References

  1. S. Cao, J.D. Wang, H.S. Chen, D.R. Chen, Progress of marine biofouling and antifouling technologies, Chin. Sci. Bull., 56 (2011) 598–612.
  2. L.H. Sweat, G.W. Swain, K.Z. Hunsucker, K.B. Johnson, Transported biofilms and their influence on subsequent macrofouling colonization, Biofouling, 33 (2017) 433–449.
  3. F. D’Sousa, R. Bruin, A. Blerstekar, G. Donnelly, J. Klijnstra, C. Rentrop, P. Wiilemsen, Bacterial assay for the rapid assessment of fouling and fouling release properties of coatings an mater, J. Ind. Microbiol. Biotechnol., 37 (2010) 363–370.
  4. W. Schultz, Multiple dopamine functions at different time courses, Annu. Rev. Neurosci., 30 (2007) 259–288.
  5. E. Armstrong, K.G. Boyd, J.G. Burgess, Prevention of marine biofouling using natural compounds from marine organisms, Biotechnol. Annu. Rev., 6 (2000) 221–241.
  6. Y. Xu, H. He, S. Schulz, X. Liu, N. Fusetani, H. Xiong, P. Qian, Potent antifouling compounds produced by marine Streptomyces, Bioresour. Technol., 101 (2010) 1331–1336.
  7. J. You, X. Xue, L. Cao, X. Lu, Inhibition of Vibrio biofilm formation by a marine actinomycete strain A66, Appl. Microbiol. Biotechnol., 76 (2007) 1137–1144.
  8. S. Prakash, R. Ramasubburayan, P. Iyapparaj, A.P.R. Arthi, N.K. Ahila, V.S. Ramkumar, G. Immanuel, A. Palavesam, Environmentally benign antifouling potentials of triterpeneglycosides from Streptomyces fradiae: a mangrove isolate, RSC Adv., 5 (2015) 29524–29534.
  9. L.H. Yang, L. Miao, O.O. Lee, X. Li, H. Xiong, K.L. Pang, L. Vrijmoed, P.Y. Qian, Effect of culture conditions on antifouling compound production of a sponge-associated fungus, Appl. Microbiol. Biotechnol., 74 (2007) 1221–1231.
  10. L.H. Yang, O.O. Lee, T. Jin, X.C. Li, P.Y. Qian, Antifouling properties of 10β-formamidokalihinol-A and kalihinol A isolated from the marine sponge Acanthella cavernosa, Biofouling, 22 (2006) 23–32.
  11. J.R. Pawlik, Antipredatory defensive roles of natural products from marine invertebrates, E. Fattorusso, W.H. Gerwick, O. Taglialatela-Scafati, Eds., Handbook of Marine Natural Products, Springer, New York, 2012, pp. 677–710.
  12. Y. Cortés, E. Hormazábal, H. Leal, A. Urzúa, A. Mutis, L. Parra, A. Quiroz, Novel antimicrobial activity of a dichloromethane extract obtained from red seaweed Ceramium rubrum (Hudson) (Rhodophyta: Florideophyceae) against Yersinia ruckeri and Saprolegnia parasitica, agents that cause diseases in salmonids, Electron. J. Biotechnol., 17 (2014) 126–131.
  13. D. Feng, C. Ke, S. Li, C. Lu, F. Guo, Pyrethroids as promising marine antifoulants: laboratory and field studies, Mar. Biotechnol., 11 (2009) 153–160.
  14. A.S. Clare, Marine natural product antifoulants: status and potential, Biofouling, 9 (1996) 211–229.
  15. S.M. Ribeiro, R. Rogers, A.C. Rubem, B.A.P. Da Gama, G. Muricy, R.C. Pereira, Antifouling activity of twelve demosponges from Brazil, Braz. J. Biol., 73 (2013) 501–506.
  16. S. Dobretsov, A.S.M. Al-Wahaibi, D. Lai, J. Al-Sabahi, M. Claereboudt, P. Proksch, B. Soussif, Inhibition of bacterial fouling by soft coral natural products, Int. Biodeterior. Biodegrad., 98 (2015) 53–58.
  17. M.W. Taylor, R. Radax, D. Steger, M. Wagner, Sponge-associated microorganisms: evolution, ecology, and biotechnological potential, Microbiol. Mol. Biol. Rev., 71 (2007) 295–247.
  18. B Mayzel, M. Haber, M. Ilan, Chemical defense against fouling in the solitary ascidian Phallusia nigra, Biol. Bull., 227 (2014) 232–241.
  19. R. Trepos, G. Cervin, C. Hellio, H. Pavia, W. Stensen, K. Stensvåg, J.S. Svendsen, T. Haug, J. Svenson, Antifouling compounds from the sub-arctic ascidian Synoicum pulmonaria: synoxazolidinones A and C, pulmonarins A and B, and synthetic analogues, J. Nat. Prod., 77 (2014) 2105–2113.
  20. J.Y. Cho, Antifouling chromanols isolated from brown alga Sargassum horneri, J. Appl. Phycol., 25 (2012) 299–309.
  21. X. Li, S. Dobretsov, Y. Xu, X. Xiao, O.S. Hung, P. Qian, Antifouling diketopiperazines produced by a deep-sea bacterium, Streptomyces fungicidicus, Biofouling, 22 (2006) 201–208.
  22. L.W.K. Moodie, R. Trepos, G. Cervin, K.A. Bråthen, B. Lindgård, R. Reiersen, P. Cahill, H. Pavia, C. Hellio, J. Svenson, Prevention of marine biofouling using the natural allelopathic compound batatasin-III and synthetic analogues, J. Nat. Prod., 80 (2017) 2001–2011.
  23. T. Mathur, S. Singhal, S. Khan, D.J. Upadhyay, T. Fatma, A. Rattan, Detection of biofilm formation among the clinical isolates of Staphylococci: an evaluation of three different screening methods, Indian J. Med. Microbiol., 24 (2006) 25–29.
  24. G.A. O’Toole, R. Kolter, Flagellar and twitching motility are necessary for Pseudomonas aeruginosa biofilm development, Mol. Microbiol., 30 (1998) 295–304.
  25. S. Stepanović, D. Vukovic, I. Dakic, B. Savic, M.S. Vabic-Vlahovic, A modified microtiter plate test for quantification of staphylococcal biofilm formation, J. Microbiol. Methods, 40 (2000) 175–179.
  26. L. Ye, Q. Zhou, C. Liu, X. Luo, G. Na, T. Xi, Identification and fermentation optimization of a marine-derived Streptomyces griseorubens with anti-tumor activity, Indian J. Mar. Sci., 38 (2009) 14–21.
  27. K. Chaieb, B. Kouidhi, H. Jrah, K. Mahdouani, A. Bakhrouf, Antibacterial activity of Thymoquinone, an active principle of Nigella sativa and its potency to prevent bacterial biofilm formation, BMC. Complement. Altern. Med., 2011 (2011) 11–29.
  28. M. Berney, F. Hammes, F. Bosshard, H. Weilenmann, T. Egli, Assessment and interpretation of bacterial viability by using the LIVE/DEAD BacLight kit in combination with flow cytometry, Appl. Environ. Microbiol., 73 (2007) 3283–3290.
  29. A.B. Soliev, K. Hosokawa, K. Enomoto, Bioactive pigments from marine bacteria: applications and physiological roles, Evidence Based Complement. Altern. Med., 2011 (2011) 1–17.
  30. T.D. Kaiser, E.M. Pereira, K.R. Dos Santos, E.L. Maciel, R.P. Schuenck, A.P. Nunes, Modification of the Congo red agar method to detect biofilm production by Staphylococcus epidermidis, Diagn. Microbiol. Infect. Dis., 75 (2013) 235–239.
  31. D. Dhanasekaran, N. Thajuddin, M. Rashmi, T.L. Deepika, M. Gunasekaran, Screening of biofouling activity in marine bacterial isolate from ship hull, Int. J. Environ. Sci. Technol., 6 (2009) 197–202.
  32. S.K. Augustine, S.P. Bhavsar, B.P. Kapadnis, A non-polyene antifungal antibiotic from Streptomyces albidoflavus PU23, J. Biosci., 30 (2005) 201–211.
  33. H.D. Bhattarai, Y.K. Lee, K.H. Cho, H.K. Lee, H.W. Shin, The study of antagonistic interactions among pelagic bacteria: a promising way to coin environmental friendly antifouling compounds, Hydrobiologia, 568 (2006) 417–423.
  34. H.D. Bhattarai, V.S. Ganti, B. Paudel, Y.K. Lee, H.K. Lee, Y.K. Hong, H.W. Shin, Isolation of antifouling compounds from the marine bacterium, Shewanella oneidensis SCH0402, World J. Microbiol. Biotechnol., 23 (2007) 243–249.
  35. D.H. Dusane, P. Matkar, V.P. Venugopalan, A.R. Kumar, S.S. Zinjarde, Cross-species induction of antimicrobial compounds, biosurfactants and quorum-sensing inhibitors in tropical marine epibiotic bacteria by pathogens and biofouling microorganisms, Curr. Microbiol., 62 (2011) 974–980.
  36. F. Liu, C.C. Zhao, L. Xia, F. Yang, X. Chang, Y. Qiang, Biofouling characteristics and identification of preponderant bacteria at different nutrient levels in batch tests of a recirculating cooling water system, Environ. Technol., 32 (2011) 901–910.
  37. H.J. Kwon, W.C. Smith, A.J. Scharon, S.H. Hwang, M.J. Kurth, B. Shen, C–O bond formation by polyketide synthases, Science, 297 (2002) 1327–1330.
  38. S. Sengupta, A. Pramanik, A. Ghosh, M. Bhattacharyya, Antimicrobial activities of actinomycetes isolated from unexplored regions of Sundarbans mangrove ecosystem, BMC Microbiol., 15 (2015) 1–16.
  39. B. Bavya, P. Mohanapriza, R. Pazhanimurugan, R. Balagurunathan, Potential bioactive compound from marine actinomycetes against biofouling bacteria, Indian J. Geo. Mar. Sci., 40 (2011) 578–572.
  40. G.N. Dalimova, É.L. Kristallovich, Sorption properties of technical lignins. III. IR-spectral investigation of the sorption capacity of technical lignins and their derivatives in relation to bile acids, Chem. Nat. Compd., 34 (1998) 499–501.
  41. S.D. Kirupha, A. Murugesan, T. Vidhyadevi, P. Baskaralingam, S. Sivanesan, L. Ravikumar, Novel polymeric adsorbents bearing amide, pyridyl, azomethine and thiourea binding sites for the removal of Cu (II) and Pb (II) ions from aqueous solution, Sep. Sci. Technol., 48 (2212) 254–262.
  42. S.D. Kirupha, S. Kalaivani, T. Vidhyadevi, P. Premkumar, P. Baskaralingam, S. Sivanesan, L. Ravikumar, Effective removal of heavy metal ions from aqueous solutions using a new chelating resin poly [2,5-(1,3,4-thiadiazole)-benzalimine]: kinetic and thermodynamic study, J. Water Reuse Desal., 6 (2016) 310–324.
  43. S.D. Kirupha, R. Narayanasamy, M. Sornalatha, S. Sivanesan, L. Ravikumar, Synthesis and metal ion uptake studies of chelating polyurethane resin containing donor atoms: experimental optimization and temperature studies, Can. J. Chem. Eng., 95 (2017) 944–953.