Morphological and Physiological Characteristics of Dwarf Bamboo ( Sasa borealis ) Growing at Different Stand Types of Deciduous Forests after Clearcutting in Mt. Baekwoon , Jeollanam - do , Korea

전남 백운산 지역 낙엽활엽수에서 벌채후 서로 다른 임분 유형에서 자라는 조릿대 ( Sasa borealis ) 의 형태 및 생리적 특성

Cha, Yun-Jeong;Lee, Gyeong-Jun
차윤정;이경준

  • Published : 2002.09.30

Abstract

Keywords

References

  1. 김갑덕. 김태욱. 김준선. 1991. 전남 백운산 벌채지역의 산림생태계 천이에 관한 연구 (I) - 전남 백운산 북사면 천연림의 군집구조 및 신갈나무 개체군분포. 서울대학교 연습림연구보고 28 : 1-12
  2. 김갑덕. 김태욱. 김준선. 1992. 전남 백운산 벌채지역의 산림생태계 천이에 관한 연구 (III) - 전남 백운산 북사면 천연림의 개체군 분포 및 군집의 천이. 서울대학교 연습림연구보고 27 : 54-64
  3. 김갑덕. 박인협. 1989. 백운산지역 계곡부 조릿대의 현존량 및 순생산량에 관한 연구. 서울대학교 연습림연구보고 25 : 15-21
  4. 김군보. 1997. 지리산 반야봉의 구상나무림에서 타감작용에 의한 치수성장 저해. 서울대학교 석사학위논문. 43 PP
  5. 김지홍. 양희문. 1996. 조릿대 밀생 천연활엽 수림의 임분구조에 관한 연구. 강원대학교 임과대학 연습림연구보고 16 : 26-41
  6. 박인협. 1985. 백운산지역 천연림생태계의 임분구조 및 물질생산에 관한 연구. 서울대학교 박사학위 논문. 48 PP
  7. 이경준. 1993. 수목생리학. 서울대학교출판부. 82-94p
  8. 이창복. 1980. 대한식물도감. 향문사. 87-91p
  9. Fetcher, N and G. R. Shaver. 1983. Life history of tillers of Eriophorum vaginatum in relation to tundra disturbance. Journal of Ecology 71 : 131-147 https://doi.org/10.2307/2259967
  10. Katagiri, S., H. Ishii and N. Miyake. 1982. Studies on the amount of dry matter and nutrients in Sasa communities. Japanese Journal of Ecology 32: 527-534
  11. Konno, Y., D. Ito, M. Shimizu and R. Doi. 1990. Distribution of the genus Sasa, Japanese dwarf bamboo and cost of leaf. Bamboo Journal 8 : 50 - 55
  12. Kudo. H. 1984. Natural withering of Sasa kurilensis and regeneration of trees. Bulletin of Hokkaido University Forest 42: 889-908
  13. Larcher, W. 1995. Physiological Plant Ecology, 3rd ed. Springer. pp. 85-99
  14. Loah, K. 1967. Shade tolerance in the seedlings. I Leaf photosynthesis and respiration in planted under artificial shade. New Phytology 66 : 607-621 https://doi.org/10.1111/j.1469-8137.1967.tb05432.x
  15. Lovell, P. H. and P. J. Lovell. 1985. The importance of plant form as a determining factor in competition and habitat exploitation. In Studies on Plant Demography. J. White (ed.). Academic Press. 209-219p
  16. Makita, A. 1992. Survivorship of a monocarpic bamboo grass, Sasa kurilensis, during the early regeneration process after mass flowering. Ecological Research 7 : 245-254 https://doi.org/10.1007/BF02347093
  17. Oshima, Y. 1961. Ecological studies of Sasa communities. II. Seasonal variations of productive structure and annual net production in Sasa communities. Botanical Magazine Tokyo 74 : 280 -270 https://doi.org/10.15281/jplantres1887.74.280
  18. Poorter, H. and R. Villar. 1997. The fate of acquired carbon in plants : Chemical composition and construction cost. In Plant Resource Allocation. Bazza and Grace (eds,). Academic Press. 303 pp
  19. Rao, K. S. and P. S. Ramakrishnan. 1987. Comparative analysis of the population dynamics of two bamboo species, Dendrocalamus hamiltonii and Neohouzeua dulloa, in a successional environment. Forest Ecological Management 21 : 177-189 https://doi.org/10.1016/0378-1127(87)90041-7
  20. Sasa, K., K. Yosida, F. Satoh, K. Fukazawa, and K. Fujiwara. 1991. Growth cycles of the rootstock and underground buds of Chidhimazasa (Sasa hurilensis). Bulletin of Hokkaido University Forest 2 : 355-373
  21. Taylor, A. and Q. Zisheng. 1987. Culm dynamics and dry matter production of bamboos in the Wolong and Tangjiahe Giant Panda Reserves, Sicuan, China. Journal of Applied Ecology 24 : 410-433
  22. Tripathi, S. K. and K. P. Singh. 1994. Productivity and nutrient cycling in recently harvested and mature bamboo savanna in the dry tropics. Journal of Applied Ecology 31 : 109-124 https://doi.org/10.2307/2404604
  23. Wada, N. 1992. Dwarf bamboo affect the regeneration of zoochorous tree by providing habitats to acorn-feeding rodent. Oecologia 94 : 403-407 https://doi.org/10.1007/BF00317116
  24. Yajima, T., N. Watanabe and M. Shibuya. 1997. Changes in biomass of above- and under -ground parts in Sasa kurilensis and Sasa senanensis stands with culm height. Journal of Japanese Forest Science 79(4) : 234-238