A single-cell sequencing approach to the classification of large, vacuolated sulfur bacteria

Author:

Salman Verena,Amann Rudolf,Girnth Anne-Christin,Polerecky Lubos,Bailey Jake V.,Høgslund Signe,Jessen Gerdhard,Pantoja Silvio,Schulz-Vogt Heide N.

Publisher

Elsevier BV

Subject

Applied Microbiology and Biotechnology,Ecology, Evolution, Behavior and Systematics,Microbiology

Reference84 articles.

1. Phylogenetic affinity of a wide, vacuolate, nitrate-accumulating Beggiatoa sp. from Monterey Canyon, California, with Thioploca spp.;Ahmad;Appl. Environ. Microbiol.,1999

2. Cultivated Beggiatoa spp. define the phylogenetic root of morphologically diverse, noncultured, vacuolate sulfur bacteria;Ahmad;Can. J. Microbiol.,2006

3. Aranda, C., Paredez, J., Valenzuela, C., Lam, P., Guillou, L.G. Coexistence of Beggiatoa spp., Delta-, Epsilonproteobacteria and Fusibacter in organically-enriched salmon farm sediment in southern Chile. EMBL/GenBank/DDBJ accession numbers FJ814745, FJ875195–FJ875199.

4. Evidence of giant sulphur bacteria in Neoproterozoic phosphorites;Bailey;Nature,2007

5. Bailey, J.V., Salman, V., Rouse, G.W., Schulz-Vogt, H.N., Levin, L.A., Orphan, V.J. Dimorphism in methane seep-dwelling ecotypes of the largest known bacteria, in preparation.

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