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Biofouling
The Journal of Bioadhesion and Biofilm Research
Volume 30, 2014 - Issue 4
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Articles

The ghost of fouling communities past: the effect of original community on subsequent recruitment

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Pages 459-471 | Received 07 Jan 2014, Accepted 11 Feb 2014, Published online: 25 Mar 2014

References

  • Almeida E, Diamantino T, de Sousa O. 2007. Marine paints: the particular case of antifouling paints. Prog Org Coat. 59:2–20.
  • Apte S, Holland B, Godwin L, Gardner J. 2000. Jumping ship: a stepping stone event mediated transfer of a non-indigenous species via a potentially unsuitable environment. Biol Invas. 2:75–79.
  • Atalah J, Otto S, Anderson M, Costello M, Lenz M, Wahl M. 2007. Temporal variance of disturbance did not affect diversity and structure of a marine fouling community in north-eastern New Zealand. Mar Biol. 153:199–211.
  • Bax N, Williamson A, Aguero M, Gonzalez E, Geeves W. 2003. Marine invasive alien species: a threat to global biodiversity. Mar Poll. 27:313–323.
  • Brancato M, Woollacott R. 1982. Effect of microbial films on settlement of bryozoan larvae (Bugula simplex, B. stolonifera and B. turrita). Mar Biol. 71:51–56.
  • Burke R. 1983. The induction of metamorphosis of marine invertebrate larvae: stimulus and response. Can J Zool. 61:1701–1719.
  • Burke R. 1986. Pheromones and the gregarious settlement of marine invertebrate larvae. Bull Mar Sci. 39:323–331.
  • Butman C. 1987. Larval settlement in soft-sediment invertebrates: the spatial scales of pattern explained by active habitat selection and the emerging role of hydrodynamical processes. Oceanogr Mar Biol Ann Rev. 25:113–165.
  • Campbell M, Hewitt C. 2011. Assessing the port to port risk of vessel movements vectoring non-indigenous marine species within and across domestic Australian borders. Biofouling. 27:631–644.
  • Carlton J. 1987. Patterns of transoceanic marine biological invasions in the Pacific Ocean. Bull Mar Sci. 41:452–465.
  • Chabot R, Bourget E. 1988. Influence of substratum heterogeneity and settled barnacle density on the settlement of cyprid larvae. Mar Biol. 97:45–56.
  • Clark G, Johnston E. 2005. Manipulating larval supply in the field: a controlled study of marine invisibility. Mar Ecol Prog Ser. 298:9–19.
  • Clark G, Johnston E. 2009. Propagule pressure and disturbance interact to overcome biotic resistance of marine invertebrate communities. Oikos. 118:1679–1686.
  • Coutts A, Piola R, Hewitt C, Connell S, Gardner J. 2010. Effect of vessel voyage speed on survival of biofouling organisms: implications for translocation of non-indigenous marine species. Biofouling. 26:1–13.
  • Crisp DJ. 1984. Overview of research on marine invertebrate larvae, 1940--1980. In: Costlow JD, Tipper RC, editors. Marine biodeterioration: an interdisciplinary study. Annapolis (MD): Naval Institute Press; p. 103–126.
  • Dafforn K, Glasby T, Johnston E. 2008. Differential effects of tributyltin and copper antifoulants on recruitment of non-indigenous species. Biofouling. 24:23–33.
  • Dafforn K, Johnston E, Glasby T. 2009. Shallow moving structures promote marine invader dominance. Biofouling. 25:277–287.
  • Dafforn K, Lewis J, Johnston E. 2011. Antifouling strategies: history and regulation, ecological impacts and mitigation. Mar Poll Bull. 62:453–465.
  • Davidson I, McCann L, Sytsma M, Ruiz G. 2008. Interrupting a multi-species bioinvasion vector: the efficacy of in-water cleaning for removing biofouling on obsolete vessels. Mar Poll Bull. 56:1538–1544.
  • Dobretsov S, Dahms H, Qian P. 2006. Inhibition of biofouling by marine microorganisms and their metabolites. Biofouling. 22:43–54.
  • Dobretsov S, Abed R, Teplitski M. 2013. Mini-review: Inhibition of biofouling by marine microorganisms. Biofouling. 29:423–441.
  • Dreanno C, Kirby R, Clare A. 2006. Smelly feet are not always a bad thing: the relationship between cyprid footprint protein and the barnacle settlement pheromone. Biol Lett. 2:423–425.
  • Dreanno C, Kirby R, Clare A. 2007. Involvements of barnacle settlement-inducing protein complex (SIPC) in species recognition at settlement. J. Exp. Mar. Biol. Ecol. 351:276–282.
  • Duchene J. 2012. Hydroid and serpulid recruitment patterns using a new laser microtopography technique. J Exp Mar Biol Ecol. 412:27–36.
  • Faimali M, Garaventa F, Terlizzi A, Chiantore M, Cattaneo-Vietti R. 2004. The interplay of substrate nature and biofilm formation in regulating Balanus amphitrite Darwin, 1854 larval settlement. J Exp Mar Biol Ecol. 306:37–50.
  • Fernandez L. 2008. NAFTA and member country strategies for maritime trade and invasive species. J Envi Manag. 89:308–321.
  • Ferreira C, Goncalves J, Coutinho R. 2006. Ship hulls and oil platforms as potential vectors to marine species introduction. J Coast Res. SI39:1340–1345.
  • Floerl O, Inglis G. 2005. Starting the invasion pathway: the interaction between source populations and human transport vectors. Biol Invas. 7:589–606.
  • Floerl O, Pool T, Inglis G. 2004. Positive interactions between nonindigenous species facilitate transport by human vectors. Ecol Appl. 14:1724–1736.
  • Floerl O, Inglis G, Marsh H. 2005. Selectivity in vector management: an investigation of the effectiveness of measures used to prevent transport of non-indigenous species. Biol Invas. 7:459–475.
  • Freestone A, Osman R, Whitlatch R. 2009. Latitudinal gradients in recruitment and community dynamics in marine epifaunal communities: implications for invasion success. Smithsonian Contributions to the Marine Sciences. 38:247–258.
  • Fusetani N. 2004. Biofouling and antifouling. Nat Prod Res. 21:94–104.
  • Hadfield M. 2011. Biofilms and marine invertebrate larvae: what bacteria produce that larvae use to choose settlement sites. Ann Rev Mar Sci. 3:453–470.
  • Hadfield M, Paul V. 2001. Natural chemical cues for settlement and metamorphosis of marine invertebrate larvae. In: McClintock J, Baker B, editors. Marine chemical ecology. Boca Raton (FL): CRC Press; p. 431–461.
  • Hayes K, Sliwa C. 2003. Identifying potential marine pests – a deductive approach applied to Australia. Mar Poll Bull. 46:91–98.
  • Hedge L, Johnston E. 2012. Propagule pressure determines recruitment from a commercial shipping pier. Biofouling. 28:73–85.
  • Henkel D, Janussen D. 2011. Redescription and new records of Celtodoryx ciocalyptoides (Demospongiae: Poecilosclerida) – a sponge invader in the north east Atlantic Ocean of Asian origin? J Mar Biol Ass UK. 91:347–355.
  • Holm E, Cannon G, Roberts D, Schmidt A, Sutherland J, Rittschof D. 1997. The influence of initial surface chemistry on development of the fouling community at Beaufort, North Carolina. J Exp Mar Biol Ecol. 215:182–203.
  • Hopkins G, Forrest B. 2008. Management options for vessel hull fouling: an overview of risks posed by in-water cleaning. ICES J Mar Sci. 65:811–815.
  • Hopkins G, Forrest B. 2010. A preliminary assessment of biofouling and non-indigenous species associated with commercial slow-moving vessels arriving in New Zealand. Biofouling. 26:613–621.
  • Hung O, Thiyagarajan V, Zhang R, Wu R, Qian P. 2007. Attachment of Balanus amphitrite larvae to biofilms originating from contrasting environments. Mar Ecol Prog Ser. 333:229–242.
  • Hutchings P, Hilliard R, Coles S. 2002. Species introductions and potential for marine pest invasions into tropical marine communities, with special reference to the Indo-Pacific. Pac Sci. 56:223–233.
  • IMO. 2011. Guidelines for the control and management of ships. MEPC 62/24/Add1. 26:25.
  • Jensen G. 1989. Gregarious settlement by megalopae of the porcelain crabs Petrolisthes cinctipes (Randall) and P. eriomerus Stimpson. J Exp Mar Biol Ecol. 131:223–231.
  • Johnston E, Clark G. 2007. Recipient environment more important than community composition in determining the success of an experimental sponge transplant. Restor Ecol. 15:638–651.
  • Karlson R, Osman R. 2012. Species composition and geographic distribution of invertebrates in fouling communities along the east coast of the USA: a regional perspective. Mar Ecol Prog Ser. 458:255–268.
  • Keough M. 1989. Dispersal of the bryozoan Bugula neritina and effects of adults on newly metamorphosed juveniles. Mar Ecol Prog Ser. 57:163–171.
  • Kolar C, Lodge D. 2001. Progress in invasion biology: predicting invaders. Trends Ecol Evol. 16:199–204.
  • Lam C, Harder T, Qian P. 2003. Induction of larval settlement in the polychaete Hydroides elegans by surface-associated settlement cues of marine benthic diatoms. Mar Ecol Prog Ser. 263:83–92.
  • Lambert G. 2002. Nonindigenous ascidians in tropical waters. Pac Sci. 56:291–298.
  • Lewis J. 1974. The settlement behaviour of planulae larvae of the hermatypic coral Favia fragum (Esper). J Exp Mar Biol Ecol. 15:165–172.
  • Mack R, Simberloff D, Lonsdale W, Evans H, Clout M, Bazzaz F. 2000. Biotic invasions: causes, epidemiology, global consequences, and control. Ecol Appl. 10:689–710.
  • Maki J, Rittschof D, Mitchell R. 1992. Inhibition of larval barnacle attachment to bacterial films: an investigation of physical properties. Microb Ecol. 23:97–106.
  • Maki J, Ding L, Stokes J, Kavouras J, Rittschof D. 2000. Substratum/bacterial interactions and larval attachment: films and exopolysaccharides of Halomonas marina (ATCC 25374) and their effect on barnacle cyprid larvae, Balanus amphitrite Darwin. Biofouling. 16:159–170.
  • Mieszkin S, Callow M, Callow J. 2013. Interactions between microbial biofilms and marine fouling algae: a mini review. Biofouling. 29:1097–1113.
  • Neal A, Simoes F, Yule A. 1996. Interactions between shear rates and biofilms affecting exploratory behavior by cyprids of Elminius modestus (Cirripedia). Mar Biol. 127:241–246.
  • Norkko A, Rosenberg R, Thrush S, Whitlatch R. 2006. Scale- and intensity-dependent disturbance determines the magnitude of opportunistic response. J Exp Mar Biol Ecol. 330:195–207.
  • Pawlik J. 1992. Chemical ecology of the settlement of benthic marine invertebrates. Oceanogr Mar Biol Annu Rev. 30:273–335.
  • Piola R, Johnston E. 2008a. The potential for translocation of marine species via small-scale disruption to antifouling surfaces. Biofouling. 24:145–155.
  • Piola R, Johnston E. 2008b. Pollution reduces native diversity and increases invader dominance in marine hard-substrate communities. Diversity Distrib. 14:329–342.
  • Piola R, Dafforn K, Johnston E. 2009. The influence of antifouling practices on marine invasions. Biofouling. 25:633–644.
  • Qian P, Thiyagarajan V, Lau S, Cheung S. 2003. Relationship between bacterial community profile in biofilm and attachment of the acorn barnacle Balanus amphitrite. Aquat Microb Ecol. 33:225–237.
  • Rajagopal S, Venugopalan V, van der Velde G, Jenner H. 2006. Greening of the coast: a review of the Perna viridis success story. Aquatic Ecol. 40:273–297.
  • Ralston E, Swain G. 2009. Bioinspiration – the solution for biofouling control? Bioinsp Biomim. 4:9.
  • Rodriguez S, Ojeda F, Inestrosa N. 1993. Settlement of benthic marine invertebrates. Mar Ecol Prog Ser. 97:193–207.
  • Ruiz G, Fofonoff P, Carlton J, Wonham M, Hines A. 2000. Invasion of coastal marine communities in North America: apparent patterns, processes, and biases. Annu Rev Ecol Syst. 31:481–531.
  • Swain G, Herpe S, Tribou M, Ralston E. 2006. Short-term testing of antifouling surfaces: the importance of colour. Biofouling. 22:425–429.
  • Sylvester F, Kalaci O, Leung B, Lacoursiere-Roussel A, Murray C, Choi F, Bravo M, Therriault T, MacIsaac H. 2011. Hull fouling as an invasion vector: can simple models explain a complex problem? J Appl Ecol. 48:415–423.
  • Thiyagarajan V, Nair K, Subramoniam T, Venugopalan V. 2002. Larval settlement behaviour of the barnacle Balanus reticulatus in the laboratory. J Mar Biol Ass UK. 82:579–582.
  • Toupoint N, Mohit V, Linossier I, Bourgougnon N, Myrand B, Olivier F, Lovejoy C, Tremblay R. 2012. Effect of biofilm age on settlement of Mytilus edulis. Biofouling. 28:985–1001.
  • Tyrrell M, Byers J. 2007. Do artificial substrates favor nonindigenous fouling species over native species? J Exp Mar Biol Ecol. 342:54–60.
  • Unabi C, Hadfield M. 1999. Role of bacteria in larval settlement and metamorphosis of the polychaete Hydroides elegans. Mar Biol. 133:55–64.
  • Valdivia N, Heidemann A, Thiel M, Molis M, Wahl M. 2005. Effects of disturbance on the diversity of hard-bottom macrobenthic communities on the coast of Chile. Mar Ecol Prog Ser. 299:45–54.
  • van Soest R, Boury-Esnault N, Vacelet J, Dohrmann M, Erpenbeck D, de Voogd N, Santodomingo N, Vanhoorne B, Kelly M, Hooper J. 2012. Global diversity of sponges (Porifera). PLoS ONE. 7:e35105.
  • Virnstein R. 1990. The large spatial and temporal biological variability of Indian River Lagoon. Florida Sci. 53:249–256.
  • Wang C, Bao W, Gu Z, Li Y, Liang X, Ling Y, Cai S, Shen H, Yang J. 2012. Larval settlement and metamorphosis of the mussel Mytilus coruscus in response to natural biofilms. Biofouling. 28:249–256.
  • Wasson K, Fenn K, Pearse J. 2005. Habitat differences in marine invasions of central California. Biol Invas. 7:935–948.
  • Weber J, Epifanio C. 1996. Response of mud crab (Panopeus herbstii) megalopae to cues from adult habitat. Mar Biol. 126:655–661.
  • Wieczorek S, Todd C. 1997. Inhibition and facilitation of bryozoan and ascidian settlement by natural multi-species biofilms: effects of film age and the roles of active and passive larval attachment. Mar Biol. 128:463–473.
  • Woods C, Floerl O, Jones L. 2012. Biosecurity risks associated with in-water and shore-based marine vessel hull cleaning operations. Mar Poll Bull. 64:1392–1401.
  • Yang J, Shen P, Liang X, Li Y, Bao W, Li J. 2013. Larval settlement and metamorphosis of the mussel Mytilus coruscus in response to monospecific bacterial biofilms. Biofouling. 29:247–259.

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