2002
DOI: 10.1128/aem.68.1.316-325.2002
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Characterization of an Autotrophic Sulfide-Oxidizing Marine Arcobacter sp. That Produces Filamentous Sulfur

Abstract: A coastal marine sulfide-oxidizing autotrophic bacterium produces hydrophilic filamentous sulfur as a novel metabolic end product. Phylogenetic analysis placed the organism in the genus Arcobacter in the epsilon subdivision of the Proteobacteria. This motile vibrioid organism can be considered difficult to grow, preferring to grow under microaerophilic conditions in flowing systems in which a sulfide-oxygen gradient has been established. Purified cell cultures were maintained by using this approach. Essentiall… Show more

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Cited by 299 publications
(255 citation statements)
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“…This study is the first to our knowledge to retrieve a significant percentage of Arcobacter clones from a freshwater environment. A marine strain (Candidatus Arcobacter sulfidicus) that grows attached to solid substrates via filamentous sulfur strands in high-flow, microoxic, sulfidic environments has recently been described (Wirsen et al, 2002). Sulfide concentrations for growth of the marine Arcobacter (400-1200 mM) are broadly consistent with the Frasassi environment.…”
Section: Discussionmentioning
confidence: 99%
“…This study is the first to our knowledge to retrieve a significant percentage of Arcobacter clones from a freshwater environment. A marine strain (Candidatus Arcobacter sulfidicus) that grows attached to solid substrates via filamentous sulfur strands in high-flow, microoxic, sulfidic environments has recently been described (Wirsen et al, 2002). Sulfide concentrations for growth of the marine Arcobacter (400-1200 mM) are broadly consistent with the Frasassi environment.…”
Section: Discussionmentioning
confidence: 99%
“…(⩽94 or ⩽ 95%, respectively), whereas Otu7 was 95% similar to Candidatus Arcobacter (Wirsen et al, 2002). Deltaproteobacteria OTUs were most abundant at the later time points d45 and d49 and were dominated by Otu3 (496% of the Deltaproteobacteria).…”
Section: Succession In Chemosynthetic Wood Fall Mats D Kalenitchenko mentioning
confidence: 92%
“…Another dominant Epsilonproteobacteria (Otu8) was closely related to Arcobacter nitrofigilis (Pati et al, 2010), which is a chemoorganotrophic bacteria that use nitrate as electron acceptor. The white appearance of the biofilm may indicate the capacity of Otu8 to produce elemental sulfur from hydrogen sulfide oxidation as observed for Candidatus Arcobacter sulfidicus (Wirsen et al, 2002;Sievert et al, 2007). Hydrogen sulfide or organic compounds (used by the A. nitrofigilisrelated Otu8) were all shown to be breakdown products of wood degradation (Leschine, 1995; 6.6 6.8 7.0 7.2 7.4 7.6 7.…”
Section: Ecological Succession During Epixylic Mat Formationmentioning
confidence: 95%
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“…(Fujiwara et al, 2001;Fang et al, 2006). This physiological group is characterized by the ability to gain energy from the oxidation of sulfide and other reduced sulfur products, which drives fixation of CO 2 to organic carbon by means of the enzymes of the Calvin-Bassham-Benson (CBB) cycle, similar to those used by oxygenic phototrophs (Wirsen et al, 2002).…”
Section: Diversity Of Prokaryotic Ssu Rrnasmentioning
confidence: 99%