A railroad causeway across Great Salt Lake, Utah (GSL), has restricted water flow since its construction in 1959, resulting in a more saline North Arm (NA; 24%-31% salinity) and a less saline South Arm (SA; 11%-14% salinity). Here, we characterized microbial carbonates collected from the SA and the NA to evaluate the effect of increased salinity on community composition and abundance and to determine whether the communities present in the NA are still actively precipitating carbonate or if they are remnant features from prior to causeway construction. SSU rRNA gene abundances associated with the NA microbialite were three orders of magnitude lower than those associated with the SA microbialite, indicating that the latter community is more p...
The saline soils comprising the shoreline of Great Salt Lake, Utah (GSL) provide a unique habitat fo...
12 pagesInternational audienceThe Great Salt Lake, Utah, USA is a shallow, hypersaline, intracontine...
International audienceCyanobacteria are thought to play a key role in carbonate formation due to the...
A railroad causeway across Great Salt Lake, Utah (GSL), has restricted water flow since its construc...
Microbialites are widespread in modern and fossil hypersaline environments, where they provide a uni...
Microbialites are widespread in modern and fossil hypersaline environments, where they provide a uni...
Side-scan sonar and Compressed High Intensity Radar Pulse mapping of Great Salt Lake, Utah, linked t...
ABSTRACT We report the first census of natural microbial communities of the Bonneville Salt Flats (B...
Several bacterial species influence carbonate mineral precipitation by modifying pH, alkalinity, Ca²...
Microbial biodiversity is difficult to measure in extreme environments due to the inability to cultu...
Hypersaline environments represent some of the most challenging settings for life on Earth. Extremel...
Org. and inorg. stable isotopes of lacustrine carbonate sediments are commonly used in reconstructio...
Hypersaline environments represent some of the most challenging settings for life on Earth. Extremel...
Previous investigations of the salinity effects on the microbial community composition have largely ...
The saline soils comprising the shoreline of Great Salt Lake, Utah (GSL) provide a unique habitat fo...
12 pagesInternational audienceThe Great Salt Lake, Utah, USA is a shallow, hypersaline, intracontine...
International audienceCyanobacteria are thought to play a key role in carbonate formation due to the...
A railroad causeway across Great Salt Lake, Utah (GSL), has restricted water flow since its construc...
Microbialites are widespread in modern and fossil hypersaline environments, where they provide a uni...
Microbialites are widespread in modern and fossil hypersaline environments, where they provide a uni...
Side-scan sonar and Compressed High Intensity Radar Pulse mapping of Great Salt Lake, Utah, linked t...
ABSTRACT We report the first census of natural microbial communities of the Bonneville Salt Flats (B...
Several bacterial species influence carbonate mineral precipitation by modifying pH, alkalinity, Ca²...
Microbial biodiversity is difficult to measure in extreme environments due to the inability to cultu...
Hypersaline environments represent some of the most challenging settings for life on Earth. Extremel...
Org. and inorg. stable isotopes of lacustrine carbonate sediments are commonly used in reconstructio...
Hypersaline environments represent some of the most challenging settings for life on Earth. Extremel...
Previous investigations of the salinity effects on the microbial community composition have largely ...
The saline soils comprising the shoreline of Great Salt Lake, Utah (GSL) provide a unique habitat fo...
12 pagesInternational audienceThe Great Salt Lake, Utah, USA is a shallow, hypersaline, intracontine...
International audienceCyanobacteria are thought to play a key role in carbonate formation due to the...