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Distribution of Aerial Algae and Biological Classes in Five Stone Cultural Properties of Korea

국내 5기의 석조문화재에 분포하는 기중조류와 생물학적 등급에 관한 연구

  • Lim, An-Suk (Department of Biology, Kyonggi University) ;
  • Lee, Ok-Min (Department of Biology, Kyonggi University)
  • Published : 2008.03.01

Abstract

The purpose of research was to find aerial algae and to investigate the change of color in each class of photosynthetic pigments in five stone cultural properties of Korea. It turned out to be a total of 29 taxa, including as 26 species, 1 variety and 2 unidentified species. Among them, Haplaosiphon fontinalis and Stigonema turfaceum were found to be newly recorded species of Korea. The average Chl-a concentration from the change of color in the stone cultural properties increased as its class; however, the class 5 showed lower values than the class 4, which was shown in previous studies. From the studies of algal distribution, chlorophytes appeared earlier than cyanophytes in stone cultural properties of algal infestation. Also, 50% or more of the five stone cultural properties already appeared to have bio-pollution.

Keywords

References

  1. 정준. 1993. 한국담수조류도감. 아카데미출판사. 서울. 96 pp.
  2. APHA. 1998. Standard method. For the examination of water and wastewater. 20th. New York, 1220 pp.
  3. Arino X. and Saiz-Jimenez C. 1996. Colonization and deterioration processes in Roman mortars by cyanobacteria, algae and lichens. Aerobiologia 12: 9-18 https://doi.org/10.1007/BF02248118
  4. Barberousse H., Lombardo R.J., Tell G. and Coute A. 2006b. Factors involved in the colonisation of building facades by algae and cyanobacteria in France. Biofouling 22: 69-77 https://doi.org/10.1080/08927010600564712
  5. Barberousse H., Tell G., Yepremian C. and Coute A. 2006a. Diversity of algae and cyanobacteria growing on building facades in France. Algological Studies 120: 81-105 https://doi.org/10.1127/1864-1318/2006/0120-0081
  6. Bennett A. and Bogorad L. 1973. Complementary chromatic adaptation in a filamentous Blue-green alga. J. Cell Biol. 58: 419-435
  7. Bordo I.M., Sharnoff S.D. and Sharnoff S. 2001. Lichens of North America. Yale University Press, New Heaven, USA, 828 pp.
  8. Crispim C.A., Gaylarde C.C. and Gaylarde P.M. 2004. Biofilms on church walls in Porto Alegre, RS, Brazil, with special attention to cyanobacteria. Int. Biodeterior. Biodegrad. 54: 121- 124 https://doi.org/10.1016/j.ibiod.2004.03.001
  9. Donner A., Minden V., Rickler M. and Rasch M. 2002. Evaluations of algal infestation on building facades using a quantitative chlorophyll a method. Qualitat/Bausanierung Schriftenreihe 13: 89-95
  10. Eggert A. Haubner N., Klausch S. Karsten U. and Schumann R. 2006. Quantification of algal biofilms colonising building materials: chlorophyll a measured by PAM-fluorometry as a biomass parameter. Biofouling 22: 79-90 https://doi.org/10.1080/08927010600579090
  11. Gaylarde P.M. and Gaylarde C.C. 2000. Algae and cyanobacteria on painted building in Latin America. Int. Biodeterior. Biodegrad. 46: 93-97 https://doi.org/10.1016/S0964-8305(00)00074-3
  12. Gaylarde C.C. and Gaylarde P.M. 2005. A comparative study of the major microbial biomass of biofilms on exteriors of buildings in Europe and Latin America. Int. Biodeterior. Biodegrad. 55:131-139 https://doi.org/10.1016/j.ibiod.2004.10.001
  13. Hirose H.M., Akiyama T., Imahori K., Kasaki H. Kumano S., Kobayasi H., Takahashi E., Tsumura T., Hirano M. and Yamagishi T. 1977. Illustrations of the Japanese freshwater algae. Uchidarokakuho Publishing Co., Ltd., Tokyo, Japan, 932 pp.
  14. Jain K.K., Mishra A.K. and Singh T. 1993. Biodeterioration of stone: A review of mechanisms involved. In: Garg K.L., Garg N. and Mukerji K.G. (Eds.) Recent Advances in Biodeterioration and Biodegradation 1: 323-354
  15. Jeffrey S.W. and Humphrey G.F. 1975. New spectrophotometric equations for determing chlorophylls a, b, c1 and c2 in higher plants, algae and natural phytoplankton. Biochem. Physio. Pflan. 167: 191-194 https://doi.org/10.1016/S0015-3796(17)30778-3
  16. John D.M., Whitton B.A. and Brook A.J. 2002. The Freshwater Algal Flora of the British Isles: An Identification Guide to Freshwater and Terrestrial Algae. Cambridge University Press and The Natural History Museum, Cambridge, 702 pp.
  17. Kiel G. and Gaylarde C.C. 2005. Bacterial diversity in biofilms on external surfaces of historic buildings in Porto Alegre. World J. Microbiol. Biotechnol. 22: 293-297
  18. Kies L. 1967. Über Zellteilung und Zygotenbildung bei Roya obtusa(Breb.) West et West. Mitt. Staatsint. Allg. Bot. 12: 35- 42
  19. Kim G.H., Klotchkova T.A. and Suh M.C. 2001. The effect of chemical treatments on biodeterioration of stone cultural properties. Kor. J. Environ. Biol. 19: 101-105
  20. Kim S.D. 2007. Technical researches and the advance on the Stone Heritage Conservation in Korea. In: International Symposium of Stone Conservation, Seoul, Korea. pp. 5-21
  21. Klochkova T.A. and Kim G.H. 2005. Ornamented Resting Spores of a Green Alga, Chlorella sp., Collected from the Stone Standing Buddha Statue at Jungwon Miruksazi in Korea. Algae 4: 295-298 https://doi.org/10.4490/ALGAE.2005.20.4.295
  22. Lamenti G., Tiano P. and Tomaselli L. 2000. Biodeterioration of ornamental marble statues in the Boboli Gardens (Florence, Italy). J. Appl. Phycol. 12: 427-433 https://doi.org/10.1023/A:1008135501265
  23. Metting B. 1981. The systematics and ecology of soil algae. The Botanical review 47: 195-312 https://doi.org/10.1007/BF02868854
  24. Ortega-Clavo J.J., Hernandez-Marine M. and Saiz-Jimenez C. 1991. Biodeterioration of building Materials by Cyanobacteria and Algae. Int. Biodeterior. Biodegrad. 28: 165- 185 https://doi.org/10.1016/0265-3036(91)90041-O
  25. Ortega-Calvo J.J., Hernandez-Marine M. and Saiz-Jimenez C. 1992. Experimental strategies for Investigating Algal Deterioration of Stone. In: Podrigues J., Henriques F. and Jeremias F. (eds) Proceedings of the 7th international congress on Deterioration and Conservation of stone, Lisbon, Portugal. pp. 541-549
  26. Park M.E. and Sung K.Y. 2005. Reaction path modeling of granitic cultural properties and its implication for conservation. J. Miner. Soc. Korea 18: 83-92
  27. Pitts B., Hamilton M.A., McFeters G.A., Stewart P.S., Willse A. and Zelver N. 1998. Color measurement as a means of quantifying surface biofouling. J. Microbio. Methods 34: 143- 149 https://doi.org/10.1016/S0167-7012(98)00082-7
  28. Prieto B., Rivas T. and Silva B. 2002. Rapid Quantification of Phototrophic Microorganisms and their Physiological state through their colour. Biofouling 18: 229-236 https://doi.org/10.1080/08927010290014908
  29. Prieto B., Silva B. and Lantes O. 2004. Biofilm quantification on stone surfaces: comparison of various methods. Sci. Total Environ. 333: 1-7 https://doi.org/10.1016/j.scitotenv.2004.05.003
  30. Rindi F. and Guiry M.D. 2002. Diversity, life history, and ecology of Trentrepohlia and Printzina (Trenrepohliales, Chlorophyta) in urban habitats in Western Ireland. J. Phycol. 38: 39-54
  31. Saiz-Zimenez C. 1999. Biogeochemistry of Weathering Processes in Monuments. Geomicrobiol. J. 16: 27-37 https://doi.org/10.1080/014904599270721
  32. Sarro M.I., García A.M., Rivalta V.M., Moreno D.A. and Arroyo I. 2006. Biodeterioration of the Lions Fountain at the Alhambra Lalace, Granada(Spain). Build. Environ. 41: 1811-1820 https://doi.org/10.1016/j.buildenv.2005.07.029
  33. Schumann R., Haubner N., Klausch S. and Karsten U. 2005. Chlorophyll extraction methods for the quantification of green microalgae colonizing building facades. Int. Biodeterior. Biodegrad. 55: 213-222 https://doi.org/10.1016/j.ibiod.2004.12.002
  34. Silveira S.T., Burkert J.F.M., Costa J.A.V., Burkert C.A.V. and Kalil S.J. 2006. Optimization of phycocyanin extraction from Spirulina platensis using factoral design. Bioresource Technology 98: 1629-1634 https://doi.org/10.1016/j.biortech.2006.05.050
  35. Tomaselli L., Lamenti G., Bosco and Tiano P. 2000. Biodiversity of photosynthetic micro-organisms dwelling on stone monuments. Int. Biodeterior. Biodegrad. 46: 251-258 https://doi.org/10.1016/S0964-8305(00)00078-0
  36. Uchida E., Ogawa T., Maeda N. and Nakagawa T. 1999. Deterioration of stone materials in the Angkor monuments, Cambodia. Engine. Geolo. 55: 101-112
  37. Videla H.A., Guiamet P.S. and Gomez de Saravia S. 2000. Biodeterioration of Mayan archaeological sites in the Yucatan Peninsula, Mexico. Int. Biodeterior. Biodegrad. 46: 335-341 https://doi.org/10.1016/S0964-8305(00)00106-2
  38. Warscheid T. and Braams J. 2000. Biodeterioration of stone: a review. Int. Biodeterior. Biodegrad. 46: 343-368 https://doi.org/10.1016/S0964-8305(00)00109-8
  39. Wee Y.C. and Lee K.B. 1980. Proliferation of algae on surfaces of Buildings in Singapore. Int. Biodeterior. Bull. 16: 113-117
  40. Zurita Y.P., Cultrone G., Castillo S., Sebastian E. and Bolívar F.C. 2005. Microalgae associated with deteriorated stonework of the fountain of Bibatauín in Granada, Spain. Int. Biodeterior. Biodegrad. 55: 55-61 https://doi.org/10.1016/j.ibiod.2004.05.006

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