Differential survival and growth of stumps in 14 woody species after conservation thinning in mixed oak-rich temperate forests

被引:0
作者
Jenny Leonardsson
Frank Götmark
机构
[1] University of Gothenburg,Department of Biological and Environmental Sciences
来源
European Journal of Forest Research | 2015年 / 134卷
关键词
Sprouting; Forest management; Conservation; Coppice; Stool; Succession;
D O I
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中图分类号
学科分类号
摘要
Many trees sprout after cutting and other disturbances, and individuals may persist for a long time. In 25 forests in Sweden subjected to thinning for biodiversity values, we tested whether survival and growth of sprouts are related to stump diameter. Stem diameters vary under conservation thinning and earlier work had indicated high survival of stumps of small diameter. We also tested whether a continuum of responses in sprouting existed among the 14 species, as predicted by earlier work. We cut on average 26 % of the basal area (mean basal area 28 m2/ha) and analysed 1,044 stumps (diameters 10–76 cm). The response of the species after 9 years ranged along a continuum from weak to strong sprouting. Survival was highest for Corylus avellena (95 % of cut individuals survived) and Tilia cordata (85 %), then decreased as follows; Crataegus spp. > Alnus glutinosa > Prunus avium > Fraxinus excelsior > Quercus robur/Q. petraea > Salix caprea > Sorbus aucuparia > Acer platanoides > Betula pendula, to Betula pubescens (8 %) and Fagus sylvatica (8 %). Within species, stump survival was unrelated to stump diameter. Mean maximal sprout height of surviving stumps varied from about 1 to 4 m among the species after 9 years. Sprout height was unrelated to stump diameter. Stump survival (%) and mean sprout height were positively correlated across species. In conclusion, stem diameter had no effect on sprouting, but the 14 species could be clearly ranked in regrowth. Our results are useful in planning thinning of mixed forests for biodiversity conservation, for biomass harvest, or combined purposes.
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页码:199 / 209
页数:10
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[1]  
Albert K(2014)Biomass equations for seven different tree species growing in coppice-with-standards forests in Central Germany Scand J For Res 29 210-221
[2]  
Annighöfer P(2009)Silviculture for old-growth attributes For Ecol Manage 258 525-537
[3]  
Schumacher J(2000)Resprouting as a life history strategy in woody plant communities Oikos 89 409-416
[4]  
Ammer C(2001)Ecology of sprouting in woody plants: the persistence niche Trends Ecol Evol 16 45-51
[5]  
Bauhus J(2011)Influences of woody encroachment and restoration thinning on overstory savanna oak tree growth rates For Ecol Manage 262 1409-1416
[6]  
Puettman K(2001)Sprouting in temperate trees: a morphological and ecological review Bot Rev 67 121-140
[7]  
Messier C(2008)Changing the gap dynamics paradigm: vegetative regeneration control on forest response to disturbance Ecol Monogr 78 331-347
[8]  
Bellingham PJ(2010)Restoration thinning accelerates structural development and carbon sequestration in an endangered Australian ecosystem J Appl Ecol 47 681-691
[9]  
Sparrow AD(2013)Temporal development of ash dieback symptoms and spatial distribution of collar rots in a provenance trial of Eur J For Res 132 865-876
[10]  
Bond WJ(2007)Careful partial harvesting in conservation stands and retention of large oaks favour oak regeneration Biol Conserv 140 349-358