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Vertical stratification and effects of crown damage on maximum tree height in mixed conifer–broadleaf forests of Yakushima Island, southern Japan

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Abstract

We investigated vertical stratification and effects of crown damage on maximum tree height in two mixed conifer–broadleaf forests in Yakushima Island, southern Japan. In both research plots, the conifer trees dominated the upper canopy while the broadleaved trees dominated the middle to lower canopy. Most broadleaved trees were shorter than the median crown-base height (H CB) of the conifer trees. Estimates of the maximum height (H max) of the conifer trees were greater than those of the broadleaved trees. Crown damage had significant negative effects on maximum height of the conifer trees. Crown damage was observed for 72.8–88.7% of the conifer trees, and severe types of damage such as stem breakage and top die-back were the most predominant. The H max of the damaged conifer trees was 16–17% shorter than that of the intact trees and as much as 16–28% shorter than the potential maximum height estimated from the diameter–height relationship of the tallest intact trees. We inferred that crown disturbance is an important factor determining the maximum height of the canopy of the two mixed forests. Our results suggested that vertical stratification between conifer and broadleaved trees may be an important mechanism contributing to their coexistence and additive basal area of mixed forests on Yakushima Island.

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References

  • Aiba S et al (2007) Comparative study of additive basal area of conifers in forest ecosystems along elevational gradients. Ecol Res 22:439–450

    Article  Google Scholar 

  • Arabatzis AA, Burkhart HE (1992) An evaluation of sampling methods and model forms for estimating height–diameter relationships in loblolly pine plantations. For Sci 38:192–198

    Google Scholar 

  • Bellingham PJ, Kohyama T, Aiba S (1995) The effects of a typhoon on Japanese warm temperate rainforests. Ecol Res 11:229–247

    Article  Google Scholar 

  • Cannell MGR, Malcolm DC, Robertson PA (1992) The ecology of mixed-species stands of trees. Blackwell Scientific Publications, Oxford

    Google Scholar 

  • Franklin JF, Maeda T, Ohsumi Y, Matsui M, Yagi H (1979) Subalpine coniferous forests of central Honshu, Japan. Ecol Monogr 49:311–334

    Article  Google Scholar 

  • Inoue A, Yoshida S (2001) Forest stratification and species diversity of Cryptomeria japonica natural forests on Yakushima. J For Plann 7:1–9

    Google Scholar 

  • Ishibashi S (2000) The relationship between the distribution of tree species and land description in natural cool-temperate and boreal forests. J Jpn For Soc 82:243–250

    Google Scholar 

  • Ishii H, Asano S (2010) The role of crown architecture, leaf phenology and photosynthetic activity in promoting complementary use of light among coexisting species in temperate forests. Ecol Res. doi:10.1007/s11284-009-0668-4

  • Ishii H, Ford ED (2002) Persistence of Pseudotsuga menziesii (Douglas-fir) in temperate coniferous forests of the Pacific Northwest Coast, USA. Folia Geobot 37:63–69

    Article  Google Scholar 

  • Ishii H, Clement JP, Shaw DC (2000a) Branch growth and crown form in old coastal Douglas-fir. For Ecol Manag 131:81–91

    Article  Google Scholar 

  • Ishii H, Reynolds JH, Ford ED, Shaw DC (2000b) Height growth and vertical development of an old-growth Pseudotsuga-Tsuga forest in southwestern Washington State, USA. Can J For Res 30:17–24

    Article  Google Scholar 

  • Ishii H, Aimura H, Ooishi M (2004) Boundary-line analysis of tree growth and photosynthesis. Mem Grad Sch Sci Technol Kobe Univ 22:143–150

    Google Scholar 

  • Ishikawa Y, Ito K (1989) The regeneration process in a mixed forest in central Hokkaido, Japan. Vegetatio 79:75–84

    Article  Google Scholar 

  • Ito S, Nakagawa M, Buckley GP, Nogami K (2003) Species richness in sugi (Cryptomeria japonica D.Don) plantations in southeastern Kyushu, Japan: the effects of stand type and age on understory trees and shrubs. J For Res 8:49–57

    Article  Google Scholar 

  • Kimura K, Fujii S, Niiyama K, Yoshida S (2005) Past cutting and its effects on present natural Cryptomeria forest in Yakushima. Abstr Annu Meet Ecol Soc Jpn 52:499 (in Japanese)

    Google Scholar 

  • Leverenz JW, Hinckley TM (1990) Shoot structure, leaf area index, and productivity of evergreen conifer stands. Tree Physiol 6:135–149

    PubMed  Google Scholar 

  • Lusk CH, Wright I, Reich PB (2003) Photosynthetic differences contribute to competitive advantage of evergreen angiosperm trees over evergreen conifers in productive habitats. New Phytol 160:329–336

    Article  Google Scholar 

  • Midgley JJ, Parker R, Laurie H, Seydach A (2002) Competition among canopy trees in indigenous forests: an analysis of the ‘additive basal area’ phenomenon. Aust Ecol 27:269–272

    Article  Google Scholar 

  • Miyawaki A (1980) Vegetation of Japan. Shibundo, Tokyo

    Google Scholar 

  • Nagaike T (2002) Differences in plant species diversity between conifer (Larix kaempfri) plantations and broad-leaved (Quercus crispula) secondary forests in central Japan. For Ecol Manag 168:111–123

    Article  Google Scholar 

  • Ohsawa M (1995) Latitudinal comparison of altitudinal changes in forest structure, leaf-type, and species richness in humid monsoon Asia. Vegetatio 121:3–10

    Article  Google Scholar 

  • Oker-Blom P, Smolander H, Lahti T (1989) A comparison of the photosynthetic radiation response of Scots pine shoots in direct and diffuse radiation. Ann Sci For 46:469s–472s

    Article  Google Scholar 

  • Palik BJ, Pregitzer KS (1991) The relative influence of establishment time and height-growth rates on species vertical stratification during secondary forest succession. Can J For Res 21:1481–1490

    Article  Google Scholar 

  • Parker GG, Brown MJ (2000) Forest canopy stratification—is it useful? Am Nat 155:473–484

    Article  PubMed  Google Scholar 

  • Putz FE, Brokaw NVL (1989) Sprouting of broken trees on Barro Colorado Island, Panama. Ecology 70:508–512

    Article  Google Scholar 

  • Putz FE, Sharitz RR (1991) Hurricane damage to old-growth forest in Congaree Swamp National Monument, South Carolina, U.S.A. Can J For Res 21:1765–1770

    Article  Google Scholar 

  • Spies TA (1991) Plant species diversity and occurrence in young, mature and old-growth Douglas-fir stands in western Oregon and Washington. In: Ruggiero LF, Aubrey KB, Carey AB, Huff MH (eds) Wildlife and vegetation of unmanaged Douglas-fir forests. General Technical Report PNW-GTR-285. USDA Forest Service, Pacific Northwest Research Station, Corvallis, pp 111–121

    Google Scholar 

  • Stenberg P (1998) Implications of shoot structure on the rate of photosynthesis at different levels in a coniferous canopy using a model incorporating grouping and penumbra. Funct Ecol 12:82–91

    Article  Google Scholar 

  • Stephenson NL (1994) Long-term dynamics of giant sequoia populations: Implications for managing a pioneer species. In: Aune PS (ed) Symposium on Giant Sequoias: Their Place in the Ecosystem and Society. USDA For Serv Gen Tech Rep, PSW-151, pp 56–63

  • Suzuki E, Tsukahara J (1987) Age structure and regeneration of old growth Cryptomeria japonica forests on Yakushima Island. Bot Mag Tokyo 100:223–241

    Article  Google Scholar 

  • Takashima A, Masuki J, Mitsuda Y, Yoshida S, Murakami T, Imada M (2003) The structure and dynamics of three permanent plots of natural Cryptomeria japonica stands on Yakushima Island. Kyushu J For Res 56:42–47

    Google Scholar 

  • Takashima A, Kume A, Yoshida S, Murakami T, Kajisa T, Mizoue N (2009) Discontinuous DBH-height relationship of Cryptomeria japonica on Yakushima Island: effect of frequent typhoons on the maximum height. Ecol Res 24:1003–1011

    Article  Google Scholar 

  • Thomas SC (1996) Asymptotic height as a predictor of growth and allometric characteristics in Malaysian rain forest trees. Am J Bot 83:556–566

    Article  Google Scholar 

  • Ushijima S et al (2005) Tree-rings analysis of old-growth Cryptomeria japonica in Yakushima Island. Jpn For Soc Congr Database 116:750

    Google Scholar 

  • Ushijima S, Takashima A, Yoshida S, Murakami T, Mizoue N, Kimura K (2006) Dendrochronological analysis of the stumps in Cryptomeria japonica forests on Yakushima Island. Kyushu J For Res 59:150–153

    Google Scholar 

  • Yoshida S, Imanaga M (1990) The stand structure and the growth of sugi (Cryptomeria japonica D. Don) natural forests on Yakushima. J Jpn For Soc 72:131–138 (in Japanese with English summary)

    Google Scholar 

Download references

Acknowledgments

We thank the Yakushima World Heritage Conservation Center of the Ministry of the Environment, and Yakushima Forest Environment Conservation Center for permission to conduct this study. M. Sorachi provided field assistance. This study was partly funded by the Nissan Science Foundation, the Global Environmental Research Fund, and Grants in Aid for Scientific Research for Young Scientists (No. 20780118).

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Correspondence to Hiroaki Ishii.

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Ishii, H., Takashima, A., Makita, N. et al. Vertical stratification and effects of crown damage on maximum tree height in mixed conifer–broadleaf forests of Yakushima Island, southern Japan. Plant Ecol 211, 27–36 (2010). https://doi.org/10.1007/s11258-010-9768-z

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  • DOI: https://doi.org/10.1007/s11258-010-9768-z

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