참고문헌
- Yoo JW, KIM HJ, Lee HJ, Lee CG, Kim CS, Hong JS, et al. 2007. Interaction between invertebrate grazers and seaweed in the East coast of Korea. J. Korean Soc. Oceanogr. 12: 125-132.
- Cho JK, Lim YS, Hong D, Kim JK. 2012. Modeling algae transport in costal areas with marine afforestation. J. Korean Soc. Mar. Environ. Eng. 15: 1-8. https://doi.org/10.7846/JKOSMEE.2012.15.1.001
- Son HJ, Um MY, Kim IH, Cho SM, Han DS, Lee CH. 2016. In vitro Screening for anti-dementia activities of seaweed extract. J. Korean Soc. Food Sci. Nutr. 45: 966-972. https://doi.org/10.3746/jkfn.2016.45.7.966
- Lee MS, Lee YK. 2014. Effects of seaweed consumption on obesity and food intake. Korean Contents Association 14: 478-485. https://doi.org/10.5392/JKCA.2014.14.01.478
- Kim JH, Kim YH, Kim SK, Kim BW, Nam SW. 2011. Properties and industrial applications of seaweed polysaccharides-degrading enzymes from the marine microorganisms. J. Korean Microbial. Biotechnol. 39: 189-199.
- Campbell AH, Marzinelli EM, Gelber J, Steinberg PD. 2015. Spatial variability of microbial assemblages associated with a dominant habitat-forming seaweed. Front. Microbiol. 6: 230. doi:10.3389.
- Duan D, Xu L, Fei X, Xu H. 1993. Short Communication: Marine organisms attached to seaweed surfaces in Jiaozhou Bay, China. World J. Microb. Biot. 11: 351-352.
- Marshall K, Joint I, Callow ME, Callow JA. 2006. Effect of marine bacterial isolates on the growth and morphology of axenic plantlets of the green alga Ulva linza. Microbial Ecology 52: 30-310.
- Yun KJ, Yang G, Feng Z, Nenkep VN, et al. 2010. Screening on receptor tyrosin kinase inhibitory activity of marine algaederived symbiotic microorganisms. Korean T. Pharmacogn. 41: 43-47.
- Li Y, Li X, Son BW, Choi HD. 2003. Screening of antimicrobial activity from the marine-derived fungus. Korean J. Phamacogn. 34: 142-144.
- Choi JD, Park UK. 1993. Identification of the marine microorganisms producing bioactives. Bull. Korean Fish. Soc. 26: 305-300.
- Choi HJ, Jung MJ, Jeong YK. 2000. Isolation and identification of a marine bacterium producing an immunostimulant. J. Korean Soc. Food Sci. Nutr. 29:1145-1150.
- Kim DH, Park SH, Kim JH, Lee HR, Heo MS. 2017. Screening of antimicrobial activity of marine-derived biomaterials against fish pathogens. J. Life. Sci. 45: 250-256.
- Ghimire KN, Katsutoshi I, Keisuke O, Hayashida T. 2007. Adsorptive separation of metallic pollutants onto waste seaweeds, Porphyra Yezoensis and Ulva Japonica. Separ. Sci. Technol. 42: 2003-2018. https://doi.org/10.1080/15363830701313461
- Paudyal H, Pangeni B, Inoue K, Kawakita H, Ohto K, Ghimire KN. 2013. Preparation of novel alginate based anion exchanger from Ulva japonica and its application for the removal of trace concentrations of fluoride from water. Bioresource. Technol. 148: 221-227. https://doi.org/10.1016/j.biortech.2013.08.116
- Jeju National University Industry-Academic Cooperation Foundation, JeJu Technopark. Composition comprising the extract of Ulva japonica for prevention of hair loss or promoting hair growth. Korea patent 10-2016-0073042.
- Jeanmougin F, Thompson JD, Gouy M, Higgins DG, Gibson TJ. 1998. Multiple sequence alignment with Clustal X. Trends in Biochem. Sci. 23: 403-405. https://doi.org/10.1016/S0968-0004(98)01285-7
- Tamura K, Stecher G, Peterson D, Filipski A, Kumar S. 2013. MEGA6: Molecular evolutionary genetics analysis version 6.0. Mol. Biol. Evol. 30: 2725-2729. https://doi.org/10.1093/molbev/mst197
- Park SH, Kim JY, Kil YJ, Heo MS. 2014. Pylogenic diversity of bacterial community inhabited in Callyspongia Elegans. J. Korean Microbiol. 50: 152-157. https://doi.org/10.7845/kjm.2014.4030
- Valgas C, Souza SM, Smania EFA. 2007. Screening methods to determine antibacterial activity of natural products. Braz. J. Microbial. 38: 1678-4405.
- Alfreider A, Pernthaler J, Amann R, Sattler B, Glockner F, Wille A, et al. 1996. Community analysis of the bacterial assemblages in the winter cover and pelagic layers of high mountain lake by in situ hybridization. Appl. Environ. Microbiol. 62: 2138-2144.
- Eilers H, Pernthaler J, Glockner FO, Amann R. 2000. Culturability and in situ abundance of pelagic bacteria from the North Sea. Appl. Environ. Microbiol. 66: 3044-3051. https://doi.org/10.1128/AEM.66.7.3044-3051.2000
- Zinger L, Amaral-Zettler LA, Fuhrman JA, Horner-Devin MC, Huse SM, Welch DB, et al. 2011. Global patterns of bacteria betadiversity in seafloor and ecosystems. PLoS One 6: e24570. https://doi.org/10.1371/journal.pone.0024570
- Vairappan CS, Suzuki M. 2000. Dynamics of total surface bacteria and bacterial species counts during desiccation in the Malaysian sea lettuce, Ulva reticulata (Ulvales, Chlorophyta). Phycological Res. 48: 55-61. https://doi.org/10.1111/j.1440-1835.2000.tb00197.x
- Burke C, Thomas T, Lewis M, Steinberg P, Kjelleberg S. 2011. Composition, uniqueness and variability of the epiphytic bacterial community of the green alga Ulva australis. ISME J. 5: 590-600. https://doi.org/10.1038/ismej.2010.164
- Pensyan A, Marshall-Jones Z, Holmstrom C, Kjelleberg S, Egan S. 2009. Antimicrobial activity observed among cultured epiphytic bacteria reflects their potential as source of new drugs. FEMS Microbial Ecol. 69: 11-124.
- Choi HR, Park SH, Kim DH, Kim JY, Heo MS. 2016. Phylogenetic diversity and community analysis of marine bacteria associated with Ulva pertusa. J. Life Sci. 26: 819-825. https://doi.org/10.5352/JLS.2016.26.7.819
- Roth-Schulze AJ, Pintado J, Zozaya-Valdes E, Cremades J, Ruiz P, Kjelleberg S, et al. 2018. Functional biogeography and host specificity of bacterial communities associated with the Marine Green Alga Ulva spp. Mol. Ecol. Doi: 10.1111/mec.14529.
- Cha YK, Kim YS, Choi YS. 2012. Antimicrobial peptide as natural antibiotic materials. Biotechnol. Bioprocess Eng. 27: 9-15.
- Cleveland J, Montville TJ, Nes IF, Cjikindas ML. 2001. Bacteriocin: safe, natural antimicrobials for food preservation. Int. J. Food Microbial. 71: 1-20. https://doi.org/10.1016/S0168-1605(01)00560-8
- Baruzzi F, Quintieri L, Morea M, Caputo L. 2011. Antimicrobial compounds produced by Bacillus spp. and applications in food, pp. 1102-1111. In Vilas AM (ed.), Science against Microbial Pathogens: Communicating Current Research and Technological Advances, Formatex: Badajoz, Spain.
- Yilmaz M, Soran H, Beyatli Y. 2006. Antimicrobial activities of some Bacillus spp. strains isolated from the soil. Microbiol. Res. 161: 127-131. https://doi.org/10.1016/j.micres.2005.07.001
- Amin A, Khan MA, Ehsanullah M, Haroon U, Azam SMFAH. 2012. Production of peptide antibiotics by Bacillus SP. GU 057 indigenously isolated from saline soil. Braz. J. Microbiol. 43: 1340-1346. https://doi.org/10.1590/S1517-83822012000400015
- Beric T, Kojic M, Stankovic S, Topisirovic LJ, Degrassi G, Myers M, et al. 2012. Antimicrobial activity of Bacillus sp. natural isolates and their potential use in the biocontrol of phytopathogenic bacteria. Food Technol. Biotechnol. 50: 25-31.
- Chen Y, Li J, Xiao P, Zhu W, Mo Z. 2016. The ability of marine Bacillus spp. isolated from fish gastrointestinal tract and culture pond sediment to inhibit growth of aquatic pathogenic bacteria. Iran J. Fish. Sci. 15: 701-714.
- Arig N, Suzer C, Gokvardar A, Basaran F, Coban D, Yildirim S, et al. 2013. Effects of probiotic (Bacillus sp.) supplementation during larval development of gilthead sea bream (Sparus aurata, L.). Turk. J. Fish. Aquat. Sci. 13: 407-414.
- Zuenko VA, Laktionov KS, Pravdin IV, Kravstsova LZ, Ushakova NA. 2017. Effect of Bacillus subtilis in feed probiotic on the digestion of fish cultured in cages. Iran J. Ichthyol. 57: 152-157. https://doi.org/10.1134/S0032945217010143
- Vachee A, Mossel DA, Leclerc H. 1997. Antimicrobial activity among Pseudomonas and related strains of mineral water origin. J. Appl. Microbiol. 83: 652-658. https://doi.org/10.1046/j.1365-2672.1997.00274.x
- Degrassi G, Aguilar C, Bosco M, Zahariev S, Pongor S, Venturi V. 2002. Plant growth-promoting Pseudomonas putida WCS358 produces and secretes four cyclic dipeptides: cross-talk with quorum sensing bacterial sensors. Curr. Microbiol. 45: 250-254. https://doi.org/10.1007/s00284-002-3704-y
- Kumar A, Kumar S, Kumar S. 2005. Biodegradation kinetics of phenol and catechol using Pseudomonas putida MTCC 1194. Biochem. Eng. J. 22: 151-159. https://doi.org/10.1016/j.bej.2004.09.006