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"211", "lastPage" : "235", "firstPageOrInternalIdForSort" : "211", "pageLength" : 25, "publishedYear" : 2013, "abstractText" : "Lake Hévíz is the largest natural warm water lake of Europe. The curative mud of the lake comprises volcanic and marsh components although their species composition is hardly known yet. The aim of the present study was to gain information about the distribution and species diversity of bacterial communities inhabiting the sediment of Lake Hévíz using cultivation-based and molecular cloning methods. Samples from two depths and locations were taken in 2004 and 2007. Representatives of the altogether 255 bacterial isolates were affiliated with the phyla Firmicutes, Actinobacteria, Proteobacteria and Bacteroidetes. The most abundant groups belonged to the genus Bacillus (Firmicutes). Many of Lake Hévíz isolates showed the highest sequence similarity to bacteria known to be plant associated or members of normal human microbiota as well as participating in decomposition of highly resistant organic materials. In the three clone libraries, phylotypes belonging to altogether different phyla (Firmicutes, Actinobacteria, Proteobacteria, Bacteroidetes, Cyanobacteria, Chlorobi, Chloroflexi, Deferribacteres, Nitrospirae, Spirochaetes and Verrucomicrobia) were revealed from which members of Gammaproteobacteria and Cyanobacteria proved to be the most abundant. Regardless of the sampling times and methodology used, high spatial heterogeneities of bacterial community structures were characteristic of the sediment of Lake Hévíz.", "subjects" : [ { "otype" : "Classification", "mtid" : 12125, "link" : "/api/classification/12125", "label" : "Általános orvostudomány", "published" : true, "snippet" : true }, { "otype" : "Classification", "mtid" : 10545, "link" : "/api/classification/10545", "label" : "Biológiai tudományok", "published" : true, "snippet" : true }, { "otype" : "Classification", "mtid" : 12548, "link" : "/api/classification/12548", "label" : "Egyéb orvostudományok", "published" : true, "snippet" : true }, { "otype" : "Classification", "mtid" : 12215, "link" : "/api/classification/12215", "label" : "Klinikai orvostan", "published" : true, "snippet" : true } ], "keywords" : [ { "otype" : "Keyword", "mtid" : 1699, "link" : "/api/keyword/1699", "label" : "ARTICLE", "published" : true, "oldId" : 1699, "snippet" : true }, { "otype" : 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Evol. Microbiol., 56, pp. 2381-2385", "listPosition" : 38, "published" : false, "snippet" : true }, { "otype" : "Reference", "mtid" : 1710029, "link" : "/api/reference/1710029", "label" : "39. Behrendt, U., Schumann, P., Meyer, J.M., Ulrich, A., Pseudomonas cedrina subsp.2 fulgida subsp. nov., a fluorescent bacterium isolated from the phyllosphere of grasses; Emended description of Pseudomonas cedrina and description of Pseudomonas cedrina subsp. cedrina subsp. Nov (2009) Int. J. Syst. Evol. Microbiol., 59, pp. 1331-1335", "listPosition" : 39, "published" : false, "snippet" : true }, { "otype" : "Reference", "mtid" : 1710030, "link" : "/api/reference/1710030", "label" : "40. Vaz-Moreira, I., Lopes, A.R., Faria, C., Spröer, C., Schumann, P., Nunes, O.C., Manaia, C.M., Microbacterium invictum sp. nov., isolated from homemade compost (2009) Int. J. Syst. Evol. Microbiol., 59, pp. 2036-2041", "listPosition" : 40, "published" : false, "snippet" : true }, { "otype" : "Reference", "mtid" : 1710031, "link" : "/api/reference/1710031", "label" : "41. Jensen, H.L., The genus micromonospora ørskov, a little known group of soil microorganisms (1930) Proc. Linn. Soc. N. S. Wales, 55, pp. 231-248", "listPosition" : 41, "published" : false, "snippet" : true }, { "otype" : "Reference", "mtid" : 1710032, "link" : "/api/reference/1710032", "label" : "42. Jensen, H.L., Contributions to our knowledge of the actinomycetales. III. Further observations on the genus Micromonospora (1932) Linn. Soc. N. S. Wales, 57, pp. 173-180", "listPosition" : 42, "published" : false, "snippet" : true }, { "otype" : "Reference", "mtid" : 1710033, "link" : "/api/reference/1710033", "label" : "43. Kovács, G., Burghardt, J., Pradella, S., Schumann, P., Stackebrandt, E., Márialigeti, K., Kocuria palustris sp. nov. and Kocuria rhizophila sp. nov., isolated from the rhizoplane of the narrow-leaved cattail (Typha angustifolia) (1999) Int. J. Syst. Bacteriol., 49, pp. 167-173", "listPosition" : 43, "published" : false, "snippet" : true }, { "otype" : "Reference", "mtid" : 1710034, "link" : "/api/reference/1710034", "label" : "44. Hartmans, S., De Bont, J.A.M., Stackebrandt, E., (2006) The Genus Mycobacterium-Nonmedical, pp. 889-918. , In: Dworkin (ed.-in-chief) The Prokaryotes New York: Springer-Verlag", "listPosition" : 44, "published" : false, "snippet" : true }, { "otype" : "Reference", "mtid" : 1710035, "link" : "/api/reference/1710035", "label" : "45. Tsukamura, M., The non-pathogenic\" mycobacteria: Their distribution and ecology in non-living reservoirs (1984) The Mycobacteria: A Source Book, Part B, pp. 1339-1359. , Kubica, G.P., Wayne, L.G. (eds) New York: Marcel Dekker", "listPosition" : 45, "published" : false, "snippet" : true }, { "otype" : "Reference", "mtid" : 1710036, "link" : "/api/reference/1710036", "label" : "46. Solano-Serena, F., Marchal, R., Casarégola, S., Vasnier, C., Lebeault, J., Vandecasteele, J., A Mycobacterium strain with extended capacities for degradation of gasoline hydrocarbons (2000) Appl. Environ. Microbiol., 66, pp. 2392-2399", "listPosition" : 46, "published" : false, "snippet" : true }, { "otype" : "Reference", "mtid" : 1710037, "link" : "/api/reference/1710037", "label" : "47. Kocur, M., Kloos, W.E., Schleifer, K., (2006) The Genus Micrococcus, pp. 961-971. , Dworkin (ed.-in-chief) The Prokaryotes New York: Springer-Verlag", "listPosition" : 47, "published" : false, "snippet" : true }, { "otype" : "Reference", "mtid" : 1710038, "link" : "/api/reference/1710038", "label" : "48. Kloos, W.E., Schleifer, K.H., Isolation and characterization of Staphylococci from Human Skin II. Descriptions of four new species: Staphylococcus warneri, Staphylococcus capitis, Staphylococcus hominis and Staphylococcus simulans (1975) Int. J. Syst. Bacteriol., 25, pp. 62-79", "listPosition" : 48, "published" : false, "snippet" : true }, { "otype" : "Reference", "mtid" : 1710039, "link" : "/api/reference/1710039", "label" : "49. Yim, L.C., Hongmei, J., Aitchison, J.C., Pointing, S.B., Highly diverse community structure in a remote central Tibetan geothermal spring does not display monotonic variation to thermal stress (2006) FEMS Microbiol. Ecol., 57, pp. 80-91", "listPosition" : 49, "published" : false, "snippet" : true }, { "otype" : "Reference", "mtid" : 1710040, "link" : "/api/reference/1710040", "label" : "50. Arunasri, K., Ramana, V.V., Spröer, C., Sasikala Ramana, C.V., Rhodobacter megalophilus sp. nov., a phototroph from the Indian Himalayas possessing a wide temperature range for growth (2008) Int. J. Syst. Evol. 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