Inhibitory Factors of Robinia pseudoacacia Distribution in a Pinus thunbergii Forest at the Coast

해안 곰솔림 내 아까시나무의 분포확대 억제요인

  • 정성철 (국립산림과학원 산림방재연구과) ;
  • 구교상 (국립산림과학원 산림방재연구과) ;
  • 김경하 (국립산림과학원 산림방재연구과)
  • Received : 2011.03.07
  • Accepted : 2011.10.06
  • Published : 2011.10.31

Abstract

The objectives of this study were to analyze environment in the forest and growth characteristics for investigating the characteristics of Robinia pseudoacacia distribution in a Pinus thunbergii forest at the coast. As a result of analyzing inhibitory factors of Robinia pseudoacacia distribution in a Pinus thunbergii forest at the coast, it is considered that the salt level included in a sea wind is supposed to be the primary factor of the slow growth for Robinia pseudoacacia since brown leaves, wilting and early leaf fall have appeared in the 0m spot from the artificial dune which has the high salt level. However, the soil properties and light environment hardly have a effect on the growth of Robinia pseudoacacia because there is no difference among planting places. Also, the growth ring of the horizontal root in 2year individuals 0.1~0.2m away from the dune have been formed for 1 year only as a consequence of analyzing growth rings of Robinia pseudoacacia growing on the coast. It can be infered that the nourishment of the horizontal root from individuals growing on the coast have been provided for the first 1 year only. It is estimated that, in case of the nearby areas on the coast, it is not enough to provided nourishment to the horizontal root due to obstructing the growth of new individuals by a sea wind, so the growth of the horizontal root would be hampered. Therefore, it is considered that impedient Robinia pseudoacacia distribution in a Pinus thunbergii forest at the coast is caused by making no growth of new horizontal roots and newborn individuals.

본 연구는 해안 곰솔림에 생육하고 있는 아까시나무의 분포특성을 결정하는 요인을 구명하기 위하여 아까시나무의 생장특성과 임내 환경을 조사 분석하였다. 해안 곰솔림 내에 분포하고 있는 아까시나무의 분포확대 억제요인을 분석한 결과, 염분농도가 높은 0m 지점에서 잎의 갈변, 위조, 조기낙엽 현상이 나타나 염분이 아까시나무의 생장억제에 큰 영향을 미치는 요인으로 추정되었다. 그러나 토양특성과 광환경은 식재지점간의 차이는 나타나지 않아 아까시나무의 생장에 있어 큰 영향을 주지 않는 것으로 추정되었다. 또한 해안측에 생장하고 있는 아까시나무의 수평근 연륜분석 결과, 2년생 개체의 근주에서 0.1~0.2m 떨어진 수평근 연륜에서도 1년 밖에 형성되지 않아 아까시나무의 수평근으로 영양공급이 충분하게 이루어지지 않아 수평근의 신장을 억제하는 것으로 추정되었다. 따라서 새로운 수평근의 신장과 개체의 신생이 이루어지지 않아 해안측으로 아까시나무의 분포확대가 억제되는 것으로 사료되었다.

Keywords

References

  1. Boring, L.R., C.D. Monk and W.T. Swank(1981) Early regeneration of a clear cut southern Appalachian forest. Eco. 62: 1244-1253. https://doi.org/10.2307/1937289
  2. Boring, L.R. and W.T. Swank(1984) The role of black locust (Robinia pseudoacacia) in forest succession. J. Ecol. 72: 749-766. https://doi.org/10.2307/2259529
  3. Bormann, B.T., F.H. Bormann, W.B. Bowden, R.S. Pierce, S.P. Hamburg, D. Wang, M.C. Snyder, C.Y. Li and R.C. Ingersoll(1993) Rapid N2 fixation in pines, alder, and locust: evidence from the sandbox ecosystem study. Ecology 74: 583-598. https://doi.org/10.2307/1939318
  4. Brewbaker, J.L.(2004) Nitrogen-fixing tree improvement and culture. In Encyclopedia of forest sciences. Burley J, Evans J, Youngquist JA (eds), Elsevier, Oxford, pp. 1491-1501.
  5. Chapman, A.G.(1935) The effects of black locust on associated species with special reference to forest trees. Ecological Monographs 56: 37-60.
  6. Choi, M.G.(1986) Characteristics of salt tolerance in tree species (I) - Relationship between tree species distribution and soil salt concentration in East coastal forest, Jour. Korean For. Soc. 73: 1-8. (in Korean with English abstract)
  7. Chun, K.W., S.W. Kim, K.N. Kim, Y. Nakashima and T. Ezaki(2005) Coastal forest construction and non-structural measures for preventing tsunami damage-In case of japan-. Jour.Korean For. Soc. 94(3): 197-204. (in Korean with English abstract)
  8. Clark, J.S.(1986) Coastal forest tree population in a changing environment, southeastern Long Island, New York. Ecological Monographs 56: 259-277. https://doi.org/10.2307/2937077
  9. Fujihara, M., T. Oyabu, Y. Sawada, Y. Iwasaki and S. Yamamoto(2007) The suitable habitat for establishing of seedlings derived from old and large-sized Japanese black pine trees on the coastal sand pine forest. J. of the Japanese Soc. of Coastal For. 7(1): 25-30.
  10. Gyokusen, K., Y. Iijima and H. Yahata(1991) Spacial Distribution and Morphological Features of Root Sprouts in Niseakasia (Robinia pseudoacacia L.) Growing under a Coastal Black Pine Forest. Bulletin of the Kyushu University Forest 64: 13-28. (in Japanese with English abstract)
  11. Iwai, H.(1986) Studies on sucker and growth inhibition of black locust. Chiba Prefect. For. Exp. Stn. 20: 31-32. (in Japanese with English abstract)
  12. Iwai, H.(1987) Examination about maintenance of environment preservation-Studies on sucker and growth inhibition of black locust-. Chiba Prefect. For. Exp. Stn. 21: 31. (in Japanese with English abstract)
  13. Jung, S.C., N. Matsushita, B.Y. Wu, N. Kondo, A. Shiraishi and T. Hogetsu(2009) Reproduction of a Robinia pseudoacacia population in a coastal Pinus thunbergii windbreak along the Kujukurihama Coast, Japan. J. For. Res. 14: 101-110. https://doi.org/10.1007/s10310-008-0109-1
  14. Jung, Y.K. and W. Kim(2000) Distributional characteristics of coastal mantle communities in korean peninsula. Korean J. Ecol. 23(3): 193-199. (in Korean with English abstract)
  15. Kaihara, T., N. Kobayashi, Y. Nakashima, M. Haikawa and T. Ezaki(2008) Adaptability of Euonymus Japanicus Thunb. as seabreeze protection Forest(II). J. of the Japanese Soc. of Coastal For. 7(2): 371-42.
  16. Kim, D.G.(2010) Native tree species of tolerance to saline soil and salt spray drift at the coastal forests in the west-sea, korea. Kor. J. Env. Eco. 24(2): 209-221. (in Korean with English abstract)
  17. Kim, H.S.(2008) Management methods and vegetation in a windbreak forest around the coast of Geanmaedo, Jindo-gun, Jeonnam. Korean J. Plant Res. 21(1): 5-11. (in Korean with English abstract)
  18. Kim, Y.J., K. Korozawa, H. Yahata and K.K. Oh(2009) Relationship between change of the light environment in the shore Black Pine and biomass of branches and leaves. Pro. Kor. Soc. Env. Eco. Con. 19(2): 49-52. (in Korean with English abstract)
  19. Kurata, M.(1979) Revegetation Technology. Morikita Publishing Co., Ltd. Tokyo, 298pp.
  20. Kwon, J.O., K.J. Lee and S.H. Jang(2004) The planting models of maritime forest by the plant community structure analysis in the seaside, Incheon. Journal of the Korean Institute of Landscape Architecture 31(6): 53-63. (in Korean with English abstract)
  21. Lee, H.J. and H.S. Yang(1993) Adaptation of Phragmites communis Trin. population to soil salt contents of habitats. Korean J. Ecol. 16(1): 63-74. (in Korean with English abstract)
  22. Murai, H., M. Ishikawa, J. Endo and R. Tadaki(1992) The coastal forest I japan. Soft science, INC., 513pp.
  23. Nakashima, Y.(2000) Present condition and problems of coastal forests. Sand Dune Research 47(2): 128-135.
  24. Oda, T.(1992) Physiology & meteorological disasters and control technology(Coastal forest of japan). Soft-science, Tokyo, pp. 441-454.
  25. Ogden, J.G.(1961) Forest history of Martha's Vineyard. Am Midland Nat 66: 417-430. https://doi.org/10.2307/2423041
  26. Park, C.M., S.W. Kim and S.H. Park(2009) Study on growth characteristics of Pinus thunbergii windbreak forests around Goosipo beach, Cochang-Gun. Kor. J. Env. Eco. 23(4): 365-375. (in Korean with English abstract)
  27. Park, Y.G.(1996) The prospects for the utilization of Robinia pseudoacacia in Korea Korean Journal of Apiculture 11: 27-56. (in Korean with English abstract)
  28. Redei, K., Z. Osvath-Bujtas and I. Balla(2002) Clonal approaches to growing black locust (Robinia pseudoacacia) in Hungary: a review. Forestry 75: 547-552. https://doi.org/10.1093/forestry/75.5.547
  29. Shimizu, T. and F. Konta(2003) Naturalized plants of japan. Heibonsha, Tokyo, pp. 11-39.
  30. Tanaka, K.(1992) History of coastal Forest(Coastal forest of japan). Soft science, Tokyo, pp. 2-15.
  31. Ulrich, A. and I. Zaspel(2000) Phylogenetic diversity of rhizobial strains nodulating Robinia pseudoacacia L. Microbiology 146: 2997-3005.
  32. Wada, Y.(2007) Beekeeping and Black locust. Japan Forest Technology 781: 22-25.
  33. Zang, X.Q., J. Liu, C.V.J. Welham, C.C. Liu, D.N. Li, L. Chen and R.Q. Wang(2006) The effects of clonal integration on morphological plasticity and placement of daughter ramets in black locust( Robinia pseudoacacia). Flora 201: 547-554. https://doi.org/10.1016/j.flora.2005.12.002