噬藻斑扩大及噬藻体吸附率与宿主生长期的关系

王春艳, 郭亚新, 程凯, 赵以军, 石正丽

王春艳, 郭亚新, 程凯, 赵以军, 石正丽. 噬藻斑扩大及噬藻体吸附率与宿主生长期的关系[J]. 水生生物学报, 2003, 27(6): 660-663.
引用本文: 王春艳, 郭亚新, 程凯, 赵以军, 石正丽. 噬藻斑扩大及噬藻体吸附率与宿主生长期的关系[J]. 水生生物学报, 2003, 27(6): 660-663.
WANG Chun-Yan, GUO Ya-Xin, CHENG Kai, ZHAO Yi-Jun, SHI Zheng-Li. THE CORRELATION OF HOST'S GROWTH STAGE WITH ENLARGEMENT OF PLAQUE AND ADSORPTION RATE OF CYANOPHAGE[J]. ACTA HYDROBIOLOGICA SINICA, 2003, 27(6): 660-663.
Citation: WANG Chun-Yan, GUO Ya-Xin, CHENG Kai, ZHAO Yi-Jun, SHI Zheng-Li. THE CORRELATION OF HOST'S GROWTH STAGE WITH ENLARGEMENT OF PLAQUE AND ADSORPTION RATE OF CYANOPHAGE[J]. ACTA HYDROBIOLOGICA SINICA, 2003, 27(6): 660-663.

噬藻斑扩大及噬藻体吸附率与宿主生长期的关系

基金项目: 

中国科学院院长基金项目、武汉市科技攻关项目

国家自然科学基金(39600004)资助项目

THE CORRELATION OF HOST'S GROWTH STAGE WITH ENLARGEMENT OF PLAQUE AND ADSORPTION RATE OF CYANOPHAGE

  • 摘要: 蓝藻是地球上最重要的初级生产者之一,它们在北极水域等极端环境下均可生存,固氮贡献巨大[1],而噬藻体是重要的具物种特异性的蓝藻致死者,在控制蓝藻种群的结构中无疑起着重要作用:噬藻体不但在海水中大量存在[2],而且在控制水体初级生产力方面起关键作用.
  • [1] Zhang X K,Dai L F,Dai HP.N2 fixing of cyanobacteria and its biological effects[M]. Chian Algology Research.Wuhan:Wuhan publisher,2001,212-222[张宪孔,戴玲芬,戴和平.蓝藻的固氮及其生物学意义.中国藻类学研究.武汉:武汉出版社,2001,212-222][2] Bergh O.High abundance of viruses found in aquatic environments[J]. Nature,1989,340:467-468[3] Suttle C A, Infection of phytoplankton by viruses and reduction of primary productivity [J]. Nature,1990,347:467-469[4] Fuhrman,J A.Marine viruses and their biogeochemical and ecological effects[J]. Nature,1999, 399(6736):541-548[5] Zhao Y J,Shi Z L,Huang G J,et al. Blue-green algal viruses(Cyanophage) [J]. Virologica Sinica,1999, 14(2):100 -105[赵以军,石正丽,黄国锦等.蓝藻病毒(噬藻体)的研究进展.中国病毒学,1999,14(2):100-105][6] Singh S. Cyanophages, A Unique group of cyanobacterial viruses:present status and future prospects [M].Algal Ecology-An Overview.Dehra dun:International Book Distributors,1995,381-400[7] Wommack K E, Rita R C.Virioplankton: Viruses in Aquatic Ecosystems [J]. Microbiology and Molecular Biology Reviews, 2000, 64(1):1092-2172[8] Zhao Y J,Cheng K,Shi Z L,et al.First report of isolation and identification of cyanophage (Blue-green algal viruse) in China [J]. Progress in Natural Science, 2002,12(9):923-927[赵以军,程凯,石正丽等.我国首株噬藻体(蓝藻病毒)的分离与鉴定.自然科学进展,2002,12(9):923-927][9] Richard W C. Culturing methods for cyanobacteria[M]. San Diego,California:Academic Press,1988,68-92[10] Eley J H.Effect of carbon dioxide concentration on igmentation in the blue-green alga Anacystis nidulans[J]. Plant Cell Physiol, 1971,12:311-316[11] Suttle C A. Aquatic Microbial Ecology [M].Boca Raton: Lewis Publishers,1993, 121-134[12] Propst-Ricciuti,C. Host-virus interactions in Escherichia coli:effect of stationary phase on viral release from MS2-infected bacteria [J]. J Virol, 1972, 10:162-165[13] Robb F T, Hill R T.Bacterial viruses and hosts:influence of culturable state [C]. Nonculturable microorganisms in the environment. Washington: ASM Press in press[14] Hilla H. Bacteriophage T4 development depends on the physiology of its host Escherichia coli[J].Microbiology, 1997, 143:179 -185[15] Cseke C S,Farkas G L.Effect of light on the attachment of cyanophage AS-1 to Anacystis nidulans[J]. J Bacteriol, 1979, 137 (1):667-669

    Zhang X K,Dai L F,Dai HP.N2 fixing of cyanobacteria and its biological effects[M]. Chian Algology Research.Wuhan:Wuhan publisher,2001,212-222[张宪孔,戴玲芬,戴和平.蓝藻的固氮及其生物学意义.中国藻类学研究.武汉:武汉出版社,2001,212-222][2] Bergh O.High abundance of viruses found in aquatic environments[J]. Nature,1989,340:467-468[3] Suttle C A, Infection of phytoplankton by viruses and reduction of primary productivity [J]. Nature,1990,347:467-469[4] Fuhrman,J A.Marine viruses and their biogeochemical and ecological effects[J]. Nature,1999, 399(6736):541-548[5] Zhao Y J,Shi Z L,Huang G J,et al. Blue-green algal viruses(Cyanophage) [J]. Virologica Sinica,1999, 14(2):100 -105[赵以军,石正丽,黄国锦等.蓝藻病毒(噬藻体)的研究进展.中国病毒学,1999,14(2):100-105][6] Singh S. Cyanophages, A Unique group of cyanobacterial viruses:present status and future prospects [M].Algal Ecology-An Overview.Dehra dun:International Book Distributors,1995,381-400[7] Wommack K E, Rita R C.Virioplankton: Viruses in Aquatic Ecosystems [J]. Microbiology and Molecular Biology Reviews, 2000, 64(1):1092-2172[8] Zhao Y J,Cheng K,Shi Z L,et al.First report of isolation and identification of cyanophage (Blue-green algal viruse) in China [J]. Progress in Natural Science, 2002,12(9):923-927[赵以军,程凯,石正丽等.我国首株噬藻体(蓝藻病毒)的分离与鉴定.自然科学进展,2002,12(9):923-927][9] Richard W C. Culturing methods for cyanobacteria[M]. San Diego,California:Academic Press,1988,68-92[10] Eley J H.Effect of carbon dioxide concentration on igmentation in the blue-green alga Anacystis nidulans[J]. Plant Cell Physiol, 1971,12:311-316[11] Suttle C A. Aquatic Microbial Ecology [M].Boca Raton: Lewis Publishers,1993, 121-134[12] Propst-Ricciuti,C. Host-virus interactions in Escherichia coli:effect of stationary phase on viral release from MS2-infected bacteria [J]. J Virol, 1972, 10:162-165[13] Robb F T, Hill R T.Bacterial viruses and hosts:influence of culturable state [C]. Nonculturable microorganisms in the environment. Washington: ASM Press in press[14] Hilla H. Bacteriophage T4 development depends on the physiology of its host Escherichia coli[J].Microbiology, 1997, 143:179 -185[15] Cseke C S,Farkas G L.Effect of light on the attachment of cyanophage AS-1 to Anacystis nidulans[J]. J Bacteriol, 1979, 137 (1):667-669

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出版历程
  • 收稿日期:  2002-07-21
  • 修回日期:  2003-02-19
  • 发布日期:  2003-11-24

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