Aquiflexum balticum gen. nov., sp. nov., a novel marine bacterium of the Cytophaga-Flavobacterium-Bacteroides group isolated from surface water of the central Baltic Sea.
暂无分享,去创建一个
[1] J. Mergaert,et al. Algoriphagus antarcticus sp. nov., a novel psychrophile from microbial mats in Antarctic lakes. , 2004, International journal of systematic and evolutionary microbiology.
[2] M. P. Cummings. PHYLIP (Phylogeny Inference Package) , 2004 .
[3] M. Höfle. Glucose uptake of Cytophaga johnsonae studied in batch and chemostat culture , 1982, Archives of Microbiology.
[4] Richard Christen,et al. Belliella baltica gen. nov., sp. nov., a novel marine bacterium of the Cytophaga-Flavobacterium-Bacteroides group isolated from surface water of the central Baltic Sea. , 2004, International journal of systematic and evolutionary microbiology.
[5] Angelika Arnscheidt,et al. Section 1 update: Simplified protocols for the preparation of genomic DNA from bacterial cultures , 2004 .
[6] J. Chun,et al. Hongiella mannitolivorans gen. nov., sp. nov., Hongiella halophila sp. nov. and Hongiella ornithinivorans sp. nov., isolated from tidal flat sediment. , 2004, International journal of systematic and evolutionary microbiology.
[7] J. Bowman,et al. Algoriphagus ratkowskyi gen. nov., sp. nov., Brumimicrobium glaciale gen. nov., sp. nov., Cryomorpha ignava gen. nov., sp. nov. and Crocinitomix catalasitica gen. nov., sp. nov., novel flavobacteria isolated from various polar habitats. , 2003, International journal of systematic and evolutionary microbiology.
[8] M. Höfle,et al. Rheinheimera baltica gen. nov., sp. nov., a blue-coloured bacterium isolated from the central Baltic Sea. , 2002, International journal of systematic and evolutionary microbiology.
[9] P. Stougaard,et al. Microbial diversity in ikaite tufa columns: an alkaline, cold ecological niche in Greenland. , 2002, Environmental microbiology.
[10] M. Cottrell,et al. Community Composition of Marine Bacterioplankton Determined by 16S rRNA Gene Clone Libraries and Fluorescence In Situ Hybridization , 2000, Applied and Environmental Microbiology.
[11] F. Azam,et al. COUPLING BETWEEN BACTERIOPLANKTON SPECIES COMPOSITION, POPULATION DYNAMICS, AND ORGANIC MATTER DEGRADATION , 1999 .
[12] P. Aparicio,et al. Blue Light Requirement for HC03 Uptake and Its Action Spectrum in Monoraphidium braunii , 1998 .
[13] C. Ullrich,et al. Nitrate uptake and extracellular alkalinization by the green alga Hydrodictyon reticulatum in blue and red light , 1998 .
[14] C. Woese,et al. Polaribacter gen. nov., with three new species, P. irgensii sp. nov., P. franzmannii sp. nov. and P. filamentus sp. nov., gas vacuolate polar marine bacteria of the Cytophaga-Flavobacterium-Bacteroides group and reclassification of 'Flectobacillus glomeratus' as Polaribacter glomeratus comb. nov. , 1998, International journal of systematic bacteriology.
[15] O Gascuel,et al. BIONJ: an improved version of the NJ algorithm based on a simple model of sequence data. , 1997, Molecular biology and evolution.
[16] Y. Peer,et al. The Determination and Comparison of the 16S rRNA Gene Sequences of Species of the Genus Pseudomonas (sensu stricto and Estimation of the Natural Intrageneric Relationships , 1996 .
[17] Manolo Gouy,et al. SEAVIEW and PHYLO_WIN: two graphic tools for sequence alignment and molecular phylogeny , 1996, Comput. Appl. Biosci..
[18] Said Abdeddaim,et al. Fast and sound two-step algorithms for multiple alignment of nucleic sequences , 1996, Proceedings IEEE International Joint Symposia on Intelligence and Systems.
[19] I. Brettar,et al. Genotyping of heterotrophic bacteria from the central baltic sea by use of low-molecular-weight RNA profiles , 1996, Applied and environmental microbiology.
[20] M. Gouy,et al. WWW-query: an on-line retrieval system for biological sequence banks. , 1996, Biochimie.
[21] M. Höfle,et al. Taxonomic diversity and metabolic activity of microbial communities in the water column of the central Baltic Sea , 1995 .
[22] P. Gerhardt,et al. Methods for general and molecular bacteriology , 1994 .
[23] Ronald M. Atlas,et al. Handbook of microbiological media , 1993 .
[24] M. Höfle,et al. Nitrous oxide producing heterotrophic bacteria from the water column of the central Baltic: abundance and molecular identification , 1993 .
[25] M. Höfle. Bacterioplankton community structure and dynamics after large-scale release of nonindigenous bacteria as revealed by low-molecular-weight-RNA analysis , 1992, Applied and environmental microbiology.
[26] I. Brettar,et al. Influence of carbon availability on dentrification in the central Baltic Sea , 1992 .
[27] K.-D. Jahnke,et al. BASIC computer program for evaluation of spectroscopic DNA renaturation data from GILFORD SYSTEM 2600 spectrophotometer on a PC/XT/AT type personal computer , 1992 .
[28] S. Maloy,et al. Proposal of Cyclobacterium marinus gen. nov., comb. nov. for a Marine Bacterium Previously Assigned to the Genus Flectobacillus , 1990 .
[29] C. Woese,et al. Phylogenetic placement of the Spirosomaceae. , 1990, Systematic and applied microbiology.
[30] W. Whitman,et al. Precise Measurement of the G+C Content of Deoxyribonucleic Acid by High-Performance Liquid Chromatography , 1989 .
[31] O. Kandler,et al. International Committee on Systematic Bacteriology: announcement of the report of the ad hoc Committee on Reconciliation of Approaches to Bacterial Systematics. , 1987, Zentralblatt fur Bakteriologie, Mikrobiologie, und Hygiene. Series A, Medical microbiology, infectious diseases, virology, parasitology.
[32] K. Mullis,et al. Specific synthesis of DNA in vitro via a polymerase-catalyzed chain reaction. , 1987, Methods in enzymology.
[33] K. Komagata,et al. Methanol-utilizing Ancylobacter strains and comparison of their cellular fatty acid compositions and quinone systems with those of Spirosoma, Flectobacillus, and Runella species , 1986 .
[34] K. Komagata,et al. Determination of DNA base composition by reversed-phase high-performance liquid chromatography , 1984 .
[35] G. Ahlgren,et al. Estimating Bacterioplankton Production by Measuring [3H]thymidine Incorporation in a Eutrophic Swedish Lake , 1983, Applied and environmental microbiology.
[36] K. Schleifer,et al. Studies on the spectrophotometric determination of DNA hybridization from renaturation rates. , 1983, Systematic and applied microbiology.
[37] J. Hutton,et al. Thermal stability and renaturation of DNA in dimethyl sulfoxide solutions: Acceleration of the renaturation rate , 1980, Biopolymers.
[38] P. Cashion,et al. A rapid method for the base ratio determination of bacterial DNA. , 1977, Analytical biochemistry.
[39] E. Asheshov,et al. International Committee on Systematic Bacteriology: Subcommittee on the Phage-Typing of Staphylococci , 1975 .
[40] J. Ley,et al. The quantitative measurement of DNA hybridization from renaturation rates. , 1970, European journal of biochemistry.