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Forest Křtiny, Czech Republic \n Cited By :2 \n Export Date: 3 August 2021 \n CODEN: LSNCA \n Correspondence Address: Hammond, M.E.; Department of Silviculture, Czech Republic; email: xhammon1@mendelu.cz\nFunding Agency and Grant Number: Mendel University in Brno [LDF_ VP_2019015]; Ministry of Agriculture of the Czech RepublicMinistry of Agriculture, Czech Republic [QK1810415]\n Funding text: Supported partially by the Mendel University in Brno, Project No. LDF_ VP_2019015, and by the Ministry of Agriculture of the Czech Republic, Project No. QK1810415.\nDepartment of Silviculture, Faculty of Forestry and Wood Technology, Mendel University in Brno, Brno, Czech Republic \n Department of Forest Botany,, Dendrology and Geobiocoenology, Faculty of Forestry and Wood Technology, Mendel University in Brno, Brno, Czech Republic \n Training Forest Enterprise Masaryk Forest Křtiny, Czech Republic \n Cited By :2 \n Export Date: 20 September 2021 \n CODEN: LSNCA \n Correspondence Address: Hammond, 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Upon all the physical properties of forest gaps, the 'gap size' feature stands out as an essential property. The effect of gap size on tree species composition and diversity of natural regeneration in forest gaps of different sizes was investigated. Eight research forest gaps were selected from the Training Forest School Enterprise, also called Masaryk Forest in Krtiny, a temperate mixed forest in the Czech Republic. By given gap sizes, small (< 700 m(2)) and large gaps (>= 700 m(2)) were defined. Forty-one (41) regeneration microsites (RSs) of 1 m(2) circular area at 2 m intervals were demarcated within each forest gap. These RSs served as data collection points. From the total of eleven (11) species enumerated, large gaps obtained higher species composition (10) and diversity (Simpson = 0.5 1-D; Shannon = 1.0 H and Pielou's evenness = 0.5 J indices) records, yet, small gaps presented favourable conditions for prolific natural regeneration significantly. Light-adapted species demonstrated no significant difference (P > 0.05) between small and large gaps, however, intermediate and shade-tolerant species were significantly higher (P < 0.05) in small gaps. There were progressive declines in height growth of natural regeneration from 0-20 cm to 21-50 cm and 51+ cm in small and large gaps at R-2 = 99% and 88%, respectively. 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