Evaluations on the Use Potential of Some Woody Plants Naturally Growing in Elazig Flora in Landscape Architecture

In this study, the potential of use in the landscape area of some woody plants that naturally spread in the flora of Elazig was investigated. As a result of the researches, it was determined that 29 genera and 54 natural plant taxa belonging to 18 families in the region have potential landscape plant characteristics. Families with the most taxa; Rosaceae (19 taxa), Salicaceae (4 taxa), and Fagaceae (4 taxa). The genera with the most taxa are; Crataegus, Rosa and Quercus with 4 taxa each, followed by Acer, Tamarix and Sorbus with 3 taxa each.. As a result of the evaluation, the woody plants with landscape potential in the region are used for ornamentation, aesthetics, fence, ground cover, etc. It has been found that it can be used for many purposes.

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  • [1]. Bakay L, Paganová V. Evaluation of phenological activity of progenies of true service tree (Sorbus domestica L.) from the locality Jelenec. Acta Horticulturae et Regiotecturae, 2010, 13(2), 38-41.
  • [2]. Sjöman H. Trees for tough urban sites, 2012, 7.
  • [3]. Arnold H.F. Trees in urban design. 2nd edition. 1993, Van Norstrand Reinhold, New York.
  • [4]. Jacobs A.B. Great Streets. 1995, MIT Press, Cambridge, MA
  • [5]. Bell S, Blom D. Rautamäki, M., Castel-Branco, C., Simson, A., Olsen, I.A. Design of Urban Forests. In: Konijnendijk, C.C., K. Nilsson, T.B. Randrup, and J. Schipperijn (Eds.) Urban Forests and Trees, 2005, pp. 149-186. Springer.
  • [6]. King VJ, Davis C. A case study of urban heat island in the Carolinas. Enviromental Hazards, 2007. 7, 353-359.
  • [7]. McPherson E.G, Nowak D, Heisler G, Grimmond S, Souch C, Grant R, Rowntree R. Quantifying urban forest structure, function and value: the Chicago Urban Forest Climate Project. Urban Ecosystems, 1997, 1, 49-61.
  • [8]. Becket K.P, Freer-Smith P, Taylor G. Effective tree species for local air-quality management. Journal of Arboriculture, 2000, 26, 12-19
  • [9]. Nowak D, Crane D, Stevens J. Air pollution removal by urban trees and shrubs in the United States. Urban Forestry and Urban Greening, 2006, 4, 115-123.
  • [10]. Güner, A., Aslan, S., Ekim, T., Vural, M. ve Babaç, M.T. Türkiye Bitkileri Listesi (Damarlı Bitkiler). Nezahat Gökyiğit Botanik Bahçesi ve Flora Araştırmaları Derneği Yayınları, İstanbul. 2012.
  • [11]. Çakılcıoğlu U, Türkoğlu İ. Plants used for pass kidney stones by the folk in Elazığ, The Herb Journal of Systematic Botany, 2008, 14, pp. 133-144.
  • [12]. Davis, P H. Flora of Turkey Volume1- 9. Edinburg University Press, Edinburg, 1967.
  • [13]. Yücel E. Çiçekler ve yerörtücüler, Türmatsan Organize Matbaacılık San. Ltd. Şti. Eskişehir, 2012a, 352s.
  • [14]. Yücel E. Ağaçlar ve çalılar I. Türmatsan Organize Matbaacılık San. Ltd. Şti. Eskişehir, 2012b, 277s.
  • [15]. Akkemik Ü. (Editör). Türkiye’nin doğal-egzotik ağaç ve çalıları I, Gymnospermler-Angiospermler (A-G). Orman Genel Müdürlüğü Yayınları, Ankara, 2014a, 736s.
  • [16]. Akkemik Ü. (Editör). Türkiye’nin doğal-egzotik ağaç ve çalıları II, Angiospermler (H-Z). Orman Genel Müdürlüğü Yayınları, Ankara, 2014b, 680s.
  • [17]. Anonymous. The plant list. A working list of a plant species. [Online]. Available: May 2020, http://www.theplantlist.org.
  • [18]. Pauleit S, Ennos R, Golding Y. Modeling the environmental impacts fo urban lands use and land cover change – a study in Merseyside, UK. Landscape and Urban Planning, 2005. 71, 295- 310.
  • [19]. Sæbø A, Benedikz T, Randrup T.B. Selection of trees for urban forestry in the Nordic countries. Urban Forestry and Urban Greening, 2, , 2003, 101-114.
  • [20]. Spongberg S.A. A reunion of trees: Discovery of exotic plants and their introduction into North American and European landscapes. 1995, Harvard University Press, Cambridge, Mass.