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Title
Seasonality of sprouting in the exotic tree Robinia pseudoacacia L. in Hokkaido, northern Japan
- Author
- Abstract
- Robinia pseudoacacia L., one of the major invasive tree species in Japan, has been used for coppice wood production worldwide. However, we have little knowledge of the species’ sprouting characteristics. Here, we tested seasonality in R. pseudoacacia sprout development. We removed aboveground parts of R. pseudoacacia at different times throughout the year (spring, summer, autumn, and winter) and censused sprout demographics for three consecutive growing seasons thereafter. The most vigorous sprouting was observed among trees cut in winter, while sprouting was lowest among those cut in summer. Sprout abundance in the spring- and autumn-cut treatments was intermediate between that of winter- and summer-cut treatments. Both trunk diameter and season affected stump sprout biomass after three growing seasons, following the same seasonal pattern as above. We found a negative relationship between the herbaceous vegetation cover height and the biomass of root suckers. Both trunk removal in summer and consecutive sprout-clipping treatments contributed to the decline of living stumps. Our results show that R. pseudoacacia trees should be cut during the dormant season to facilitate coppicing and in the summer to facilitate control or removal. Conservation of herbaceous vegetation cover, together with consecutive sprout clipping, will aid the complete removal of this species.
- References
- Anderson D, Burnham K (2001) Commentary on models in ecology. Bull Ecol Soc Amer 82:160–161
- Beck DE, McGee CE (1974) Locust sprouts reduce growth of yellow-poplar seedlings. USDA For Serv Res Note SE-201, pp 1–6
- Benesperi R, Giuliani C, Zanetti S, Gennai M, Lippi MM, Guidi T, Nascimbene J, Foggi B (2012) Forest plant diversity is threatened by Robinia pseudoacacia (black-locust) invasion. Biodiv Conserv 21:3555–3568CrossRef
- Böhm C, Quinkenstein A, Freese D (2011) Yield prediction of young black locust (Robinia pseudoacacia) plantations for woody biomass production using allometric relations. Ann For Res 54:215–227
- Bongarten BC, Huber DA, Apsley DK (1992) Environmental and genetic influences on short-rotation biomass production of black locust (Robinia pseudoacacia L.) in the Georgia Piedmont. For Ecol Manag 55:315–331CrossRef
- Boring LR, Swank WT (1984) The role of black locust (Robinia pseudoacasia) in forest succession. J Ecol 72:749–766CrossRef
- Crawley MJ (2005) Statistics: An introduction using R. Wiley, ChichesterCrossRef
- DeGomez T, Wagner MR (2001) Culture and use of black locust. HortTech 11:279–288
- González-Muñoz N, Castro-Díez P, Godoy O (2014) Lack of superiority of invasive over co-occurring native riparian tree seedling species. Biol Invasions 16:269–281CrossRef
- Groninger JW, Fillmore SD, Rathfon RA (2006) Stand characteristics and productivity potential of Indiana surface mines reclaimed under SMCRA. North J Appl For 23:94–99
- Harrington CA (1984) Factors influencing initial sprouting of red alder. Can J For Res 14:357–361CrossRef
- Huntley JC (1990) Robinia pseudoacacia L., black locust. In: Burns RM, Honkala BH (eds) Silvics of North America, vol. 2, Hardwoods. USDA For Serv, Agri Handbk 654, Washington DC, pp 755–761
- Iliev N, Iliev I, Park YG (2005) Black locust (Robinia pseudoacacia L.) in Bulgaria. J Korean For Sci 94:21–301
- Janzen DH (2000) Costa Rica’s Area de Conservacion Guanacaste: a long march to survival through non-damaging biodevelopment. Biodiversity 1:7–20CrossRef
- Johansson T (1992) Sprouting of 2- to 5-year-old birches (Betula pubescens Ehrh. and Betula pendula Roth) in relation to stump height and felling time. For Ecol Manag 53:263–281CrossRef
- Jones RH, Raynal DJ (1986) Spatial distribution and development of root sprouts in Fagus grandifolia (Fagaceae). Amer J Bot 73:1723–1731CrossRef
- Jung SC, Matsushita N, Wu BY, Kondo N, Shiraishi A, Hogetsu T (2009) Reproduction of a Robinia pseudoacaciapopulation in a coastal Pinus thunbergii windbreak along the Kujukurihama coast Japan. J For Res 14:101–110CrossRef
- Kays JS, Canham CD (1991) Effects of time and frequency of cutting on hardwood root reserves and sprout growth. For Sci 37:524–539
- Keresztesi B (1980) The black locust. Unasylva 32:23–33
- Kramer PJ, Kozlowski TT (1979) Physiology of woody plants. Academic Press, New York
- Kurokochi H (2012) Establishment of native species, Celtis sinensis and Rhus javanica, into Robinia pseudoacaciariparian forest. Jpn J For Environ 54:101–106
- Kurokochi H, Toyama K, Hogetsu T (2010) Regeneration of Robinia pseudoacacia riparian forests after clear-cutting along the Chikumagawa River in Japan. Plant Ecol 210:31–41CrossRef
- Landhäusser SM, Lieffers VJ, Mulak TL (2006) Effect of soil temperature and time of decapitation on sucker initiation of intact Populus tremuloides root systems. Scand J For Res 21:299–305CrossRef
- Landhäusser SM, Mulak TL, Lieffers VJ (2007) The effect of roots and litter of Calamagrostis canadensis on root sucker regeneration of Populus tremuloides. Forestry 80:481–488CrossRef
- Larcher W (1994) Ökophysiologie der pflanzen. Eugen Ulmer, Stuttgart
- Larsen JA (1935) Natural spreading of planted black locust in southeastern Ohio. J For 33:616–619
- Lavertu D, Mauffette Y, Bergeron Y (1994) Effects of stand age and litter removal on the regeneration of Populus tremuloides. J Veget Sci 5:561–568CrossRef
- Lee CS, Cho HJ, Yi H (2004) Stand dynamics of introduced black locust (Robinia pseudoacacia) plantation under different disturbance regimes in Korea. For Ecol Manag 189:281–293CrossRef
- Maekawa M, Nakagoshi N (1997) Riparian landscape changes over a period of 46 years, on the Azusa river in central Japan. Landsc Urban Plann 37:37–43CrossRef
- Masaka K, Sato T, Tanahashi I (2013a) Use of honey source trees in apiculture: diversity and regionality in Hokkaido, northern Japan. J Jpn For Soc 95:15–22CrossRef
- Masaka K, Yamada K, Sato H, Torita H, Kon H (2013b) Understory plant richness and native tree invasion in exotic Robinia pseudoacacia stands in Hokkaido. Japan, For Sci 59
- Matsui Z (1951) The sylvicultural research of sprouts in northern temperate forest zone. Rep Sapporo Br For Exp Stat 69:132–151 (in Japanese)
- McCarthy MA (2007) Bayesian Methods for Ecology. Cambridge University Press, New YorkCrossRef
- Motta R, Nola P, Berretti R (2009) The rise and fall of the black locust (Robinia pseudoacacia L.) in the “Siro Negri” Forest Reserve (Lombardy, Italy): lessons learned and future uncertainties. Ann For Sci 66:410CrossRef
- Ogawa M, Hukushima T (1996) Root sprout and seedling dynamics of Prunus ssiori in an Abies mariesii forest in Oku-Nikko, Kanto District. J Jpn For Soc 78:195–200 (in Japanese with English summary)
- R Development Core Team (2013) R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. http://www.R-project.org. Accessed 15 Oct 2014
- Rédei K, Csiha I, Keserü Z (2011a) Black locust (Robinia pseudoacacia L.) short-rotation crops under marginal site conditions. Acta Silv Lign Hung 7:125–132
- Rédei K, Csiha I, Keserü Z, Végh ÁK, Györi J (2011b) The silviculture of black locust (Robinia pseudoacacia L.) in Hungary: a Review. South-East Europ For 2:101–107CrossRef
- Sakio H (2003) Can an exotic plant, Robinia pseudoacacia L., be removed from riparian ecosystems in Japan ? J Jpn For Soc 85:355–358 (in Japanese with English summary)
- Shimizu H (2014) Multilevel modelings for individual and group data. Nakanishiya, Tokyo, Japan (in Japanese)
- Stenvall N, Piisilä M, Pulkkinen P (2009) Seasonal fluctuation of root carbohydrates in hybrid aspen clones and its relationship to the sprouting efficiency of root cuttings. Can J For Res 39:1531–1537CrossRef
- Tamura H, Kaneko T, Makita A (2007) Structure of 50 year old black locust (Robinia pseudoacacia L.) populations planted in a heavily smoke polluted area around Kosaka Mine, Akita Prefecture, northern Japan. J Jpn Soc Reveget Tech 32:432–439 (in Japanese with English summary)CrossRef
- von Holle B, Joseph KA, Largay EF, Lohnes RG (2006) Facilitations between the introduced nitrogen-fixing tree, Robinia pseudoacacia, and nonnative plant species in the glacial outwash upland ecosystem of Cape Cod, MA. Biodiv Conserv 15:2197–2215CrossRef
- Yamada K, Masaka K (2007) Present distribution and historical background of the invasive alien species Robinia pseudoacacia on former coalmine land in Hokkaido. Jpn J Conserv Ecol 12:94–102 (in Japanese with English summary)
- Yamada K, Masaka K (2009) Dynamics in growth and survival of Robinia pseudoacacia sprouts occurred after cutting conducted in different seasons. J Jpn For Soc 91:42–45 (in Japanese with English summary)CrossRef
- Zuur AF, Ieno EN, Walker NJ, Saveliev AA, Smith GM (2009) Mixed Effects Models and Extensions in Ecology with R. Springer, New YorkCrossRef
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