Core and complex lipids of several new hyperthermophilic archaeal isolates were analyzed. The organisms belong to the Sulfolobales,Archaeoglobus, Pyrobaculum, and Methanococcus. A detailed structural investigation of complex lipids of Pyrobaculum species is reported. The different lipid structures are of help for a rapid and simple phylogenetic classification of the new isolates. They are in agreement with the classification based on other features
Abstract One of the most distinctive characteristics of Archaea is their unique lipids. While the ge...
Polar membrane lipids of an archaeal microorganism recently isolated from the natural salt lake Fuen...
The lipid cores from Ignisphaera aggregans, a hyperthermophilic Crenarchaeon recently isolated from ...
Core and complex lipids of several new hyperthermophilic archaeal isolates were analyzed. The organi...
Core and complex lipids of several new hyperthermophilic archaeal isolates were analyzed. The organi...
The ether lipids of several thermophilic archaea (archaeobacteria) were compared by negative-ion fas...
Abstract: Elucidating the lipidome of Archaea is essential to understand their tolerance to extreme ...
International audienceElucidating the lipidome of Archaea is essential to understand their tolerance...
The lipidome of the marine hyperthermophilic archaeon Pyrococcus furiosus was studied by means of co...
The lipidome of the marine hyperthermophilic archaeon Pyrococcus furiosus was studied by means of co...
We analyzed the polar membrane lipids of 13 strains of halo(alkali)philic euryarchaea from hypersali...
Atmospheric pressure chemical ionization liquid chromatography–tandem mass spectrometry (APCI LC-MS/...
Liquid chromatography-tandem mass spectrometry of membrane lipid cores from Sulfolobus species revea...
We analyzed the polar membrane lipids of 13 strains of halo(alkali)philic euryarchaea from hypersali...
International audienceOne of the most distinctive characteristics of archaea is their unique lipids....
Abstract One of the most distinctive characteristics of Archaea is their unique lipids. While the ge...
Polar membrane lipids of an archaeal microorganism recently isolated from the natural salt lake Fuen...
The lipid cores from Ignisphaera aggregans, a hyperthermophilic Crenarchaeon recently isolated from ...
Core and complex lipids of several new hyperthermophilic archaeal isolates were analyzed. The organi...
Core and complex lipids of several new hyperthermophilic archaeal isolates were analyzed. The organi...
The ether lipids of several thermophilic archaea (archaeobacteria) were compared by negative-ion fas...
Abstract: Elucidating the lipidome of Archaea is essential to understand their tolerance to extreme ...
International audienceElucidating the lipidome of Archaea is essential to understand their tolerance...
The lipidome of the marine hyperthermophilic archaeon Pyrococcus furiosus was studied by means of co...
The lipidome of the marine hyperthermophilic archaeon Pyrococcus furiosus was studied by means of co...
We analyzed the polar membrane lipids of 13 strains of halo(alkali)philic euryarchaea from hypersali...
Atmospheric pressure chemical ionization liquid chromatography–tandem mass spectrometry (APCI LC-MS/...
Liquid chromatography-tandem mass spectrometry of membrane lipid cores from Sulfolobus species revea...
We analyzed the polar membrane lipids of 13 strains of halo(alkali)philic euryarchaea from hypersali...
International audienceOne of the most distinctive characteristics of archaea is their unique lipids....
Abstract One of the most distinctive characteristics of Archaea is their unique lipids. While the ge...
Polar membrane lipids of an archaeal microorganism recently isolated from the natural salt lake Fuen...
The lipid cores from Ignisphaera aggregans, a hyperthermophilic Crenarchaeon recently isolated from ...