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기상조건과 배설지 특성에 따른 수달(Lutra lutra) 분변의 표백현상에 관한 연구
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  • 기상조건과 배설지 특성에 따른 수달(Lutra lutra) 분변의 표백현상에 관한 연구
  • A Study of Bleaching Phenomenon of Otter (Lutra lutra) Spraints in Relation to Weather Conditions and Characteristics of Sprainting Sites
저자명
노은영,한성용,유정칠
간행물명
한국습지학회지KCI
권/호정보
2015년|17권 1호(통권50호)|pp.1-10 (10 pages)
발행정보
한국습지학회|한국
파일정보
정기간행물|KOR|
PDF텍스트(1.68MB)
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자연과학
서지반출

국문초록

배설 후 시간 경과에 의해 나타나는 수달(Lutra lutra) 분변의 표백현상은 신선한 분변(Fresh spraints)과 오래된 분변 (Old spraints)을 알려주는 척도로 이용되고 있다. 기존의 연구들은 분변 표백현상에 대해 외적 특징만을 언급해왔을 뿐, 분변 간 발생하는 표백률의 차이를 설명할 수 없었다. 본 연구는 공극률, 연경도 같은 배설지 특성에 의해 발생하는 미기상(Micrometeorology) 차이가 분변 간 표백률에 차이를 유발할 것이라 가정했다. 배설지 조건은 점토, 모래, 바위, 콘크리트의 네 가지 유형으로, 일사량의 영향을 보기 위해 다시 양지와 음지로 나누었다. 배설지 미기상은 지표면의 기온과 습도 측정을 통해 도출했고, 계절적 변화를 고려하기 위해 전 계절에 걸친 측정이 이루어졌다. 배설지 기상요소 의 상관관계 분석을 통해 양지에서 배설지 유형에 따라 미기상에 차이가 발생하는 것을 알 수 있었다. 배설지 미기상 차이가 분변 표백현상에 미치는 영향을 분석한 결과 양지의 바위와 콘크리트 배설지에서 높은 분변 표백률이 나타났으 며, 특히 여름에는 양지의 점토 배설지에서 분변 표백률이 가장 높게 나타나는 특징을 보였다(63.4 ± 7.6%). 전 계절에 걸쳐 표백률이 가장 낮은 배설지는 모래인 것으로 나타났다. 각 배설지의 분변 표백률은 계절과 햇빛의 유무에 따라 차이가 발생했고, 배설지 특성에 의한 열전도도 차이가 배설지 기온 차이를 유발함으로써, 분변 표백률에 차이가 발생함 을 알 수 있었다. 따라서 본 연구는 분변을 간접흔적(Indirect sign)으로 이용하는 수달 생태조사에 있어서, 분변 표백현 상에 대한 기존의 외적 평가는 계절, 배설지 특성 및 햇빛의 유무를 함께 고려해야 한다는 것을 보여준다.

영문초록

The bleaching phenomenon of otter spraints is indicates that the age of spraints (fresh or old spraints). As previous studies on the old otter faeces (spraint) have focused only on the external changes of spraints, it has been difficult to explain the difference of the decomposition rates among old spraints. We hypothesized that the micrometeorology difference caused by various characteristics of sprainting sites such as porosity and consistency of soil could affect the extent of the decomposition rate, the solar bleaching phenomenon of spraints used as a measure of the patterns of old spraints. Sprainting sites were classified into four types (Clay, Sand, Rock and Concrete spot) and each type was divided into two groups according to the sunlight condition (Sunny site and Shady site) to measure the effect of solar radiation. Micrometeorology of the sites were evaluated by measuring temperatures and humidities of the sites during the whole season. The variations in micrometeorology of the sunny sites according to the sprainting site types were examined with correlation analyses between the factors of micrometeorology. The analyses on the bleaching phenomenon of the spraints by micrometeorology showed that the highest rate of bleaching was found at the ‘Rock spot’ and ‘Concrete spot’ of the sunny site and especially in summer, the highest rate of bleaching (63.4 ± 7.6%) was found at the ‘Clay spot’ of the sunny sites. The lowest rate of bleaching was found at the ‘Sand spot’ of the sunny sites. The above findings show that the difference in bleaching rates among sprainting sites was due to the seasonal or sunny condition. In addition, we found that the differences in thermal conductivity among sprainting site characteristics have resulted in different sprainting site temperature which have affected the rate of bleaching of spraints. In conclusion, this study suggests that studies of otters on their population size and home ranges using spraints as an indirect sign, should consider the effects of sprainting site characteristics and weather conditions.

목차

1. 서 론
2. 조사방법
3. 결 과
4. 고 찰
References

참고문헌 (52건)

  • Ando, M, Son, SW, and Shiraishi, S (1985). The common otter, Lutra lutra, in Southern Korea, Science Bulletin of the Faculty of Agriculture, Kyushu University, 40(1), pp. 1-5.
  • Ando, M, Han, SY, Shiraishi, S, Kim, BJ, and Hiroshi, O (2010). Changing status of the eurasian otter (Lutra lutra) at coastal area of Gyeongsangnam-do in Korea during 1982-2009, Presented at the 57th Annual meeting of the Ecological Society of Japan, Ecology Society of Japan, Tokyo, Japan, March 15-20, pp. 452.
  • Arrendal, J, Vilà, C, and Björklund, M (2007). Reliability of noninvasive genetic census of otters compared to field censuses, J. of Conservation Genetics, 8(5), pp. 1097-1107.
  • Beard, DC, and Weyl, PK (1973). Influence of texture on porosity and permeability of unconsolidated sand, AAPG bulletin, 57(2), pp. 349-369.
  • Carss, DN (1995). Foraging behaviour and feeding ecology of the otter Lutra lutra: a selective review, J. of Hystrix, 7(1-2), pp. 179-194.
  • Carss, DN, Elston, DA, and Morley, HS (1998). The effects of otter (Lutra lutra) activity on spraint production and composition: implications for models which estimate prey‐size distribution, J. of Zoology, 244(2), pp. 295-302.
  • Cha, JH (2011). Measurements of thermal properties of soils and rocks and analyses of effective thermal conductivity using structural models, Ph. D. Dissertation, Kongju National University, Kongju, South Korea. [Korean Literature]
  • Chapman, CA, Wrangham, RW, Chapman, LJ, Kennard, DK, and Zanne, AE (1999). Fruit and flower phenology at two sites in Kibale National Park, Uganda, J. of Tropical Ecology, 15(2), pp. 189-211.
  • Cho. HS, Choi, KH, Lee, SD, and Park, YS (2009). Characterizing habitat preference of eurasian river otter (Lutra lutra) in streams using a self-organizing map, J. of Limnology, 10(3), pp. 203-213.
  • Choi, JW (2010). BASIC DSLR KNOWHOW BOOK, UCM Publisher. [Korean Literature]
  • Clauser, C, and Huenges, E (1995). Thermal conductivity of rocks and minerals, AGU reference shelf, 3, pp. 105-126.
  • Cultural Heritage Administration of Korea (2001). The Research of Inhabitation Condition and Protection Plan of Eurasian Otters a Natural Monument, GOVP1200617441, Cultural Heritage Administration of Korea. [Korean Literature]
  • Davis, HG, Aulerich, RJ, Bursian, SJ, Sikarskie, JG, and Stuht, JN (1992). Feed consumption and food transit time in northern river otters (Lutra canadensis), J. of Zoo and Wildlife Medicine, 23(2), pp. 241-244.
  • Erlinge, S (1967). Home range of the otter Lutra lutra L. in Southern Sweden, J. of Oikos, 18(2), pp. 186-209.
  • Erlinge, S (1968). Territoriality of the otter Lutra lutra L, J. of Oikos, 19(1), pp. 81-98.
  • Galo, AT, Rich, PM, and Ewel, JJ (1992). Effects of forest edges on the solar radiation regime in a series of reconstructed tropical ecosystems, American Society for Photogrammetry and Remote Sensing Technical Papers, pp. 98-108.
  • Green, J, Green, R, and Jefferies, DJ (1984). A radio-tracking survey of otters Lutra lutra on a Perthshire river system, J. of Lutra, 27(1), pp. 85-145.
  • Guter, A, Dolev, A, Saltz, D, and Kronfeld-Schor, N (2008). Using videotaping to validate the use of spraints as an index of eurasian otter (Lutra lutra) activity, J. of Ecological indicators, 8(5), pp. 462-465.
  • Han, CW, and Yoon, M H (2012). Construction works at the Busan new port on the activity of otters, J. of Environment and Ecology, 26(5), pp. 654-667. [Korean Literature]
  • Han, SY (1997). The ecological studies of eurasian otter (Lutra lutra) in south korea, Ph. D. Dissertation, Kyungnam National University, Changwon, South Korea. [Korean Literature]
  • Hanna, MM, Steyn-Ross, DA, and Steyn-Ross, M (1999). Estimating biomass for New Zealand pasture using optical remote sensing techniques, J. of Geocarto International, 14(3), pp. 89-94.
  • Harper, RJ, and Jenkins, D (1982). Molt in the european otter (Lutra lutra), J. of Zoology, 197, pp. 298-299.
  • Hutchings, MR, and White, PCL (2000). Mustelid scentmarking in managed ecosystems: implications for population management, J. of Mammal Review, 30(3‐4), pp. 157-169.
  • Hwang, HJ (2008). Earth Architecture, CIR Publisher. [Korean Literature]
  • International Union for Conservation of Nature and Natural Resources (IUCN) (1990). 1990 IUCN Red List of Threatened Animals, IUCN, Gland, Switzerland and Cambridge, UK.
  • Jeong, WJ (2003). Distribution and habitat use of eurasian otter (Lutra lutra) in odaesan national park, Master’s Thesis, Kyungnam ational University, Changwon, South Korea. [Korean Literature]
  • Jung, HM, Won, DY, and Jung, JE (2013). Quantitative analysis methods for adapting Image J programs on mouse calvarial defected model, J. of Digital Policy & Management, 11(9), pp. 365-370. [Korean Literature]
  • Kang, JH, Nam, TW, Kwon, KJ, Jung, SY, Son, JI, Lee, SH, Park, YM., and Han, SY. (2011). The research of inhabitation condition and protection plan of otter (Lutra lutra) in the North Han river system, J. of monthly Cultural Heritage, 44(2), pp. 46-57. [KoreanLiterature]
  • Korea Astronomy & Space science Information (KASI), http://www.kasi.re.kr/.
  • Korea Meteorological Administration (KMA), http://www.kma.go.kr/.
  • Kruuk, H (2006). Otters: Ecology, Behaviour and Conservation, Oxford University Press, Oxford, UK.
  • Kruuk, H, and Conroy, JWH (1987). Surveying otter Lutra lutra populations: A discussion of problems with spraints, J. of Biological conservation, 41(3), pp. 179-183.
  • Lee, BS (1979). A study of natural seasons in Korea, J. of Korean Geographical Society, 14(2), pp. 1-11. [Korean Literature]
  • Lee, SD (2012). Studies on Food Items of River Otter Residing in the Hongchon Stream, J. of Korean Wetlands Society, 14(4), pp. 591-596. [Korean Literature]
  • Lewin, RA (1999). Merde: Excursions in Scientific, Cultural, and Socio-Historical Coprology, Random House Publisher, New York, USA.
  • Magalhães, MF, Beja, P, Canas, C, and Collares‐Pereira, MJ (2002). Functional heterogeneity of dry‐season fish refugia across a mediterranean catchment: the role of habitat and predation, J. of Freshwater Biology, 47(10), pp. 1919-1934.
  • Mason, CF, and Macdonald SM (1987). The use of spraints for surveying otter Lutra lutra populations: An evaluation, J. of Biological conservation, 41(3), pp. 167-177.
  • Melquist, WE, and Hornocker, MG (1983). Ecology of river otters in west central Idaho, J. of Wildlife Monographs, 83, pp. 1-60.
  • Myeong, SJ (2009). A study on strategies to mitigate urban heat island effects as part of climate change adaptation in urban areas, J. of Korea Environment Institute of basic research, 2009(8), pp. 1-32. [Korean Literature]
  • Piggott, MP (2005). Effect of sample age and season of collection on the reliability of microsatellite genotyping of faecal DNA, J. of Wildlife Research, 31(5), pp. 485-493.
  • Prenda, J, and Granado-Lorencio, C (1996). The relative influence of riparian habitat structure and fish availability on otter Lutra lutra L. sprainting activity in a small mediterranean catchment, J. of Biological conservation, 76(1), pp. 9-15.
  • R Core Team (2014). R: A Language and Environment for Statistical Computing, R foundation for statistical computting, Vienna, Austria, http://www.r-project.org/.
  • Rasband, WS. Image J. National Institutes of Health (NIH), http://imagej.nih.gov/.
  • Reuther, C, Kolsch, O, and Janben, W (2000). Surveying and monitoring distribution and population trends of eurasian otter (Lutra lutra), IUCN Otter Spec. Group Bull, 17(2), pp. 80-82.
  • Romanowski, J, and Cygan, JP (1996). Notes on the technique of the otter field survey, J. of Acta Theriologica, 41, pp. 199-204.
  • Rural Development Administration (RDA), http://www. rda.go.kr/.
  • Sidorovich, VE (1991). Structure, reproductive status and dynamics of the otter population in Byelorussia, J. of Acta Theriologica, 36(1-2), pp. 153-161.
  • Sidorovich, VE (2000). Distribution and population density of the otter (Lutra lutra) and pollution of aquatic ecosystem in Belarus, Proceedings of the First Otter Toxicology Conference, Conroy, JWH., Yoxon, P, Gutleb, AC (eds.), Isle of Skye, Scotland, J. of the International Otter Survival Fund, 1, pp. 83-95.
  • Son, JI (2000). Distribution and habitat use of eurasian otter (Lutra lutra) in Dong River, Korea, Master’s Thesis, Kyungnam National University, Changwon, South Korea. [Korean Literature]
  • Tansley, D (2009). Essex Otter Survey 2008. Essex Wildlife Trust Publisher, Essex, UK.
  • Tarnawski, VR, Leong, WH, Gori, F, Buchan, GD, and Sundberg, J (2002). Inter‐particle contact heat transfer in soil systems at moderate temperatures, J. of energy research, 26(15), pp. 1345-1358.
  • Yoon, MH (2003). Changes in distribution of otter, Lutra lutra, with the development of the Busan new port, J. of Institute of Basic Science, Kyungsung University, 15, pp. 193-205. [Korean Literature]
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