Isolation and characterization of glacier VMY22, a novel lytic cold-active bacteriophage of Bacillus cereus
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Lianbing Lin | Qi Zhang | B. Tang | Yuan-yuan Fang | X. Ji | Yunlin Wei | Chunjing Zhang
[1] E. Roine,et al. Cold-active bacteriophages from the Baltic Sea ice have diverse genomes and virus-host interactions. , 2015, Environmental microbiology.
[2] E. Roine,et al. Isolation and characterization of phage–host systems from the Baltic Sea ice , 2013, Extremophiles.
[3] Xiang Xiao,et al. Role of Filamentous Phage SW1 in Regulating the Lateral Flagella of Shewanella piezotolerans Strain WP3 at Low Temperatures , 2013, Applied and Environmental Microbiology.
[4] M. Uyttendaele,et al. Diversity of Bacillus cereus group strains is reflected in their broad range of pathogenicity and diverse ecological lifestyles. , 2013, FEMS microbiology ecology.
[5] E. Lingohr,et al. Genome sequence and analysis of a broad-host range lytic bacteriophage that infects the Bacillus cereus group , 2013, Virology Journal.
[6] J. Deming,et al. Genomic analysis of cold-active Colwelliaphage 9A and psychrophilic phage–host interactions , 2012, Extremophiles.
[7] F. Wen,et al. Isolation and Characterization of φkm18p, a Novel Lytic Phage with Therapeutic Potential against Extensively Drug Resistant Acinetobacter baumannii , 2012, PloS one.
[8] F. Wen,et al. Isolation and Characterization of phikm18p, a Novel Lytic Phage with Therapeutic Potential against Extensively Drug Resistant Acinetobacter baumannii , 2012 .
[9] S. Ryu,et al. Bacteriophages BCP1-1 and BCP8-2 require divalent cations for efficient control of Bacillus cereus in fermented foods. , 2012, Food microbiology.
[10] Andrew C. Stewart,et al. Genomic characterization of the Bacillus cereus sensu lato species: Backdrop to the evolution of Bacillus anthracis , 2012, Genome research.
[11] S. Ryu,et al. Complete Genome Sequence of Bacillus cereus Bacteriophage PBC1 , 2012, Journal of Virology.
[12] M. Middelboe,et al. Diversity of Flavobacterium psychrophilum and the potential use of its phages for protection against bacterial cold water disease in salmonids. , 2012, Journal of fish diseases.
[13] C. Oh,et al. Isolation and Characterization of a Lytic Myoviridae Bacteriophage PAS-1 with Broad Infectivity in Aeromonas salmonicida , 2012, Current Microbiology.
[14] Hakdong Shin,et al. Complete Genome Sequence of Bacillus cereus Bacteriophage BCP78 , 2012, Journal of Virology.
[15] S. Andleeb,et al. Isolation and Partial Characterization of a Virulent Bacteriophage IHQ1 Specific for Aeromonas punctata from Stream Water , 2011, Microbial Ecology.
[16] J. Heinemann,et al. Isolation and characterization of phages infecting Bacillus cereus , 2011, Letters in applied microbiology.
[17] A. Anesio,et al. Are low temperature habitats hot spots of microbial evolution driven by viruses? , 2011, Trends in microbiology.
[18] Lianbing Lin,et al. Isolation and characterization of a new bacteriophage MMP17 from Meiothermus , 2011, Extremophiles.
[19] Laura Kalinienė,et al. Low-temperature T4-like coliphages vB_EcoM-VR5, vB_EcoM-VR7 and vB_EcoM-VR20 , 2010, Archives of Virology.
[20] M. Loessner,et al. Complete Nucleotide Sequence and Molecular Characterization of Bacillus Phage TP21 and its Relatedness to Other Phages with the Same Name , 2010, Viruses.
[21] Antonio Quesada,et al. High Diversity of the Viral Community from an Antarctic Lake , 2009, Science.
[22] F. Rohwer,et al. Viruses manipulate the marine environment , 2009, Nature.
[23] T. Sime-Ngando,et al. [Virus and prophages in aquatic ecosystems]. , 2009, Canadian journal of microbiology.
[24] T. Sime-Ngando,et al. [Virus and prophages in aquatic ecosystems]. , 2009, Canadian journal of microbiology.
[25] M. Weinbauer,et al. Major viral impact on the functioning of benthic deep-sea ecosystems , 2008, Nature.
[26] M. Middelboe,et al. Isolation and Characterization of Bacteriophages Infecting the Fish Pathogen Flavobacterium psychrophilum , 2008, Applied and Environmental Microbiology.
[27] J. Priscu,et al. Bacteriophage in polar inland waters , 2008, Extremophiles.
[28] H. Ackermann,et al. 5500 Phages examined in the electron microscope , 2007, Archives of Virology.
[29] J. Deming,et al. Effects of temperature, salinity and clay particles on inactivation and decay of cold-active marine Bacteriophage 9A , 2006 .
[30] J. Deming,et al. Characterization of a cold-active bacteriophage on two psychrophilic marine hosts , 2006 .
[31] J. Deming,et al. Global bathymetric patterns of standing stock and body size in the deep-sea benthos , 2006 .
[32] B. Liu,et al. Two Novel Bacteriophages of Thermophilic Bacteria Isolated from Deep-Sea Hydrothermal Fields , 2006, Current Microbiology.
[33] C. Suttle. Viruses in the sea , 2005, Nature.
[34] Yuan-ming Luo,et al. Sulfolobus tengchongensis Spindle-Shaped Virus STSV1: Virus-Host Interactions and Genomic Features , 2005, Journal of Virology.
[35] M. Vieira,et al. Pseudomonas fluorescens infection by bacteriophage PhiS1: the influence of temperature, host growth phase and media. , 2004, FEMS microbiology letters.
[36] H. P. Fleming,et al. Isolation and characterization of a Lactobacillus plantarum bacteriophage, phiJL-1, from a cucumber fermentation. , 2003, International journal of food microbiology.
[37] T. Schweder,et al. Isolation and characterization of marine psychrophilic phage-host systems from Arctic sea ice , 2003, Extremophiles.
[38] H. Ackermann,et al. New Bacillus bacteriophage species. , 1994, Archives of virology.
[39] Ronald M. Atlas,et al. Handbook of microbiological media , 1993 .
[40] Yang Qinye,et al. On altitudinal land use zonation of the Hengduan mountain region in Southwestern China , 1990 .
[41] S. Merino,et al. Isolation and characterization of bacteriophage PM2 from Aeromonas hydrophila. , 1990, FEMS microbiology letters.