Microbial mats, multilayered sheets of microorganisms often found in extreme environments, are increasingly gaining attention for their utility and influence on the global carbon cycle. However, our understanding of the organisms that define microbial mats and how they vary across environmental gradients remains limited, given the sparse sampling of these systems worldwide. Here we investigate a series of distinct microbial communities across a gradient of natural saline lakes on Kiritimati to define how mat communities in hypersaline lakes, where microbial mats have been previously assessed, differ from microbial communities in fresher lakes. Preliminary terminal restriction fragment length polymorphism analysis indicated that samples from...
Examination of variation in ecological communities can lead to an understanding of the forces that s...
Microbial mats are self-sustained, functionally complex ecosystems that make goodmodels for the unde...
Biogeochemical cycles are driven by the metabolic activity of microbial communities, yet the environ...
Microbial mats, multilayered sheets of microorganisms often found in extreme environments, are incre...
The Atacama Desert has extreme environmental conditions that allow the development of unique microbi...
Environmental parameters drive phenotypic and genotypic frequency variations in microbial communitie...
Environmental parameters drive phenotypic and genotypic frequency variations in microbial communitie...
On the Kiritimati atoll, several lakes exhibit microbial mat-formation under different hydrochemical...
Environmental parameters drive phenotypic and genotypic frequency variations in microbial communitie...
On the Kiritimati atoll, several lakes exhibit microbial mat-formation under different hydrochemical...
Much remains unknown about what drives microbial community structure and diversity. Highly structure...
Microbial mats are phylogenetically and functionally diverse benthic microbial communities, which ca...
Hypersaline ecosystems - aquatic environments where concentration of salt exceeds 35 g/L - host micr...
The Atacama Desert has extreme environmental conditions that allow the development of unique microbi...
On the Kiritimati atoll, several lakes exhibit microbial mat-formation under different hydrochemical...
Examination of variation in ecological communities can lead to an understanding of the forces that s...
Microbial mats are self-sustained, functionally complex ecosystems that make goodmodels for the unde...
Biogeochemical cycles are driven by the metabolic activity of microbial communities, yet the environ...
Microbial mats, multilayered sheets of microorganisms often found in extreme environments, are incre...
The Atacama Desert has extreme environmental conditions that allow the development of unique microbi...
Environmental parameters drive phenotypic and genotypic frequency variations in microbial communitie...
Environmental parameters drive phenotypic and genotypic frequency variations in microbial communitie...
On the Kiritimati atoll, several lakes exhibit microbial mat-formation under different hydrochemical...
Environmental parameters drive phenotypic and genotypic frequency variations in microbial communitie...
On the Kiritimati atoll, several lakes exhibit microbial mat-formation under different hydrochemical...
Much remains unknown about what drives microbial community structure and diversity. Highly structure...
Microbial mats are phylogenetically and functionally diverse benthic microbial communities, which ca...
Hypersaline ecosystems - aquatic environments where concentration of salt exceeds 35 g/L - host micr...
The Atacama Desert has extreme environmental conditions that allow the development of unique microbi...
On the Kiritimati atoll, several lakes exhibit microbial mat-formation under different hydrochemical...
Examination of variation in ecological communities can lead to an understanding of the forces that s...
Microbial mats are self-sustained, functionally complex ecosystems that make goodmodels for the unde...
Biogeochemical cycles are driven by the metabolic activity of microbial communities, yet the environ...