.
Matching journals
The top 6 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%
- Wine terroir and the soil microbiome: an amplicon sequencing-based assessment of the Barossa Valley and its sub-regions 96%
- Phototrophic co-cultures from extreme environments: community structure and potential value for fundamental and applied research 96%
Similar papers in this journal
- Differences in the genomic potential of soil bacterial and viral communities between urban greenspaces and natural arid soils 95%
- Legacy copper/nickel mine tailings potentially harbor novel iron/sulfur cycling microorganisms within highly variable communities 94%
- The effects of soil depth on the structure of microbial communities in agricultural soils in Iowa, USA 94%
Similar papers in this journal
- Insights into the desert living skin microbiome: geography, soil depth, and crust type affect biocrust microbial communities and networks in Mojave Desert, USA 96%
- Biogeographical patterns in soil bacterial communities across the Arctic region 96%
- Exploring methanogenic archaea and their thermal responses in the glacier-fed stream sediments of Rongbuk River Basin, Mt. Everest 95%
Similar papers in this journal
- Carbon Assimilation Strategies in Ultrabasic Groundwater: Clues from the Integrated Study of a Serpentinization-Influenced Aquifer 96%
- Metabolic Potential of Microbial Communities in the Hypersaline Sediments of the Bonneville Salt Flats 95%
- Disturbance-Diversity Relationships of Microbial Communities Change Based on Growth Substrate 94%
Similar papers in this journal
- Rhizospheric bacteria from the Atacama Desert hyper-arid core: cultured community dynamics and plant growth promotion 97%
- Response of total (DNA) and metabolically active (RNA) microbial communities in Miscanthus x giganteus cultivated soil to different nitrogen fertilization rates 95%
- Whats under the Christmas tree? Soil acidification alters fir tree rhizosphere bacterial and eukaryotic communities, their interactions, and functional traits 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.