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Comparison of Movement Distance and Home Range Size of Gold-spotted Pond Frog (Pelophylax chosenicus) between Rice Paddy and Ecological park - Focus on the Planning Alternative Habitat -

논과 생태공원에서 금개구리 이동 거리 및 서식영역 크기 비교 - 대체서식지 조성 중심으로 -

  • Park, Su-Gon (Invasive Alien Species Research Team, National Institute of Ecology) ;
  • Ra, Nam-Yong (RANA Ecology Institute) ;
  • Jang, Young-Soo (RANA Ecology Institute) ;
  • Woo, Seung Hyun (Environmental Impact Assessment Team, National Institute of Ecology) ;
  • Koo, Kyo Soung (Research Center of Ecomimetics, Chonnam National University) ;
  • Chang, Min-Ho (Environmental Impact Assessment Team, National Institute of Ecology)
  • 박수곤 (국립생태원 외래생물연구팀) ;
  • 라남용 (RANA생태연구소) ;
  • 장영수 (RANA생태연구소) ;
  • 우승현 (국립생태원 환경영향평가팀) ;
  • 구교성 (전남대학교 생태모방연구센터) ;
  • 장민호 (국립생태원 환경영향평가팀)
  • Received : 2019.11.06
  • Accepted : 2019.11.18
  • Published : 2019.12.31

Abstract

The movement distance and home range size of Pelophylax chosenicus were identified in the rice paddy and ecological park as alternative habitats from July to November 2017. A total of 39 frogs were tracked by radio tracking method. As a result, the average move distance in the population of rice paddy was 11.7 ± 1.9 m (n = 64) and the population of ecological park was 24.7 ± 4.3 m (n = 39). The move distance between the two populations was significantly different. The mean MCP of the population of rice paddy was 181.2 ± 110.8 m2 (n = 11) and the population of ecological park was 416.1 ± 276.2 m2 (n = 10), but there was no significant difference. The population area of rice paddy was 4,160 m2 (Kernel density 95%) and the core area was 1,080 m2 (Kernel density 50%). The population area (Kernel density 95%) of ecological park was 5,391 m2 and the core area (Kernel density 50%) was 736 m2. This study shows that it is appropriate to construct the area of alternative habitat for P. chosenicus at least 1.33 ha, and it is more advantageous for the ecological park to be constructed than the paddy field with high development pressure and human interference. If the rice paddies were to be abandoned for several years, or to be used traditional farming methods, such as refraining from using agricultural machinery and chemicals, they could be used as alternative habitat for P. chosenicus.

금개구리의 대체서식지로 선택되는 환경인 논과 생태공원에서 2017년 7월부터 11월까지 무선 추적법을 사용하여 금개구리의 이동거리 및 행동권을 파악하였다. 총 39개체의 금개구리를 대상으로 행동권을 추적하였다. 논 개체군의 평균이동거리는 11.7 ± 1.9 m (n = 64)이었고, 생태공원 개체군은 24.7 ± 4.3 m (n = 39)이었으며, 두 개체군 간 이동거리는 차이가 있었다. 논 개체군의 평균 MCP는 181.2 ± 110.8 m2 (n = 11)이었고, 생태공원 개체군은 416.1 ± 276.2 m2 (n = 10)이었으며, 지역 간의 MCP는 차이가 없었다. 논 개체군의 서식영역 (Kernel 95%)은 4,160 m2, 핵심 서식영역 (Kernel 50%)은 1,080 m2이었고, 생태공원 금개구리 개체군의 서식영역은 5,391 m2, 핵심 서식영역은 736 m2이었다. 금개구리 대체서식지의 면적은 최소 1.33 ha로 조성하는 것이 적합하고, 개발압과 인간의 간섭이 많은 논 보다는 생태공원이 유리한 것으로 판단된다. 그러나 묵논과 같은 형태이거나 농기계와 농약의 사용 자제하는 전통 농법을 사용한 논이라면 금개구리 대체서식지로 활용할 수 있을 것이다.

Keywords

References

  1. Bartelt, P.E. and Peterson, C.R. 2000. A description and evaluation of a plastic belt for attaching radio transmitters to western toads (Bufo boreas). Northwestern Naturalist 81: 122-128. https://doi.org/10.2307/3536823
  2. Bishir, S.C., Hossack, B.R., Fishback, L. and Davenport, J.M. 2018. Post-breeding movement and habitat use by wood frogs along an Arctic-Subarctic ecotone. Arctic, Antarctic, and Alpine Research 50: e1487657. https://doi.org/10.1080/15230430.2018.1487657
  3. Blanckenhorn, W.U. 2005. Behavioral causes and consequences of sexual size dimorphism. Ethology 111: 977-1016. https://doi.org/10.1111/j.1439-0310.2005.01147.x
  4. Borzee, A., Choi, Y., Kim, Y.E., Jablonski, P. and Jang, Y. 2019. Interspecific variation in seasonal migration and brumation behaviour in two closely related species of treefrogs. Frontiers in Ecology and Evolution 7: 55. https://doi.org/10.3389/fevo.2019.00055
  5. Blaustein, A.R., Wake, D.B. and Sousa, W.P. 1994. Amphibian declines: judging stability, persistence, and susceptibility of populations to local and global extinctions. Conservation biology 8: 60-71. https://doi.org/10.1046/j.1523-1739.1994.08010060.x
  6. Bull, E.L. 2000. Comparison of two radio transmitter attachments on Columbia spotted frogs (Rana luteiventris). Herpetological Review 31: 26.
  7. Burt, W.H. 1943. Territoriality and home range concepts as applied to mammals. Journal of Mammalogy 24: 346-352. https://doi.org/10.2307/1374834
  8. Cha, S.M. 2008. Movement Patterns and Calling Behaviour during Activity Period of the Gold-spotted Pond Frog (Rana chosenica) (Doctoral dissertation, Master dissertation, Korea National University of Biology Education. (in Korean).
  9. Cheong, S.W., Park, D.S., Sung, H.C., Lee, J.H. and Park, S.R. 2007. Skeletochronological age determination and comparative demographic analysis of two populations of the gold-spotted pond frog (Rana chosenica). Journal of Ecology and Environment 30: 57-62. https://doi.org/10.5141/JEFB.2007.30.1.057
  10. Cheong, S.W., Sung, H.C., Park, D.S. and Park, S. R. 2009. Population Viability Analysis of a Gold-spotted Pond Frog (Rana chosenica) Population: Implications for Effective Conservation and Re-introduction. Korean Journal of Environmental Biology 27: 73-81. (in Korean).
  11. Davidson, C., Bradley Shaffer, H. and Jennings, M.R. 2001. Declines of the California red‐legged frog: Climate, UV‐B, habitat, and pesticides hypotheses. Ecological Applications 11: 464-479. https://doi.org/10.1890/1051-0761(2001)011[0464:DOTCRL]2.0.CO;2
  12. Fisher, R.N. and Shaffer, H.B. 1996. The decline of amphibians in California's Great Central Valley. Conservation Biology 10: 1387-1397. https://doi.org/10.1046/j.1523-1739.1996.10051387.x
  13. HACC (Herpetological Animal Care and Use Committee of the American Society of Ichthyologists and Herpetologists). 2004. Guidelines for use of live amphibians and reptiles in field and laboratory research. http://www.asih.org/files/hacc-final.pdf. Accessed 6 November 2019.
  14. Hof, C., Araújo, M.B., Jetz, W. and Rahbek, C. 2011. Additive threats from pathogens, climate and land-use change for global amphibian diversity. Nature 480: 516. https://doi.org/10.1038/nature10650
  15. Houlahan, J.E., Findlay, C.S., Schmidt, B.R., Meyer, A.H. and Kuzmin, S.L. 2000. Quantitative evidence for global amphibian population declines. Nature 404: 752. https://doi.org/10.1038/35008052
  16. IUCN (International Union for Conservation of Nature) 2017. The IUCN Red List of Threatened Species. http://www.iucnredlist.org. Accessed 6 November 2019.
  17. Iwai, N. 2013. Home range and movement patterns of the otton frog: integration of year-round radiotelemetry and mark-recapture methods. Herpetological Conservation and Biology 8: 366-375.
  18. Katsikaros, K. and Shine, R. 1997. Sexual dimorphism in the tusked frog, Adelotus brevis (Anura: Myobatrachidae): the roles of natural and sexual selection. Biological Journal of the Linnean Society 60: 39-51. https://doi.org/10.1111/j.1095-8312.1997.tb01482.x
  19. KSH (The Korean Society of Herpetologist) 2019. The List of Amphibian of Korea. http://www.krsh.co.kr. Accessed 6 November 2019.
  20. Lee, J.H. and Park, D.S. 2016. The Encyclopedia of Korean Amphibians. Nature and Ecology Co., Seoul, Korea. (in Korean)
  21. Lee, J.H. Lee, C.W Yang H.S., Kim, T.S., Lee, J.H., Park, S.J. and Yang, B.G. 2013. Post-breeding Dispersal and Movement Patterns of Male Asian Toads (Bufo gargarizans). Korean Journal of Herpetology 5: 1-8.
  22. Marsh, D.M. and Trenham, P.C. 2001. Metapopulation dynamics and amphibian conservation. Conservation Biology 15: 40-49. https://doi.org/10.1111/j.1523-1739.2001.00129.x
  23. ME (Ministry of Environment). 2013. Guidelines for the Environmental Impact Assessment on the Creation and Management of Alternative Habitats. Sejong, Korea. (in Korean)
  24. ME (Ministry of Environment). 2014. 2014 Environmental policy. Sejong, Korea. (in Korean)
  25. Park, S.G., Ra, N.Y., Yoon J.D. and Chang, M.H. 2018. Maximum travel distance of Pelophylax chosenicus. Korean Journal of Herpetology 9: 12-16. (in Korean).
  26. Park, S.R., Lee, B.K. and Yang, S.Y. 1998. The call patterns and the change of calls by water temperature in Rana plancyi (Amphibia, Anura). The Korean Journal of Ecology 21: 269-276. (in Korean).
  27. Ra, N.Y., Park, D., S., Kim, N.S. and Sung, H.C. 2010. Habitat associations of the endangered gold-spotted pond frog (Rana chosenica). Zoological Science 27: 396-402. https://doi.org/10.2108/zsj.27.396
  28. Ra, N.Y., Lee, J.H. and Park, D.S. 2007. Growth of golden frog larvae, Rana plzancyi chosenica by different food types. Korean Journal of Environmental Biology 25: 8-15.
  29. Ra, N.Y., Sung, H.C., Cheong, S., Lee, J.H., Eom, J. and Park, D. 2008. Habitat use and home range of the endangered gold-spotted pond frog (Rana chosenica). Zoological Science 25: 894-904. (in Korean). https://doi.org/10.2108/zsj.25.894
  30. Regosin, J.V., Windmiller, B.S. and Reed, J.M. 2003. Terrestrial habitat use and winter densities of the wood frog (Rana sylvatica). Journal of Herpetology 37: 390-395. https://doi.org/10.1670/0022-1511(2003)037[0390:THUAWD]2.0.CO;2
  31. Richards, S.J., Sinsch, U. and Alfordra, R.A. 1994. Radio tracking. In, Heyer, W.R., Donnelly, M.A., Mc-Diarmid, R.W., Hayek, L.C. and Foster, M.S. (eds.), Measuring and Monitoring Biological Diversity, Standard Methods for Amphibians. Washington, DC, USA. pp. 574-584.
  32. Rittenhouse, T.A. and Semlitsch, R.D. 2007. Distribution of amphibians in terrestrial habitat surrounding wetlands. Wetlands 27: 153-161. https://doi.org/10.1672/0277-5212(2007)27[153:DOAITH]2.0.CO;2
  33. Shim, Y.J., Jung, G.J., Eo, Y.J., Ryu, Y.J., Park, H.K., Kim, D.H. and Park, Y.-S. 2018. A Study on the status and improvement plan of alternative habitats - Based on the projects subject to environmental impact assessment. Journal of the Korea Society of Environmental Restoration Technology 21: 77-85. (in Korean). https://doi.org/10.13087/KOSERT.2018.21.2.77
  34. Sung, H.C., Park, O.H., Kim, S.K., Park, D.S. and Park, S. R. 2007. Abundance and breeding migration of the Asian Toad (Bufo gargarizans). J Ecol Field Biol 30: 287-292.
  35. Van Gelder, J.J., Aarts, H.M.J. and Staal, H.J. 1986. Routes and speed of migrating toads (Bufo bufo L.): a telemetric study. Herpetological Journal 1: 111-114.
  36. Wake, D.B. 1991. Declining amphibian populations. Science 253: 860-861. https://doi.org/10.1126/science.253.5022.860
  37. Werner, P., Elle, O., Schulte, L.M. and Lotters, S. 2010. Home range behaviour in male and female poison frogs in Amazonian Peru (Dendrobatidae: Ranitomeya reticulata). Journal of Natural History 45: 15-27. https://doi.org/10.1080/00222933.2010.502257
  38. Wells, K.D. 2007. The Ecology and Behavior of Amphibians. University of Chicago Press, Chicago, Illinois, USA.
  39. Yang, S.Y., Yu, J.H. and Park, B.S. 1988. Natural hybricization and reproductive isolating mechanisms between two Species of Rana nigmmaculata and Rana plancyi (Anura). The Korean Journal of Zoology 31: 1-10. (in Korean)