PAEZ-ESPINO D, ELOE-FADROSH E A, PAVLOPOULOS G A, et al. Uncovering Earth's Virome[J]. Nature, 2016, 536(7617): 425-430. doi: 10.1038/nature19094
WILLIAMSON K E, FUHRMANN J J, WOMMACK K E, et al. Viruses in Soil Ecosystems: an Unknown Quantity within an Unexplored Territory[J]. Annual Review of Virology, 2017, 4(1): 201-219. doi: 10.1146/annurev-virology-101416-041639
欧婷, 江鸿森, 任慧爽, 等. 一株香樟炭疽病拮抗菌的鉴定及其发酵条件优化[J]. 西南大学学报(自然科学版), 2019, 41(7): 43-52.
LOVE M, BHANDARI D, DOBSON R, et al. Potential for Bacteriophage Endolysins to Supplement or Replace Antibiotics in Food Production and Clinical Care[J]. Antibiotics, 2018, 7(1): 17. doi: 10.3390/antibiotics7010017
LUEPKE K H, SUDA K J, BOUCHER H, et al. Past, Present, and Future of Antibacterial Economics: Increasing Bacterial Resistance, Limited Antibiotic Pipeline, and Societal Implications[J]. Pharmacotherapy: the Journal of Human Pharmacology and Drug Therapy, 2017, 37(1): 71-84. doi: 10.1002/phar.1868
GOMAA S, SERRY F, ABDELLATIF H, et al. Elimination ofMultidrug-Resistant Proteus mirabilis Biofilms Using Bacteriophages[J]. Archives of Virology, 2019, 164(9): 2265-2275. doi: 10.1007/s00705-019-04305-x
RABIEY M, ROY S R, HOLTAPPELS D, et al. Phage Biocontrol to Combat Pseudomonas syringae Pathogens Causing Disease in Cherry[J]. Microbial Biotechnology, 2020, 13(5): 1428-1445. doi: 10.1111/1751-7915.13585
张奇亚, 桂建芳. 一类不可忽视的战略生物资源——淡水与海水中的病毒及其在生态系统中的作用[J]. 中国科学院院刊, 2009, 24(4): 414-420. doi: 10.3969/j.issn.1000-3045.2009.04.005
曹永生, 李绍戊, 王荻, 等. 噬菌体在鲑鳟鱼细菌病治疗中的应用研究进展[J]. 水产学杂志, 2019, 32(4): 1-8.
PÉREZ-SÁNCHEZ T, MORA-SÁNCHEZ B, BALCÁZAR J L. Biological Approaches for Disease Control in Aquaculture: Advantages, Limitations and Challenges[J]. Trends in Microbiology, 2018, 26(11): 896-903. doi: 10.1016/j.tim.2018.05.002
CASTILLO D, MIDDELBOE M. Genomic Diversity of Bacteriophages Infecting the Fish pathogen Flavobacterium Psychrophilum[J]. FEMS Microbiology Letters, 2016, 363(24): fnw272. doi: 10.1093/femsle/fnw272
MALKI K, KULA A, BRUDER K, et al. BacteriophagesIsolated from Lake Michigan Demonstrate Broad Host-Range across Several Bacterial Phyla[J]. Virology Journal, 2015, 12(1): 164. doi: 10.1186/s12985-015-0395-0
LAANTO E, BAMFORD J K, RAVANTTI J J, et al. The Use of Phage FCL-2 as an Alternative to Chemotherapy Against Columnaris Disease in Aquaculture[J]. Frontiers in Microbiology, 2015(6): 829.
吕可, 赵前程, 刘婧懿, 等. 噬菌体在水生动物病害防治中的应用问题和解决策略[J]. 水产科学, 2020, 39(6): 964-971.
BAO J, WU N N, ZENG Y G, et al. Non-Active Antibiotic and Bacteriophage Synergism to Successfully Treat Recurrent Urinary Tract Infection Caused by Extensively Drug-Resistant Klebsiella Pneumoniae[J]. Emerging Microbes & Infections, 2020, 9(1): 771-774.
LI M Y, WANG J L, ZHANG Q, et al. Isolation and Characterization of the Lytic Cold-Active Bacteriophage MYSP06 from the Mingyong Glacier in China[J]. Current Microbiology, 2016, 72(2): 120-127. doi: 10.1007/s00284-015-0926-3
WEISBURG W G, BARNS S M, PELLETIER D A, et al. 16S Ribosomal DNA Amplification for Phylogenetic Study[J]. Journal of Bacteriology, 1991, 173(2): 697-703. doi: 10.1128/jb.173.2.697-703.1991
LÓPEZ-BUENO A, LÓPEZ-BUENO A, TAMAMES J, et al. High Diversity of the Viral Community from an Antarctic Lake[J]. Science, 2009, 326(5954): 858-861. doi: 10.1126/science.1179287
BHUNCHOTH A, PHIRONRIT N, LEKSOMBOON C, et al. Isolation of Ralstonia solanacearum-Infecting Bacteriophages from Tomato Fields in Chiang Mai, Thailand, and Their Experimental Use as Biocontrol Agents[J]. Journal of Applied Microbiology, 2015, 118(4): 1023-1033. doi: 10.1111/jam.12763
CHAE J C, HUNG N B, YU S M, et al. Diversity of Bacteriophages Infecting Xanthomonas oryzae Pv. Oryzae in Paddy Fields and Its Potential to Control Bacterial Leaf Blight of Rice[J]. Journal of Microbiology and Biotechnology, 2014, 24(6): 740-747. doi: 10.4014/jmb.1402.02013
WONG C L, SIEO C C, TAN W S, et al. Evaluation of aLytic Bacteriophage, Φ St1, for Biocontrol of Salmonella enterica serovar Typhimurium in Chickens[J]. International Journal of Food Microbiology, 2014, 172(1): 92-101.
李建凯. 两株低温噬菌体生物学特性及基因组解析[D]. 昆明: 昆明理工大学, 2016.http://cdmd.cnki.com.cn/Article/CDMD-10674-1016231165.htm
YU L, WANG S, GUO Z M, et al. A Guard-Killer Phage Cocktail Effectively Lyses the Host and Inhibits the Development of Phage-Resistant Strains of Escherichia coli[J]. Applied Microbiology and Biotechnology, 2018, 102(2): 971-983. doi: 10.1007/s00253-017-8591-z
GUTIÉRREZ D, FERNÁNDEZ L, RODRÍGUEZ A, et al. Are Phage Lytic Proteins the Secret Weapon to Kill Staphylococcus aureus[J]. mBio, 2018, 9(1): 1917-1923.
STENHOLM A R, DALSGAARD I, MIDDELBOE M. Isolation and Characterization of Bacteriophages Infecting the Fish Pathogen Flavobacterium psychrophilum[J]. Applied and Environmental Microbiology, 2008, 74(13): 4070-4078. doi: 10.1128/AEM.00428-08
李明源, 王继莲, 古丽巴哈尔·萨吾提. 新疆东帕米尔高原慕士塔格峰洋布拉克冰川雪冰及融水中可培养细菌多样性分析[J]. 冰川冻土, 2015, 37(6): 1634-1641.
WELLS L E, DEMING J W. Effects of Temperature, Salinity and Clay Particles on Inactivation and Decay of Cold-Active Marine Bacteriophage 9A[J]. Aquatic Microbial Ecology, 2006, 45(1): 31-39.
张春晶. 荧光假单胞菌低温噬菌体VSW-3生物学特性及比较基因组分析[D]. 昆明: 昆明理工大学, 2017.http://cdmd.cnki.com.cn/article/cdmd-10674-1017112277.htm
SENĈILO A, LUHTANEN A M, SAARIJÄRVI M, et al. Cold-Active Bacteriophages from the Baltic Sea Ice Have Diverse Genomes and Virus-Host Interactions[J]. Environmental Microbiology, 2015, 17(10): 3628-3641. doi: 10.1111/1462-2920.12611