DOI QR코드

DOI QR Code

Trend of temporal change in moth communities in forests of the agricultural landscape of southwestern South Korea

한국 서남부 농촌 경관 내 숲에 서식하는 나방 군집의 시간적 변화 양상

  • Choi, Sei-Woong (Department of Environmental Education, Mokpo National University) ;
  • Kim, Nang-Hee (Division of Industrial Insect, National Institute of Agricultural Sciences, RDA) ;
  • Shin, Bora (Organic Agriculture Division, National Institute of Agricultural Sciences, RDA) ;
  • Lee, Jae-Young (Department of Environmental Education, Mokpo National University) ;
  • Jang, Beom-Jun (Department of Environmental Education, Mokpo National University)
  • 최세웅 (목포대학교 환경교육과) ;
  • 김낭희 (국립농업과학원 곤충산업과) ;
  • 신보라 (국립농업과학원 유기농업과) ;
  • 이재영 (목포대학교 환경교육과) ;
  • 장범준 (목포대학교 환경교육과)
  • Received : 2019.09.04
  • Accepted : 2019.09.18
  • Published : 2019.09.30

Abstract

The aim of the present study was to investigate the temporal changes of moth communities in two forest types of the agroecosystem in the southwestern part of Korea, an isolated hillock forest and a continuous mountain forest. Temporal changes in the numbers of moth species and individuals at both forests showed no significant difference, although the numbers of individuals in the isolated hillock forest were decreased. The relationship between changes in moths and body size based on wingspan revealed that the larger moths decreased more in the isolated hillock forest, whereas no effect of body size on change of moths was observed in continuous mountain forest samples. Non-metric multidimensional scaling resulted in the grouping of moth communities by forest types and 10-year time intervals. In the future, long-term monitoring is needed to track the changes in moth communities in agroecosystems. Additionally, we need to investigate the effect of other ecological variables on changes in moth diversity.

이 연구에서는 한국 서남부 농촌 경관 내에서 농경지로 고립되어 있는 숲과 연속되어 있는 산림 속 숲에 서식하는 나방의 종 다양성 양상이 10년 동안 어떻게 변화했는가를 알아보았다. 농경지 주변 숲 경관에서 나방 다양성은 과거와 현재 종수는 다소 늘어났지만 개체수는 줄어들었고 산림 숲에서 출현한 나방은 과거에 비해 현재 종수와 개체수 모두 증가하였지만 두 지역 모두 통계적으로 유의하게 나타나지 않았다. 나방 개체수 증감에 날개편 길이를 이용한 나방 크기를 살펴본 결과 농경지 주변 숲에서는 관련이 있었지만 산림 숲 지역에서는 관련이 나타나지 않았다. 농경지 숲과 산림지 숲 간의 시간적 공간적 분석결과 서식지 유형과 시간에 따라 나방 군집에서 차이가 나타나는 것을 확인할 수 있었다. 추후 이러한 나방 군집 변화가 나방 크기 이외 다른 생태학적 요인과 영향을 받는지 그리고 장기적으로 어떻게 변화가 이루어지는지 살펴볼 필요가 있다.

Keywords

References

  1. Benton TG, DM Bryant, L Cole and HQP Crick. 2002. Linking agricultural practice to insect and bird populations: a historical study over three decades. J. Appl. Ecol. 39:273-287.
  2. Chao A, NJ Gotelli, TC Hsieh, EL Sander, KH Ma, RK Colwell and AM Ellison. 2014. Rarefaction and extrapolation with Hill numbers: a framework for sampling and estimation in species diversity studies. Ecol. Monogr. 84:45-67. https://doi.org/10.1890/13-0133.1
  3. Choi SW, M Park and H Kim. 2009. Differences in moth diversity in two types of forest patches in an agricultural landscape in southern Korea - Effects of habitat heterogeneity. J. Ecol. Field Biol. 32:183-189.
  4. Dirzo R, HS Young, M Galetti, G Ceballos, NJB Isaac and B Collen. 2014. Defaunation in the Anthropocene. Science 345:401-406. https://doi.org/10.1126/science.1251817
  5. Hallmann CA, M Sorg, E Jongejans, H Siepel, N Hofland, H Schwan, W Stenmans, A Muller, H Sumser, T Horren, D Goulson and H de Kroon. 2017. More than 75 percent decline over 27 years in total flying insect biomass in protected areas. PLOS ONE 12:e0185809. https://doi.org/10.1371/journal.pone.0185809
  6. Hamback PA, KS Summerville, I Steffan-Dewenter, J Krauss, G Englund and TO Crist. 2007. Habitat specialization, body size, and family identity explain lepidopteran density-area relationships in a cross continental comparison. Proc. Natl. Acad. Sci. U.S.A. 104:8368-8373. https://doi.org/10.1073/pnas.0611462104
  7. Hsieh TC, KH Ma and A Chao. 2015. iNEXT: An R package for interpolation and extrapolation of species diversity (Hill numbers). http://chao.stat.nthu.edu.tw/blog/software-download/.
  8. Kang BH, JH Lee and JK Park. 2009. The study on the characteristics of ground beetle (Coleoptera: Carabidae) community for conservation of biodiversity in agricultural landscape. Kor. J. Env. Eco. 23:545-552.
  9. Kim NH, SW Choi, JS Lee, J Lee and KJ Ahn. 2018. Spatio-temporal changes of beetles and moths by habitat types in agricultural landscapes. Korean J. Environ. Biol. 36:180-189. https://doi.org/10.11626/KJEB.2018.36.2.180
  10. Kim SS, EA Beljaev and SH Oh. 2001. Illustrated Catalogue of Geometridae in Korea (Lepidoptera: Geometrinae, Ennominae). Korea Research Institute of Bioscience and Biotechnology & Center for Insect Systematics, Daejeon.
  11. Kim SS, SW Choi, JC Sohn, T Kim and BW Lee. 2016. The Geometrid Moths of Korea (Lepidoptera: Geometridae). Junghaengsa, Seoul. p. 499.
  12. Kononenko VS, SB Ahn and L Ronkay. 1998. Illustrated Catalogue of Noctuidae in Korea (Lepidoptera). Insects of Korea 3. Korea Research Institute of Bioscience and Biotechnology & Center for Insect Systematics, Daejeon.
  13. McCune B and JB Grace. 2002. Analysis of ecological communities. MjM Software, Gleneden Beach.
  14. McCune B and MJ Mefford. 2018. PC-ORD. Multivariate analysis of ecological data. Version 7.08. MjM Software, Gleneden Beach.
  15. R Development Core Team. 2017. R: A language and environment for statistical computing. Ver. 3.4.3. R Foundation for Statistical Computing. http://www.R-project.org/.
  16. Shin YH. 2001. Coloured Illustrations of the Moths of Korea. Academybook, Seoul.
  17. SPSS. 2017. IBM SPSS Statistics. IBM Corp.
  18. Tilman D, KG Cassman, PA Matson, R Naylor and S Polasky. 2002. Agricultural sustainability and intensive production practices. Nature 418:671-677. https://doi.org/10.1038/nature01014
  19. Tscharntke T, R Bommarco, Y Clough, TO Crist, D Kleijn, TA Rand, JM Tylianakis, S van Nouhuys and S Vidal. 2007. Conservation biological control and enemy diversity on a landscape scale. Biol. Control 43:294-309. https://doi.org/10.1016/j.biocontrol.2007.08.006