[1] | Elton CS (1958) Chapter 5. Change in the sea. In: The ecology invasion by animals and plants: Methuen and Co. Ltd., London, John Wiley and Sons Inc., New York. pp. 94–108.
|
[2] | Ostenfeld CH (1908) On the immigration of Biddulphia sinensis Grev. and its occurrence in the North Sea during 1903–1907 and on its use for the study of the direction and rate of flow of the currents. Medd Komm Havunde. Ser Plankton 1(6): 1–44.
|
[3] | Fabre-Domergue M (1906) Une invasion d'algues méridionales sur les hu?res de la rivière de Vannes. Compt Rendus Acad Sc Paris 142: 1223–1225.
|
[4] | Cotton AD (1908) The appearance of Colpomenia sinuosa in Britain. Roy Bot Kew Bull 2: 73–77. doi: 10.2307/4111835
|
[5] | Ueno K (1980) 4.2 (5) Tetuhune no ko?zo? p.302–311. In Hune no sekaisi Jo? kan (in Japanese), Kazi Co., Ltd. Tokyo.
|
[6] | Carlton JT (1985) Transoceanic and interoceanic dispersal of coastal marine organisms: the biology of ballast water. Oceanogr Mar Biol Ann Rev 23: 313–371.
|
[7] | International Maritime Consultative Organization (IMCO) (1973a) International conference on marine pollution. 1973. Committee III, Text of Draft Resolutions 3, 4, 5, 6, 6A, 6B and 7 as agreed by the Committee. MP/CONF/DR/1; 23 October 1973, p.10.
|
[8] | Bishop RF, Davidson GP (1973) Virus particles in epithelial cells of duodenal mucosa from children with acute non-bacterial gastroenteritis. Lancet 302: 1281–1283. doi: 10.1016/s0140-6736(73)92867-5
|
[9] | Kapikian AZ, Wyatt RG, Dolin R, Thornhill TS, Kalica AR, et al. (1972) Visualization by immune electron microscopy of a 27-nm particle associated with acute infectious nonbacterial gastroenteritis. J Virol 10: 1075–1081.
|
[10] | Medcof JC (1975) Living marine animals in a ship's ballast water. Proc Natl Shellfish Ass 65: 11–12.
|
[11] | Rosenthal H (1976) Implications of transplantations to aquaculture and ecosystems, FAO Technical Conference on Aquaculture. Rome, FAO, FIR:AQ/Conf. 76/E.67, 1–19.
|
[12] | International Maritime Organization (IMO) (1998) Alien invaders–putting a stop to the ballast water hitch-hikers. Focus on IMO. October 1998, 161–177.
|
[13] | United Nations (UN) (1982) Article 196. Use of technologies or introduction of alien or new species. In United Nations Convention on the Law of the Sea (UNCLOS). Available: http://www.un.org/depts/los/convention_a?greements/texts/unclos/unclos_e.pdf. Accessed 2014 Jan 20.
|
[14] | United Nations Conference on Environment and Development (UNCED) (1992) Chapter 17 Protection of the oceans, all kinds of seas, including enclosed and semi-enclosed seas, and coastal areas and the protection, rational use and development of their living resources. In Agenda 21. Available: http://www.un.org/depts/los/consultative?_process/documents/A21-Ch17.htm. Accessed 2013 Aug 23.
|
[15] | Carlton JT, Geller JB (1993) Ecological roulette: the global transport of non-indigenous marine organisms. Science 261: 78–82. doi: 10.1126/science.261.5117.78
|
[16] | Cohen AN (1998) Ships' ballast water and the introduction of exotic organisms into the San Francisco estuary: current problem status and management options. Report for California Bay Delta Authority, Sacramento, CA, USA.
|
[17] | Cohen AN, Carlton JT (1998) Accelerating invasion rate in a highly invaded estuary. Science 279: 555–558. doi: 10.1126/science.279.5350.555
|
[18] | Ruiz GM, Carlton JT, Grosholz ED, Heines AH (1997) Global invasions of marine and estuarine habitats by non-indigenous species: mechanisms, extent and consequences. Am Zool 37: 621–632. doi: 10.1093/icb/37.6.621
|
[19] | Ruiz GM, Fofonoff PW, Carlton JT, Wonham MJ, Hines AH (2000a) Invasion of coastal marine communities in North America: apparent patterns, processes, and biases. Ann Rev Ecol Syst 31: 481–531. doi: 10.1146/annurev.ecolsys.31.1.481
|
[20] | IMO (2005) The International Convention for the Control and Management of Ships Ballast Water and Sediments. IMO PUBLICATION, London, p134.
|
[21] | National Research Council (NRC) (1996) Stemming the tide: Controlling introductions of nonindigenous species by ship's ballast water. National Academy Press, Washington, DC, USA.
|
[22] | Hallegraeff GM, Bolch CJ, Bryan J, Koerbin B (1990) Microalgal spores in ship's ballast water: A danger to aquaculture. In Granéli E, Sundstr?m B, Edler L, editors. Toxic marine phytoplankton: proceeding of the Fourth International Conference on Toxic Marine Phytoplankton held June 26–30, 1989, in Lund, Sweden: Elsevier, New York pp. 475–480.
|
[23] | Centers for Disease Control and Prevention (CDC) (1991) Cholera—Peru, 1991. MMWR 40: 108–110.
|
[24] | GloBallast (2002) Global Ballast Water Management Programme. Available: http://globallast.imo.org. Accessed 2013 Aug 23.
|
[25] | Coleman W (2003) 4. Transmission and epidemiology of cholera. In: Alcamo IE, editor, Cholera, 2nd edition (deadly diseases and epidemics): Chelsea house publishers, New York, USA. pp. 36–45.
|
[26] | Anderson C (1991) Cholera epidemic traced to risk miscalculation. Nature 354: 255. doi: 10.1038/354255a0
|
[27] | IMCO (1973b) International convention for the prevention of pollution from ships, 1973 (MARPOR73).
|
[28] | IMO (1999) Report of the marine environment protection committee on its forty-third session. MEPC 43/21.
|
[29] | IMO (2001) Report of the marine environment protection committee on its forty-sixth session. MEPC 46/23.
|
[30] | Aridgides LJ, Doblin MA, Berke T, Dobbs FC, Matson DO, et al. (2004) Multiple PCR allows simultaneous detection of pathogens in ships ballast water. Mar Pollut Bull 48: 1096–1101. doi: 10.1016/j.marpolbul.2003.12.017
|
[31] | Lee SKY, Wang HZ, Law SHW, Wu RSS, Kong RYC (2002) Analysis of the 16S–23S rDNA intergenic spacers (IGSs) of marine Vibrios for species-specific signature DNA sequences. Mar Pollut Bull 44: 412–420. doi: 10.1016/s0025-326x(01)00256-9
|
[32] | McCarthy SA, Khambaty FM (1994) International dissemination of epidemic Vibrio cholerae by cargo ship ballast and other nonpotable waters. Appl Environ Microbiol 60: 2597–2601.
|
[33] | Mimura H, Katakura R, Ishida H (2005) Changes of microbial populations in a ship's ballast water and sediments on a voyage from Japan to Qatar. Mar Pollut Bull 50: 751–757. doi: 10.1016/j.marpolbul.2005.02.006
|
[34] | Ruiz GM, Rawlings TK, Dobbs FC, Drake LA, Mullady T, et al. (2000b) Global spread of microorganisms by ships. Nature 408: 49–50. doi: 10.1038/35040695
|
[35] | Tomaru A, Kawachi M, Demura M, Fukuyo Y (2010) Denaturing gradient gel electrophoresis shows that bacterial communities change with mid-ocean ballast water exchange. Mar Pollut Bull 60: 299–302. doi: 10.1016/j.marpolbul.2009.11.019
|
[36] | Noble RT, Fuhrman JA (1998) Use of SYBR Green I for rapid epifluorescence counts of marine viruses and bacteria. Aquat Microb Ecol 14: 113–118. doi: 10.3354/ame014113
|
[37] | Porter KG, Feig YS (1980) The use of DAPI for identifying and counting aquatic microflora. Limnol Oceanogr 25: 943–948. doi: 10.4319/lo.1980.25.5.0943
|
[38] | Sherr B, Sherr E (1983a) Double-staining epifluorescence technique to assess frequency of dividing cells and bacteriovory in natural populations of heterotrophic microprotozoa. Appl Environ Microbiol 46: 1388–1393.
|
[39] | Sherr B, Sherr E (1983b) Enumeration of heterotrophic microprotozoa by epifluorescence microscopy. Est Coast Shelf Sci 16: 1–7. doi: 10.1016/0272-7714(83)90089-6
|
[40] | Marine Environment Protection Committee (MEPC) (2004) Harmful aquatic organisms in ballast water. Quantitative analytical methods of bacteria used for test-bed tests. Proposal for development of the guidelines for approval of ballast water management systems. Submitted by Japan. MEPC 52/2/7. 9 July 2004.
|
[41] | The Ship Equipment Inspection Society of Japan Nippon hakuyohin kentei kyokai, HK (2007) 4.3. Saikin pp. 32–40. In Barasuto sui kainnri shisutemu no shoukin no sai no seibutsu bunseki houhou Kaitei ban. (in Japanese). Available: http://www.hakuyohin.or.jp/seibuthubunse?ki2009.pdf. Accessed 2013 Aug 23.
|
[42] | Japanese Industrial Standards Committee (JIS) (2002) Testing methods for detection and enumeration of heterotrophic bacteria in industrial water and wastewater. JIS K 0350-30-10. Japanese Standards Association, Tokyo.
|
[43] | Muyzer GE, de Waal C, Uitterlinden AG (1993) Profiling of complex microbial populations by denaturing gradient gel electrophoresis analysis of polymerase chain reaction-amplified genes coding for 16S rRNA. Appl Environ Microbiol 59: 695–700.
|
[44] | Wilmotte A, der Auwera GV, Wachter RD (1993) Structure of the 16 S ribosomal RNA of the thermophilic cyanobacterium chlorogloeopsis HTF (‘mastigocladus laminosus HTF’) strain PCC7518, and phylogenetic analysis. FEBS Lett 317: 96–100. doi: 10.1016/0014-5793(93)81499-p
|
[45] | van Hannen EJ, Mooij W, van Agterveld MP, Gons HJ, Laanbroek HJ (1999) Detritus-dependent development of the microbial community in an experimental system: qualitative analysis by denaturing gradient gel electrophoresis. Appl Environ Microbiol 65: 2478–2484.
|
[46] | Zar J (1999) Data transformation. In Biostatistical analysis, 4th ed., New Jersey: Prentice-Hall. pp. 273–281.
|
[47] | Pomeroy LR, Wiebw WJ (1988) Energetics of microbial food webs. Hydrobiologia 159: 7–18. doi: 10.1007/bf00007363
|
[48] | Azam F, Fenche T, Gray JG, Meyer-Reil LA, Thingstad T (1983) The ecological role of water-column microbes in the sea. Mar Ecol Prog Ser 10: 257–263. doi: 10.3354/meps010257
|
[49] | Es FB, Meyer-Reil LA (1982) Biomass and metabolic activity of heterotrophic bacteria. Adv Microb Ecol 6: 111–170. doi: 10.1007/978-1-4615-8318-9_4
|
[50] | Drake LA, Ruiz GM, Galil BS, Mullady TL, Friedmann DO, et al. (2002) Microbial ecology of ballast water during a transoceanic voyage and the effects of open-ocean exchange. Mar Ecol Prog Ser 233: 13–20. doi: 10.3354/meps233013
|
[51] | Byrd JJ (2000) Chapter 2. Morphological changes leading to the nonculturable state. In: Colwell RR, Grimes DJ editors. Nonculturable microorganisms in the environment, ASM Press, Washington DC. pp. 7–18.
|
[52] | Burkholder JM, Hallegraeff GM, Melia G, Cohen A, Bowers HA, et al. (2007) Phytoplankton and bacterial assemblages in ballast water of U.S. military ships as a function of port of origin, voyage time, and ocean exchange practices. Harmful Algae 6: 486–518. doi: 10.1016/j.hal.2006.11.006
|
[53] | Lalli CM, Parsons TR (1997) Chapter 5. Energy flow and mineral cycling. In: Biological oceanography: an introduction: Elsevier Butterworth-Heinemann, California, pp. 112–146.
|
[54] | Fuhrman JA (1999) Marine viruses and their biogeochemical and ecological effects. Nature 399: 541–548. doi: 10.1038/21119
|
[55] | Dickman M, Zhang F (1999) Mid-ocean exchange of container vessel ballast water. 2: Effects of vessel type in the transport of diatoms and dinoflagellates from Manzanillo, Mexico, to Hong Kong, China. Mar Ecol Prog Ser 176: 252–262. doi: 10.3354/meps176253
|
[56] | McCollin T, Shanks AM, Dunn J (2007) The efficiency of regional ballast water exchange: changes in phytoplankton abundance and diversity. Harmful Algae 6: 531–546. doi: 10.1016/j.hal.2006.04.015
|
[57] | Rigby G, Hallegraeff G (1994) The transfer and control of harmful marine organisms in shipping ballast water: behaviour of marine plankton and ballast water exchange trials on the MV “Iron Whyalla”. J Marine Environ Eng 1: 91–110.
|
[58] | Zhang F, Dickman M (1999) Mid-ocean exchange of container vessel ballast water. 1: Seasonal factors affecting the transport of harmful diatoms and dinoflagellates. Mar Ecol Prog Ser 176: 243–251. doi: 10.3354/meps176243
|
[59] | Galil BS, Hülsmann N (1997) Protist transport via ballast water – biological classification of ballast tanks by food web interactions. Eur J Protistol 33: 244–253. doi: 10.1016/s0932-4739(97)80002-8
|
[60] | Hüsmann N, Galil BS (2001) The effect of fresh water flushing on marine heterotrophic protists – implications for ballast water management. Mar Pollut Bull 42: 1082–1086. doi: 10.1016/s0025-326x(01)00087-x
|
[61] | Hallegraeff GM (1998) Transport of toxic dinoflagellates via ships' ballast water: bioeconomic risk assessment and efficacy of possible ballast water management strategies. Mar Ecol Prog Ser 168: 297–309. doi: 10.3354/meps168297
|
[62] | Lee JJ, Leedale GF, Bradbury P, editors (2000) An illustrated guide to the protozoa, 2nd ed., vol. 1 and 2. Society of Protozoologists, Kansas, U.S.A.
|
[63] | Finlay BJ (2002) Global dispersal of free-living microbial eukaryote species. Science 296: 1061–1063. doi: 10.1126/science.1070710
|
[64] | Finlay BJ, Fenchel T (2004) Cosmopolitan metapopulations of free-living microbial eukaryotes. Protist 155: 237–244. doi: 10.1078/143446104774199619
|
[65] | Dobbs FC, Rogerson A (2005) Ridding ships' ballast water of microorganisms. Environ Sci Technol 39: 259A–264A. doi: 10.1021/es053300v
|
[66] | Amann RI, Ludwig W, Schleifer K-H (1995) Phylogenetic identification and in situ detection of individual microbial cells without cultivation. Microbiol rev 59: 143–169.
|
[67] | Hansell DA, Carlson AC, editors (2002) Biogeochemistry of marine dissolved organic matter: Academic Press, Tokyo.
|
[68] | Heinemann S, Dobbs FC (2006) Correspondence: Microbiological ‘bottle effects’ are not to be ignored. Mar Pollut Bull 52: 1310 (a comment on Mimura et al., 2005). doi: 10.1016/j.marpolbul.2006.02.023
|
[69] | Madigan MT, Martinko JM, Parker J (2006) Brock biology of microorganisms. 11th edition. Prentice-Hall International, Inc, San Francisco, USA.
|
[70] | Thompson FL, Iida T, Swings J (2004) Biodiversity of vibrios. Microbiol Mol Biol Rev 68: 403–431. doi: 10.1128/mmbr.68.3.403-431.2004
|
[71] | IMO (2010) Report of the Review Group on Ballast Water Treatment Technologies (BWRG). MEPC 61/WP.8.
|
[72] | IMO (2003a) Proposed amendments to the regulations of the draft international convention for the control and management of ships ballast water and sediments. MEPC49/2/2.
|
[73] | IMO (2003b) Report of the second intersessional meeting of the MEPC ballast water working group. MEPC49/2/3.
|