Thiomicrospira species are ubiquitously found in various marine environments and appear particularly common in hydrothermal vent systems. Members of this lineage are commonly classified as sulfur-oxidizing chemolithoautotrophs. Although sequencing of Thiomicrospira crunogena's genome has revealed genes that encode enzymes for hydrogen uptake activity and for hydrogenase maturation and assembly, hydrogen uptake ability has so far not been reported for any Thiomicrospira species. We isolated a Thiomicrospira species (SP-41) from a deep sea hydrothermal vent and demonstrated that it can oxidize hydrogen. We show in vivo hydrogen consumption, hydrogen uptake activity in partially purified protein extracts and transcript abundance of hydrogenase...
Sulfurimonas denitrificans was originally isolated from coastal marine sediments. It can grow with t...
Strain Hiromi 1, a sulfur-oxidizing gammaproteobacterium was isolated from a hydrothermal vent chimn...
Presented here is the complete genome sequence of Thiomicrospira crunogena XCL-2, representative of...
Thiomicrospira were originally characterized as sulfur-oxidizing chemolithoautotrophs. Attempts to g...
International audienceThe discovery of deep-sea hydrothermal vents in 1977 revolutionized our unders...
The first Thiomicrospira species was isolated in 1972 and was described as a sulfur‐oxidizing chemol...
The discovery of deep-sea hydrothermal vents in 1977 revolutionized our understanding of the energy ...
The first Thiomicrospira species was isolated in 1972 and was described as a sulfur‐oxidizing chemol...
The discovery of deep-sea hydrothermal vents in 1977 revolutionized our understanding of the energy ...
Hydrogen is one of the most common elements on Earth. The enzymes converting molecular hydrogen into...
Deep-sea hydrothermal vents may provide one of the largest reservoirs on Earth for hydrogen-oxidizin...
Chemolithoautotrophic bacteria from the genera Hydrogenovibrio, Thiomicrorhabdus, and Thiomicrospira...
A chemolithoautotrophic strain of the family Beggiatoaceae, Beggiatoa sp. strain 35Flor, was found t...
<div><p>Strain Hiromi 1, a sulfur-oxidizing gammaproteobacterium was isolated from a hydrothermal ve...
Strain Hiromi 1, a sulfur-oxidizing gammaproteobacterium was isolated from a hydrothermal vent chimn...
Sulfurimonas denitrificans was originally isolated from coastal marine sediments. It can grow with t...
Strain Hiromi 1, a sulfur-oxidizing gammaproteobacterium was isolated from a hydrothermal vent chimn...
Presented here is the complete genome sequence of Thiomicrospira crunogena XCL-2, representative of...
Thiomicrospira were originally characterized as sulfur-oxidizing chemolithoautotrophs. Attempts to g...
International audienceThe discovery of deep-sea hydrothermal vents in 1977 revolutionized our unders...
The first Thiomicrospira species was isolated in 1972 and was described as a sulfur‐oxidizing chemol...
The discovery of deep-sea hydrothermal vents in 1977 revolutionized our understanding of the energy ...
The first Thiomicrospira species was isolated in 1972 and was described as a sulfur‐oxidizing chemol...
The discovery of deep-sea hydrothermal vents in 1977 revolutionized our understanding of the energy ...
Hydrogen is one of the most common elements on Earth. The enzymes converting molecular hydrogen into...
Deep-sea hydrothermal vents may provide one of the largest reservoirs on Earth for hydrogen-oxidizin...
Chemolithoautotrophic bacteria from the genera Hydrogenovibrio, Thiomicrorhabdus, and Thiomicrospira...
A chemolithoautotrophic strain of the family Beggiatoaceae, Beggiatoa sp. strain 35Flor, was found t...
<div><p>Strain Hiromi 1, a sulfur-oxidizing gammaproteobacterium was isolated from a hydrothermal ve...
Strain Hiromi 1, a sulfur-oxidizing gammaproteobacterium was isolated from a hydrothermal vent chimn...
Sulfurimonas denitrificans was originally isolated from coastal marine sediments. It can grow with t...
Strain Hiromi 1, a sulfur-oxidizing gammaproteobacterium was isolated from a hydrothermal vent chimn...
Presented here is the complete genome sequence of Thiomicrospira crunogena XCL-2, representative of...