Primary succession of the warm-temperate broad-leaved forest on a volcanic island, Miyake-jima, Japan
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Takashi Kamijo | Kanehiro Kitayama | K. Kitayama | Aya Sugawara | Aya Sugawara | Shinya Urushimichi | Kanako Sasai | T. Kamijo | Shinya Urushimichi | Kanako Sasai
[1] D. Tilman. Resource competition and community structure. , 1983, Monographs in population biology.
[2] P. Vitousek. Potential Nitrogen Fixation During Primary Succession in Hawai'i Volcanoes National Park1 , 1994 .
[3] Peter M. Vitousek,et al. Changes in soil phosphorus fractions and ecosystem dynamics across a long chronosequence in Hawaii. , 1995 .
[4] Takashi Kamijo,et al. Seedling establishment ofCastanopsis cuspidata var.sieboldii andPersea thunbergii on lava and scoria of the 1962 eruption on Miyake-jima Island, the Izu Islands , 1995, Ecological research.
[5] I. Atkinson,et al. Successional Trends in the Coastal and Lowland Forest of Mauna Loa and Kilauea Volcanoes, Hawaii , 1970 .
[6] P. Vitousek,et al. Biological Invasion by Myrica faya Alters Ecosystem Development in Hawaii , 1987, Science.
[7] M. O. Hill,et al. DECORANA - A FORTRAN program for detrended correspondence analysis and reciprocal averaging. , 1979 .
[8] J. Syers,et al. The fate of phosphorus during pedogenesis , 1976 .
[9] K. Kitayama. Soil nitrogen dynamics along a gradient of long-term soil development in a Hawaiian wet montane rainforest , 1996, Plant and Soil.
[10] R. P. Fritz-Sheridan,et al. Nitrogen fixation on the tropical volcano la soufriere guadeloupe i. a survey of nitrogen fixation by blue green algal microepiphytes and lichen endophytes , 1987 .
[11] T. Masuzawa,et al. Ecological studies on the timberline of Mt. Fuji , 1992, The botanical magazine = Shokubutsu-gaku-zasshi.
[12] M. Ohsawa,et al. Differentiation of vegetation zones and species strategies in the subalpine region of Mt. Fuji , 1984, Vegetatio.
[13] Gregory H. Aplet,et al. An Age--Altitude Matrix Analysis of Hawaiian Rain-Forest Succession , 1994 .
[14] P. Vitousek,et al. Nitrogen availability and nitrification during succession: Primary, secondary, and old-field seres , 1989, Plant and Soil.
[15] D. L. Heanes. Determination of total organic‐C in soils by an improved chromic acid digestion and spectrophotometric procedure , 1984 .
[16] D. Tilman. Nitrogen-Limited Growth in Plants from Different Successional Stages , 1986 .
[17] R. Moral,et al. Mechanisms of Primary Succession: Insights Resulting from the Eruption of Mount St Helens , 1993 .
[18] Kazuo Ichino,et al. Difference of invasion behavior between two climax species, Castanopsis cuspidata var. sieboldii and Mechilus thunbergii, on lava flows on Miyakejima, Japan , 2006, Ecological Research.
[19] D. Mueller‐Dombois,et al. Vegetation changes along gradients of long-term soil development in the Hawaiian montane rainforest zone , 1995, Vegetatio.
[20] M. Ohsawa,et al. Soil nitrogen mineralization rates of rainforests in a matrix of elevations and geological substrates on Mount Kinabalu, Borneo , 1998, Ecological Research.
[21] H. Tagawa,et al. A study of the volcanic vegetation in Sakurajima, south-west Japan I. Dynamics of vegetation , 1964 .
[22] Edward A. G. Schuur,et al. Fate of a wet montane forest during soil ageing in Hawaii , 1997 .
[23] P. Vitousek,et al. The Mauna Loa environmental matrix: foliar and soil nutrients , 1992, Oecologia.
[24] D. H. Knight,et al. Aims and Methods of Vegetation Ecology , 1974 .
[25] F. Clements. Dynamics of vegetation , 1949 .
[26] R. Dahlgren,et al. Mineralogy and weathering processes in Recent and Holocene tephra deposits of the Pacific Northwest, USA , 1991 .
[27] S. Tsuyuzaki. Species turnover and diversity during early stages of vegetation recovery on the volcano Usu, northern Japan , 1991 .
[28] P. Vitousek,et al. Foliar Nutrients During Long‐Term Soil Development in Hawaiian Montane Rain Forest , 1995 .
[29] F. Stuart Chapin,et al. Mechanisms of Primary Succession Following Deglaciation at Glacier Bay, Alaska , 1994 .
[30] T. Norin,et al. Primary succession of Hawaiian montane rain forest on a chronosequence of eight lava flows , 1995 .
[31] J. Edwards,et al. Arthropod Fallout as a Resource in the Recolonization of Mount St. Helens , 1993 .
[32] R. Sidle,et al. Changes in productivity and distribution of nutrients in a chronosequence at Glacier Bay National-Park, Alaska , 1990 .
[33] Dieter Mueller-Dombois,et al. Population Development of Rain Forest Trees on a Chronosequence of Hawaiian Lava Flows , 1993 .
[34] R. Simonson. Note on nomenclature , 1975 .
[35] T. Kamijo. Regeneration process of Castanopsis and Persea forest on Miyake-jima, Izu islands [Japan] , 1997 .
[36] K. Okutomi,et al. DISTRIBUTION OF CASTANOPSIS FOREST AND PERSEA FOREST AND ITS CAUSAL FACTORS ON HACHIJO-JIMA, IN THE IZU ISLANDS , 1993 .
[37] 泰彦 手塚. Development of vegetation in relation to soil formation in the volcanic island of Oshima, Izu, Japan. , 1962 .
[38] Peter M. Vitousek,et al. Biological invasion by Myrica faya in Hawai'i: plant demography, nitrogen fixation, ecosystem effects , 1989 .
[39] T. Masuzawa. Ecological studies on the timberline of Mt. Fuji , 1985, The botanical magazine = Shokubutsu-gaku-zasshi.
[40] S. Tsuyuzaki,et al. Vegetation recovery patterns in early volcanic succession , 1995, Journal of Plant Research.
[41] H. Takeda. A 5 year study of litter decomposition processes in aChamaecyparis obtusa Endl. forest , 1995, Ecological Research.