Regeneration traits of four dominant species were studied during a decade in a cool-temperate conifer-hardwood mixed forest, northern Japan. Dominant species were three canopy species ( Tilia japonica , Acer mono and Abies sachalinensis ) and a subcanopy species Prunus ssiori . Regeneration traits differed among the four dominant species. The regeneration of a conifer Abies sachalinensis largely depends on major disturbances because its size structure was a bell-shaped pattern. The growth rate of the sub-canopy species Prunus ssiori increased faster with tree size than the other three species, and therefore, this species can reach reproductive stage faster. Although the number of recruits of Tilia japonica was less than the other three dominant species, about one-fourth of Tilia japonica regenerated by the sprouts. Thus, vegetative reproduction is important for the regeneration of Tilia japonica . On the contrary, many recruits were observed in Acer mono , and its recruits and saplings concentrated in canopy gaps, suggesting that the regeneration of Acer mono restricted to canopy gaps. Thus, clear differences in the regeneration traits were recognized in the four dominant species. This study suggests that the species-specific regeneration traits contribute to the species coexistence of the four dominant species through different regeneration niches.
Tatewaki, M. (1958) Forest Ecology of the Islands of the North Pacific Ocean. Journal of Faculty of Agriculture, Hokkaido University, 50, 371-486.
Taylor, A.H. and Qin, Z. (1988) Regeneration Patterns in Old-Growth Abies-Betula Forests in the Wolong Natural Reserve, Sichuan, China. Journal of Ecology, 76, 1204-1218. https://doi.org/10.2307/2260643
Ishikawa, Y., Krestov, P.V. and Namikawa, K. (1999) Disturbance History and Tree Establishment in Old-Growth Pinus koraiensis-Hardwood Forests in the Russian Far East. Journal of Vegetation Science, 10, 439-448. https://doi.org/10.2307/3237178
Ishikawa, Y. and Ito, K. (1989) The Regeneration Process in a Mixed Forest in Central Hokkaido, Japan. Vegetatio, 79, 75-84. https://doi.org/10.1007/BF00044850
Osawa, A. (1992) Development of a Mixed-Conifer Forest in Hokkaido, Northern Japan, Following a Catastrophic Windstorm: A “Parallel” Model of Plant Succession. In: Kelty, M.J., Larson, B.C. and Oliver, C.D., Eds., The Ecology and Silviculture of Mixed-Species Forests, Kluwer Academic Publisher, Dordrechtpp, 29-52. https://doi.org/10.1007/978-94-015-8052-6_3
Oliver, C.D. and Stephens, E.P. (1977) Reconstruction of a Mixed-Species Forest in Central New England. Ecology, 58, 562-572. https://doi.org/10.2307/1939005
Yamamoto, S., Nishimura, N. and Matsui, K. (1995) Natural Disturbance and Tree Species Coexistence in an Old-Growth Beech-Dwarf Bamboo Forest, Southwestern Japan. Journal of Vegetation Science, 6, 875-886. https://doi.org/10.2307/3236402
Abrams, M.D. and Orwig, D.A. (1996) A 300-Year History of Disturbance and Canopy Recruitment for Co-Occurring White Pine and Hemlock on the Allegheny Plateau, USA. Journal of Ecology, 84, 353-363. https://doi.org/10.2307/2261198
Takahashi, K., Mitsuishi, D., Uemura, S., Suzuki, J. and Hara, T. (2003) Stand Structure and Dynamics during a 16-Year Period in a Sub-Boreal Conifer-Hardwood Mixed Forest, Northern Japan. Forest Ecology and Management, 174, 39-50. https://doi.org/10.1016/S0378-1127(02)00018-X
Lorimer, C.G. (1977) The Presettlement Forest and Natural Disturbance Cycle of Northeastern Maine. Ecology, 58, 139-148. https://doi.org/10.2307/1935115
Canham, C.D. and Loucks, O.L. (1984) Catastrophic Windthrow in the Presettlement Forests of Wisconsin. Ecology, 65, 803-809. https://doi.org/10.2307/1938053
Whitney, G.G. (1990) The History and Status of the Hemlock-Hardwood Forests of the Allegheny Plateau. Journal of Ecology, 78, 443-458. https://doi.org/10.2307/2261123
Welden, C.W., Hewettt, S.W., Hubbell, S.P. and Foster, R.B. (1991) Sapling Survival, Growth, and Recruitment: Relationship to Canopy Height in a Neotropical Forest. Ecology, 72, 35-50. https://doi.org/10.2307/1938900
Takahashi, K. (1996) Plastic Response to Crown Architecture to Crowding in Understorey Trees of Two Co-Dominating Confers. Annals of Botany, 77, 159-164. https://doi.org/10.1006/anbo.1996.0018
Umeki, K. and Kikuzawa, K. (1999) Long-Term Growth Dynamics of Natural Forests in Hokkaido, Northern Japan. Journal of Vegetation Science, 10, 815-824. https://doi.org/10.2307/3237306
He, F. and Duncan, R.P. (2000) Density-Dependent Effects on Tree Survival in an Old-Growth Douglas-Fir Forest. Journal of Ecology, 88, 676-688. https://doi.org/10.1046/j.1365-2745.2000.00482.x
Wolf, A. (2005) Fifty Year Record of Change in Tree Spatial Patterns within a Mixed Deciduous Forest. Forest Ecology and Management, 215, 212-223. https://doi.org/10.1016/j.foreco.2005.05.021
Kobe, R.K., Pacala, S.W., Silander, J.A. and Canham, C.D. (1995) Juvenile Tree Survivorship as a Component of Shade Tolerance. Ecological Applications, 5, 517-532. https://doi.org/10.2307/1942040
Brokaw, N.V.L. (1985) Treefalls, Regrowth, and Community Structure in Tropical Forests. In: Pickett, S.T.A. and White, P.S., Eds., The Ecology of Natural Disturbance and Patch Dynamics, Academic Press, New York, 53-69.
Whitmore, T.C. (1989) Canopy Gaps and the Two Major Groups of Forest Trees. Ecology, 70, 536-538. https://doi.org/10.2307/1940195
Takahashi, K. (2010) Mid-Successional Stand Dynamics in a Cool-Temperate Conifer-Hardwood Forest in Northern Japan. Plant Ecology, 211, 159-5169. https://doi.org/10.1007/s11258-010-9781-2
Kohyama, T. (1992) Size-Structured Multi-Species Model of Rain Forest Trees. Functional Ecology, 6, 206-212. https://doi.org/10.2307/2389756
Kohyama, T. (1993) Size-Structured Tree Populations in Gap-Dynamic Forest: The Forest Architecture Hypothesis for the Stable Coexistence of Species. Journal of Ecology, 81, 131-143. https://doi.org/10.2307/2261230
Hara, T., Nishimura, N. and Yamamoto, S. (1995) Tree Competition and Species Coexistence in a Cool-Temperate Old-Growth Forest in Southwestern Japan. Journal of Vegetation Science, 6, 565-574. https://doi.org/10.2307/3236355
Nakashizuka, T. and Kohyama, T. (1995) The Significance of the Asymmetric Effect of Crowding for Coexistence in a Mixed Temperate Forest. Journal of Vegetation Science, 6, 509-516. https://doi.org/10.2307/3236349
Takahashi, K. and Kohyama, T. (1999) Size-Structure Dynamics of Two Conifers in Relation to Understorey Dwarf Bamboo: A Simulation Study. Journal of Vegetation Science, 10, 833-842. https://doi.org/10.2307/3237308
Monserud, R.A. and Sterbra, H. (1999) Modeling Individual Tree Mortality for Austrian Forest Species. Forest Ecology and Management, 113, 109-123. https://doi.org/10.1016/S0378-1127(98)00419-8
Caspersen, J.P. and Kobe, R.K. (2001) Interspecific Variation in Sapling Mortality in Relation to Growth and Soil Moisture. Oikos, 92, 160-168. https://doi.org/10.1034/j.1600-0706.2001.920119.x
Umeki, K. (2002) Tree Mortality of Five Major Species on Hokkaido Island, Northern Japan. Ecological Research, 17, 575-589. https://doi.org/10.1046/j.1440-1703.2002.00516.x
Kunstler, G., Curt, T., Bouchaud, M. and Lepart, J. (2005) Growth, Mortality, and Morphological Response of European Beech and Downy Oak along a Light Gradient in Sub-Mediterranean Forest. Canadian Journal of Forest Research, 35, 1657-1668. https://doi.org/10.1139/x05-097
Sokal, R.R. and Rohlf, F.J. (1981) Biometry. W. H. Freeman and Company, New York.
Takahashi, K. (1997) Regeneration and Coexistence of Two Subalpine Conifer Species in Relation to Dwarf Bamboo in the Understorey. Journal of Vegetation Science, 8, 529-536. https://doi.org/10.2307/3237203
Kikuzawa, K. (1983) Leaf Survival of Woody Plants in Deciduous Broad-Leaved Forests. 1. Tall Trees. Canadian Journal of Botany, 61, 2133-2139. https://doi.org/10.1139/b83-230
Nascimento, H.E.M., Laurance, W.F., Condit, R., Laurance, S.G., D’Angelo, S. and Andrade, A.C. (2005) Demography and Life-History Correlates for Amazonian Trees. Journal of Vegetation Science, 16, 625-634. https://doi.org/10.1111/j.1654-1103.2005.tb02405.x
King, D.A., Davies, S.J., Tan, S. and Noor, N.S.M. (2006) The Role of Wood Density and Stem Support Costs in the Growth and Mortality of Tropical Trees. Journal of Ecology, 94, 670-680. https://doi.org/10.1111/j.1365-2745.2006.01112.x
Kullman, L. (1991) Structural Change in a Subalpine Birch Woodland in North Sweden during the Past Century. Journal of Biogeography, 18, 53-62. https://doi.org/10.2307/2845244
Ohkubo, T. (1992) Structure and Dynamics of Japanese Beech (Fagus japonica Maxim.) Stools and Sprouts in the Regeneration of the Natural Forests. Vegetatio, 101, 65-80. https://doi.org/10.1007/BF00031916
Takahashi, K., Homma, K., Vetrova, V.P., Florenzev, S. and Hara, T. (2001) Stand Structure and Regeneration in a Kamchatka Mixed Boreal Forest. Journal of Vegetation Science, 12, 627-634. https://doi.org/10.2307/3236902
Hett, J.M. and Loucks, O.L. (1976) Age Structure Models of Balsam Fir and Eastern Hemlock. Journal of Ecology, 64, 1029-1044. https://doi.org/10.2307/2258822
Takahashi, K., Seino, T. and Kohyama, T. (2001) Responses to Canopy Openings in Architectural Development of Saplings in Eight Deciduous Broad-Leaved Tree Species. Canadian Journal of Forest Research, 31, 1336-1347. https://doi.org/10.1139/x01-069