Register      Login
Marine and Freshwater Research Marine and Freshwater Research Society
Advances in the aquatic sciences

Articles citing this paper

Limnology of Organic Lake, Antarctica, a meromictic lake that contains high concentrations of dimethyl sulfide

PD Franzmann, PP Deprez, HR Burton and J van den Hoff
38(3) pp.409 - 417


28 articles found in Crossref database.

A geolipid characterization of Organic Lake — a hypersaline meromictic Antarctic lake
Rogerson Jill H., Johns R.B.
Organic Geochemistry. 1996 25(1-2). p.1
Poles Apart: Arctic and Antarctic Octadecabacter strains Share High Genome Plasticity and a New Type of Xanthorhodopsin
Vollmers John, Voget Sonja, Dietrich Sascha, Gollnow Kathleen, Smits Maike, Meyer Katja, Brinkhoff Thorsten, Simon Meinhard, Daniel Rolf, Janssen Paul Jaak
PLoS ONE. 2013 8(5). p.e63422
Genome Analysis of a Verrucomicrobial Endosymbiont With a Tiny Genome Discovered in an Antarctic Lake
Williams Timothy J., Allen Michelle A., Ivanova Natalia, Huntemann Marcel, Haque Sabrina, Hancock Alyce M., Brazendale Sarah, Cavicchioli Ricardo
Frontiers in Microbiology. 2021 12
Dimethysulfide concentrations in the ocean close to the antarctic continent
Gibson John A.E., Garrick Russell C., Burton Harry R., McTaggart Andrew R.
Geomicrobiology Journal. 1988 6(3-4). p.179
Isolation and properties of methanesulfonate‐degrading Afipia felis from Antarctica and comparison with other strains of A. felis
Moosvi S. Azra, Pacheco Catarina C., McDonald Ian R., De Marco Paolo, Pearce David A., Kelly Donovan P., Wood Ann P.
Environmental Microbiology. 2005 7(1). p.22
Flectobacillus glomeratus sp. nov., a Curved, Nonmotile, Pigmented Bacterium Isolated from Antarctic Marine Environments
McGuire A.J., Franzmann P.D., McMeekin T.A.
Systematic and Applied Microbiology. 1987 9(3). p.265
Heterotrophic bacteria in Antarctic lacustrine and glacial environments
Laybourn-Parry Johanna, Pearce David
Polar Biology. 2016 39(12). p.2207
Dimethylsulfide and the algaPhaeocystis pouchetii in antarctic coastal waters
Gibson J. A. E., Garrick R. C., Burton H. R., McTaggart A. R.
Marine Biology. 1990 104(2). p.339
Molecular detection and isolation from Antarctica of methylotrophic bacteria able to grow with methylated sulfur compounds
Azra Moosvi S., McDonald Ian R., Pearce David A., Kelly Donovan P., Wood Ann P.
Systematic and Applied Microbiology. 2005 28(6). p.541
Dimorphism in the Antarctic cryptophyte Geminigera cryophila (Cryptophyceae)
van den Hoff John, Bell Elanor, Whittock Lucy, Valentin K.
Journal of Phycology. 2020 56(4). p.1028
Metagenomic insights into strategies of carbon conservation and unusual sulfur biogeochemistry in a hypersaline Antarctic lake
Yau Sheree, Lauro Federico M, Williams Timothy J, DeMaere Matthew Z, Brown Mark V, Rich John, Gibson John A E, Cavicchioli Ricardo
The ISME Journal. 2013 7(10). p.1944
Past and Present Water Column Anoxia (2006)
Coolen Marco J.L., Muyzer Gerard, Schouten Stefan, Volkman John K., Damsté Jaap S. Sinninghe
Advances in Microbial Ecology (1990)
Kelly Don P., Smith Neil A.
Evidence of density currents with the potential to promote meromixis in ice-covered saline lakes
Ferris John M., Gibson John A.E., Burton Harry R.
Palaeogeography, Palaeoclimatology, Palaeoecology. 1991 84(1-4). p.99
Encyclopedia of Biodiversity (2001)
Morita Richard Y., Moyer Craig L.
Volatile compounds in meromictic Antarctic lakes and basins
Roberts N.J., Burton H.R.
Chemosphere. 1994 29(8). p.1627
Reduced sulfur gases in saline lakes of the Vestfold Hills, Antarctica
Gibson John A.E., Garrick Russell C., Franzmann Peter D., Deprez Patrick P., Burton Harry R.
Palaeogeography, Palaeoclimatology, Palaeoecology. 1991 84(1-4). p.131
General and Applied Aspects of Halophilic Microorganisms (1991)
Franzmann P. D.
The microbial composition of three limnologically disparate hypersaline Antarctic lakes
Bowman John P., McCammon Sharee A., Rea Suzanne M., McMeekin Tom A.
FEMS Microbiology Letters. 2000 183(1). p.81
Encyclopedia of Biodiversity (2001)
Morita Richard Y., Moyer Craig L.
Microbial cycling of organosulfur gases in marine and freshwater environments
Kiene Ronald P.
SIL Communications, 1953-1996. 1996 25(1). p.137
Halomonas neptunia sp. nov., Halomonas sulfidaeris sp. nov., Halomonas axialensis sp. nov. and Halomonas hydrothermalis sp. nov.: halophilic bacteria isolated from deep-sea hydrothermal-vent environments
Kaye Jonathan Z., Márquez M. Carmen, Ventosa Antonio, Baross John A.
International Journal of Systematic and Evolutionary Microbiology . 2004 54(2). p.499
Virophage control of antarctic algal host–virus dynamics
Yau Sheree, Lauro Federico M., DeMaere Matthew Z., Brown Mark V., Thomas Torsten, Raftery Mark J., Andrews-Pfannkoch Cynthia, Lewis Matthew, Hoffman Jeffrey M., Gibson John A., Cavicchioli Ricardo
Proceedings of the National Academy of Sciences. 2011 108(15). p.6163
A numerical taxonomic study of some pigmented bacteria isolated from Organic Lake, an antarctic hypersaline lake
Dobson S. J., James S. R., Franzmann P. D., McMeekin T. A.
Archives of Microbiology. 1991 156(1). p.56
Novel N4 Bacteriophages Prevail in the Cold Biosphere
Zhan Yuanchao, Buchan Alison, Chen Feng, Schaffner D. W.
Applied and Environmental Microbiology. 2015 81(15). p.5196
Sedimentological and stable-isotope evolution of lakes in the Vestfold Hills, Antarctica
Bird Michael I., Chivas Allan R., Radnell Christopher J., Burton Harry R.
Palaeogeography, Palaeoclimatology, Palaeoecology. 1991 84(1-4). p.109
Microbial ecology of an Antarctic hypersaline lake: genomic assessment of ecophysiology among dominant haloarchaea
Williams Timothy J, Allen Michelle A, DeMaere Matthew Z, Kyrpides Nikos C, Tringe Susannah G, Woyke Tanja, Cavicchioli Ricardo
The ISME Journal. 2014 8(8). p.1645
Effect of temperature on the growth rates of halotolerant and halophilic bacteria isolated from Antarctic saline lakes
McMeekin T. A., Franzmann P. D.
Polar Biology. 1988 8(4). p.281

Committee on Publication Ethics


Abstract Export Citation Get Permission