Iron-oxidizing bacteria occupy a distinct environmental niche. These chemolithoautotrophic organisms require very little oxygen (when neutrophilic) or outcompete oxygen for access to Fe(II) (when acidophilic). The utilization of Fe(II) as an electron donor makes them strong analog organisms for any potential life that could be found on Mars. Despite their importance to the elucidation of early life on, and potentially beyond, Earth, many details of their metabolism remain unknown. By using on-line thermochemolysis and gas chromatography?mass spectrometry (GC-MS), a distinct signal for a low-molecular-weight molecule was discovered in multiple iron-oxidizing isolates as well as several iron-dominated environmental samples, from freshwater an...
In the subsurface, the interplay between microbial communities and the surrounding mineral substrate...
In the context of astrobiological missions to Mars, the key question is what biosignatures to search...
Comparisons between the preservation potential of Mars-analog environments have historically been qu...
The question of life on Mars has been in focus of astrobiological research for several decades, and ...
Biogeochemistry investigates chemical cycles which influence or are influenced by biological activit...
The preservation of biosignatures on Mars is largely associated with extensive deposits of clays for...
Iron (Fe) has long been a recognized physiological requirement for life, yet for many microorganisms...
International audienceThis work considers the hypothetical viability of microbial nitrate-dependent ...
Samples that are likely to contain evidence of past life on Mars must have been deposited when and w...
Mars is a planet of great interest for Astrobiology since its past environmental conditions are thou...
Debate exists regarding whether abiotic or biotic mechanisms were responsible for the oxidation of F...
Acidic iron- and sulfur-rich streams are appropriate analogues for the late Noachian and early Hespe...
The climate on the face of Mars is hostile towards life. Thus, any organisms potentially living on M...
Fe2+ was an abundant component of ancient anoxic oceans and could have acted as a respiratory electr...
Introduction: Several decades dedicated to the study of Mars has enabled scientists to understand th...
In the subsurface, the interplay between microbial communities and the surrounding mineral substrate...
In the context of astrobiological missions to Mars, the key question is what biosignatures to search...
Comparisons between the preservation potential of Mars-analog environments have historically been qu...
The question of life on Mars has been in focus of astrobiological research for several decades, and ...
Biogeochemistry investigates chemical cycles which influence or are influenced by biological activit...
The preservation of biosignatures on Mars is largely associated with extensive deposits of clays for...
Iron (Fe) has long been a recognized physiological requirement for life, yet for many microorganisms...
International audienceThis work considers the hypothetical viability of microbial nitrate-dependent ...
Samples that are likely to contain evidence of past life on Mars must have been deposited when and w...
Mars is a planet of great interest for Astrobiology since its past environmental conditions are thou...
Debate exists regarding whether abiotic or biotic mechanisms were responsible for the oxidation of F...
Acidic iron- and sulfur-rich streams are appropriate analogues for the late Noachian and early Hespe...
The climate on the face of Mars is hostile towards life. Thus, any organisms potentially living on M...
Fe2+ was an abundant component of ancient anoxic oceans and could have acted as a respiratory electr...
Introduction: Several decades dedicated to the study of Mars has enabled scientists to understand th...
In the subsurface, the interplay between microbial communities and the surrounding mineral substrate...
In the context of astrobiological missions to Mars, the key question is what biosignatures to search...
Comparisons between the preservation potential of Mars-analog environments have historically been qu...