참고문헌
- 구관효, 이강영, 윤기식, 이총규. 1997. 황벽나무의 종자발아와 묘목생장 및 적정생육밀도에 관한 연구. 한국임학회지 86(4): 443-449.
- 권기원, 조민석, 김길남, 이수원, 장경환. 2009. 시비 처리에 따른 상수리나무(Quercus acutissima) 용기묘와 노지묘의 광합성 및 생장 특성. 한국임학회지 98(3): 331-338.
- 김종진, 이경재, 송기선, 차영근, 정영숙, 이종화, 윤택승. 2010. 낙엽송 용기묘 생산을 위한 적정 용기 탐색. 한국임학회지 99(4): 638-644.
- 농업과학기술원. 2000. 토양 및 식물체 분석. 농청진흥청 농업과학기술원. pp. 202.
- 산림청. 2011a. 종묘사업실시요령. 산림청. pp. 47.
- 산림청. 2011b. 2011년도 주요업무 세부추진계획. 산림청. pp. 456.
- 이철호, 신창호, 김규식, 최명석. 2006. 광강도에 따른 음나무 유묘의 생장 및 광합성 특성. 한국약용작물학회지 14(4): 244-249.
- 조민석, 김길남, 권기원, 이수원. 2010. 식재시기 및 조림지 하층식생 조건이 소나무 용기묘의 생장에 미치는 영향. 한국임학회지 99(3): 359-367.
- 조민석, 이수원, 배종향, 박관수. 2011. 시비처리가 Eucalyptus pellita와 Acacia mangium 용기묘의 생리 및 생장 특성에 미치는 영향. 한국생물환경조절학회지 20(2): 123-133.
- Apholo, P. and Rikala, R. 2003. Field performance of silver-birch planting-stock grown at different spacing and in containers of different volume. New Forests 25: 93-108. https://doi.org/10.1023/A:1022618810937
- Bayala, J., Dianda, M., Wilson, J., Ouedraogo, S.J. and Sanon, K. 2009. Predicting field performance of five irrigated tree species using seedling quality assessment in Burkina Faso, West Africa. New Forests 38: 309-322. https://doi.org/10.1007/s11056-009-9149-4
- Day, D.C. and Parker, W.C. 1997. Morphological indicators of stock quality and field performance of red oak (Quercus rubra L.) seedlings underplanted in a central Ontario shelterwood. New Forests 14: 145-156. https://doi.org/10.1023/A:1006577201244
- Deans, J.D., Mason, W.L., Cannell, M.G.R., Sharpe, A.L. and Sheppard, L.J. 1989. Growing regimes for bare-root stock of sitka spruce, douglas fir and scots pine. 1. Morphology at the end of the nursery phase. Forestry 62: 53-60.
- Dominguez-Lerena, S., Sierra, N.H., Manzano, I.C., Bueno, L.O., Rubira, J.L.P. and Mexal, J.G. 2006. Container characteristics influence Pinus pinea seedling development in the nursery and field. Forest Ecology and Management 221: 63-71. https://doi.org/10.1016/j.foreco.2005.08.031
- Grossniclke, S.C. 2005. Importance of root growth in overcoming planting stress. New Forests 30: 273-294. https://doi.org/10.1007/s11056-004-8303-2
- Groves, K.M., Warren, S.L. and Bilderback, T.E. 1998. Irrigation volume, application, and controlled-release fertilizer: I. Effect on plant growth and mineral nutrient content in containerized plant production. Journal of Environmental Horticulture 16: 176-181.
- Helenius, P., Luoranen, J., Rikala, R. and Leinonen, K. 2002. Effect of drought on growth and mortality of actively growing Norway spruce container seedlings planted in summer. Scandinavian Journal of Forest Research 17: 218-224. https://doi.org/10.1080/028275802753742882
- Hsu, Y.M., Tseng, M.J. and Lin, C.H. 1996. Container volume affects growth and development of wax apple. Hortscience 31(7): 1139-1142.
- Hughes, A.P. and Freeman, P.R. 1967. Growth analysis using frequent small harvests. Journal of Applied Ecology 4: 553-560. https://doi.org/10.2307/2401356
- Jinks, R. and Mason, B. 1998. Effects of seedling density on the growth of corsican pine, scots pine and douglas fir in containers. Annales des Sciences Forestieres 55: 407-423. https://doi.org/10.1051/forest:19980402
- Kozlowski, T.T., Kramer, P.J. and Pallardy, S.G. 1991. The Physiology of Woody Plants. A.P. New York. pp. 811.
- Landis, T.D., Tinus, R.W., McDonald, S.E. and Barnett, J.P. 1990. Containers and growing media. The container tree nursery manual: Agriculture handbook 674. Vol. 2. USDA. Forest Service. Washington. pp. 88.
- Martini, C.A., Ingram, D.L. and Ne11, T.A. 1991. Growth and photosynthesis of Magnolia grandiflora 'St. Mary' in response to constant and increased container volume. Journal of the American Society for horticultural Science 116(3): 439-445.
- McConnughay, K.D.M. and Bazzar, F.A. 1991. Is physical space a soil resource?. Ecology 72(1): 94-103. https://doi.org/10.2307/1938905
- Richards, N.A., Leaf, A.L. and Bickelhaupt, D.H. 1973. Growth and nutrient uptake of coniferous seedlings: comparison among 10 species at various seedbed densities. Plant and Soil 38: 125-143. https://doi.org/10.1007/BF00011222
- Romero, A.E., Ryder, J., Fisher, J.T. and Mexal, J.G. 1986. Root system modification of container stock for arid land plantings. Forest Ecology and Management 16: 281-290. https://doi.org/10.1016/0378-1127(86)90028-9
- SAS Institute Inc.. 2000. SAS/STAT TM guide for personal computer. Version 8 edition. SAS Institute Inc., N.C. pp. 1026.
- Sestak, Z., Catsk, J. and Jarvis, P.G. 1971. Plant photosynthetic production manual of methods. The hague. Hertogenbosch. pp. 818.
- Thompson, B.E. 1985. Seedling morphological evaluation. What you can tell by looking. In: Duryea, M.L. (Ed.), Evaluating seedling quality: Principles, procedures, and predictive abilities of major tests. Forest Research Laboratory. Oregon State University. Corvallis. OR. pp. 59-72.
- Timmis, R. and Tanaka, Y. 1976. Effects of container density and plant water stress on growth and cold hardiness of douglas-fir seedlings. Forest Science 22: 167-172.
- Tsakaldimi1, M., Zagas, T., Tsitsoni, T. and Ganatsas, P. 2005. Root morphology, stem growth and field performance of seedlings of two Mediterranean evergreen oak species raised in different container types. Plant and Soil 278: 85-93. https://doi.org/10.1007/s11104-005-2580-1
- Will, R.E. and Teskey, R.O. 1997. Effect of elevated carbon dioxide concentration and root restriction on net photosynthesis, water relations and foliar carbohydrate status of loblolly pine seedlings. Tree Physiology 17: 655-661. https://doi.org/10.1093/treephys/17.10.655
- Wilson, E.D., Vitols, K.C. and Park, A. 2007. Root characteristics and growth potential of container and bare-root seedlings of red oak(Quercus rubra L.) in Ontario, Canada. New Forests 34: 163-176. https://doi.org/10.1007/s11056-007-9046-7