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Key factors in the site selection of Rosa canina (L.) - applying the Generalized Additive Model

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Determining suitable sites for species is of great importance in the choice of plant species to be used for ecosystem restoration. The number of plant species to be used in restoration of degraded ecosystems is restricted by climate in arid and semi arid regions. Planting with economically important species in addition to ecological aspects is preferred by decision makers in Mediterrenian countries including Turkey. This study was addressed to determine the significant environmental factors influencing the distribution of dog rose hip (Rosa canina) and to obtain its distribution model. The study was carried out in an area of 26,400 km2 in The Inner Anatolia which has semiarid climate. 106 sample plots, 20 x 20 m in size, were selected from different sites with and without Rosa canina in the summer of 2007. Wilcoxon rank-sum statistic for continuous variables and Pearson Chi-square tests for categorical variables were applied. Altitude, slope degree, available water capacity, soil reaction and soil K, Ca, Mg content as well and total calcium carbonate amount as the continuous variables and northwest-northeast group of aspect, metamorphic group of bedrock as the categorical variables were determined as the significant factors influencing the presence of dog rose. Generalized Additive Model (GAM) was performed for modeling the distribution of the species. To obtain the best model, all significant environmental factors were evaluated. The best model result was obtained (training Area Under Curve (AUC) = 0.902 and cross-validation AUC = 0.841) by means of altitude, slope degree, aspect, and bedrock. Interspecific correlation analysis (ICA) was applied to define indicator species accompanying the dog rose. Dog rose distribution was positively correlated with Cistus laurifolius, Pyrus elaeagnifolia, Lonicera caucasica subsp. orientalis, Quercus vulcanica and Amelanchier rotundifolia subsp. rotundifolia. The results obtained from this study are crucial for estimation of the suitable areas for Dog rose in restoration studies of natural ecosystems in the Mediterranean region, including Anatolia in Turkey.
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475--482
Opis fizyczny
Bibliogr. 37 poz.,Rys., tab.,
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Bibliografia
  • 1. Allison L.E., Moodie C.D. 1965 – Carbonate: Volumetric Calcimeter Method, Agronomy Monographs No.9, Part 2. Methods of Analysis – American Society of Agronomy, Madison, Wisconsin, USA, pp. 1389–1392.
  • 2. Araujo M.B., Pearson R.G., Thuiller W., Erhard M. 2005 – Validation of species climate impact models under climate change – Global Change Biol. 11: 1504–1513.
  • 3. Bouyoucos C. J. 1962 – Hydrometer method for making particle size analysis of soil – Agron. J. 54: 5.
  • 4. Bremner J.M. 1965 – Semimicro-Kjeldahl Method, (In: Chemical and Microbiological Properties, Part 2. Ed. C.A. Black) – American Society of Agronomy, Inc. Publisher Madison, Wisconsin, USA, pp.1171–1177.
  • 5. Çelik S., Özkan K., Yücel E., Göktürk R .S., Öztürk M. 2006 – Determination of indicator species and comparison of soil characteristics of Centaurea mucronifera DC. and Centaurea pyrrohoblephera Boiss. distributed in Turkey – Int. J. Biol. Biotech. 3: 609–617.
  • 6. Davis P.H. 1972 – Flora of Turkey and the East Aegean Islands, 4 – Edinburgh University Press, Edinburgh, 657 pp.
  • 7. Demir F., Özcan M. 2001 – Chemical and technological properties of rose (Rosa canina L.) fruits grown wild in Turkey – J. Food Eng. 47: 333–336.
  • 8. DMIGM 1989 – Precipitation regime of Turkey – TUMAK Project, Ankara.
  • 9. Doğan A, Kazankaya A. 2006 – Fruit properties of rose hip species grown in Lake Van basin (Eastern Anatolia region) – Asian J. Plant Sci. 5: 120–122.
  • 10. Ercisli S. 2007. Chemical composition of fruits in some rose (Rose spp) species – Food Chem. 104: 1379–1384.
  • 11. FAO, IRIC, ISSS. 1998 – World Reference Base for soil resources – Food and Agricultural Organisation of the United Nations, Rome.
  • 12. Fuller G.D., Conard H.S. 1983 – Plant Sociology: The Study of Plant Communities – Koeltz Scientific Books, Germany, translated and revised from Braun-Blanguet, J. 1932, Plant Sociology, New York.
  • 13. Ghazghazi H, Miguel M.G., Hasnaouni B., Sebei H., Ksontini M., Figueiredo A.C., Pedro L. G., Barroso J.G. 2010 – Phenols, essential oils and carotenoids of Rosa canina from Tunisia and their antioxidant activities – Afr. J. Biotechnol. 9: 2709–2716.
  • 14. Hahs A., Enright N.J., Thomas I. 1999 – Plant communities, species richness and their environment correlates in the sandy heats of Little Desert National Park, Victoria – Aust. J. Ecol. 24: 249–257.
  • 15. Hamzaoğlu E., Aydoğdu M., Kurt L., Cansaran A. 2004 – New syntaxa from the west part of central Anatolia – Pak. J. Bot. 36: 235–246.
  • 16. Hamzaoğlu E. 2005 – The steppe vegetation of Dinek Mountain (Kırıkkale) – G.U.J. Sci. 18: 15.
  • 17. Jackson M.L. 1962 – Soil Chemical Analysis, Constable and Company Ld., London.
  • 18. Jürgens A.H, Seitz B, Kowarick I. 2007 – Genetic differentiation of Rosa canina (L.) at regional and continental scales – Pl. Sysyt. Evol. 269: 39–53.
  • 19. Kacar B. 2009 – Toprak Analizleri, Nobel Yayınevi, Türkiye [Soil Analysis, Nobel Inc, Turkey], 465 pp. (in Turkish).
  • 20. Karatepe Y. 2006 – Kuşburnu (Rosa canina L.)’nun Eğirdir Gölü Havzası’ndaki Doğal Yayılış Alanlarına Ait Bazı Ekolojik Özellikler [Some ecological properties of Dog rose in Egirdir Lake Watershed natural distribution area], I. Uluslar arası Odundışı Orman Ürünleri Sempozyumu Bildiriler kitabı – Proceedings of I. International Symposium on Nonwoody forest products, Black Sea Technical University, Faculty of Forestry, 1–4 November 2006, Trabzon, pp. 376–383 (in Turkish).
  • 21. Kazaz S., Baydar H., Erbas S. 2009 – Variations in Chemical Compositions of Rosa damascena Mill. and Rosa canina L. Fruits – Czech J. Food Sci. 27: 178–184.
  • 22. Klute A. 1986 – Water retention laboratory methods (In: Methods of Soil Analysis, Part 1, Physical and Mineralogical Properties, Argon No 9, Ed. A. Klute) – Amer. Soc. of Agronomy Inc. Madison, Wisconsin, USA.
  • 23. López-López P., Garcíe-Ripollés C., Soutullo Á, Cadahía L., Urios V. 2007 – Identifying potantially suitable nesting habitat for golden eagles applied to ‘important bird areas’ desing – Anim. Conserv. 10: 208–218.
  • 24. Lehmann A., Overton J.M., Leathwik J.R. 2002 – GRASP: Generalized regression analysis and spatial predictions – Ecol. Model. 157: 187–205.
  • 25. Moisen G.G., Freeman E.A., Blackard J.A., Frescino T.S., Zimmermann N.E., Edwards T.C. 2006 – Predicting tree species presence and basal area in Utah: a comparison of stochastic gradient boosting, generalized additive models, and tree-based methods – Ecol. Model. 199: 176–187.
  • 26. Özbek H., Güçlü S., Tozlu G. 1999 – Erzurum’da kuşburnu (Rose canina L.)’nda zarar yapan Diplolepis mayri Schld. (Hymenoptera: Cynipidae)’nin biyolojisi ile doğal düşmanları [Biology and natural enemies of Diplolepis mayri Schld. (Hymenoptera: Cynipidae), a pest of Rosa canina L. in Erzurum province] – Turk. J. Ento. 23: 39–50 (in Turkish).
  • 27. Özdamar K. 2002 – Paket Programlar İle İstatistiksel Veri Analizi-1 [Statistical Data Analysis By Using Software-1] – 4. Baskı, Kaan Kitabevi, Eskişehir, 686 pp. (in Turkish).
  • 28. Özkan K., Süel H., Mert A., Gülsoy S., Başayiğit L., Şenol H. 2006 – Buldan batı dağlık bölgesinde Kuşburnunun (Rosa canina L.) dağılımını etkileyen abiyotik yetişme ortamı faktörleri [Abiotic site factors influencing distribution of Dog rose (Rosa canina L.) in West Buldan Mountainous Region] – Proceedings of Buldan Symposium 2, Aydoğdu Ofset, Ankara, pp. 581–588 (in Turkish).
  • 29. Özkan K,. Bilir N. 2008 – Influence of soil and topographical characteristics on spatial distribution of wild rosa (Rosa canina L.) and its indicator species in Beysehir watershed, Mediterrian region, Turkey – J. The Malaysian Forester, 71: 87–96.
  • 30. Özkan K., Şenol H., Gülsoy S., Mert A., Süel H., Eser Y. 2009 – VegetationEnvironment Relationships in Mediterranean Mountain Forests on Limeless Bedrocks of Southern Anatolia, Turkey – J. Environ. Eng. Landscape Manage. 17: 154–163.
  • 31. Özkan K., Gülsoy K., Aerts R., Muys B. 2010 – Site properties for Crimean juniper (Juniperus excelsa) in semi-natural forests of south western Anatolia, Turkey – J. Environ. Biol. 31: 97–100.
  • 32. Peech M. 1965 – Soil pH by Class Electorede pH meter methods of Soil (In: Part 2. Chemical and Microbiological Properties, Ed. C.A. Black) – American Society of Agronomy, Inc. Publisher Madison, Wisconsin, USA, pp.1035–1049.
  • 33. Poole R.W. 1974 – An introduction to quantitative ecology, McGraw-Hill, Inc., New York.
  • 34. Ravindranath N.H., Ostwald M. 2008 – Carbon Inventory Methods: Handbook for Greenhouse Gas Inventory, Carbon Mitigation and Rounwood Production Projects, Advances in Global Research 29, Springer-Business Media B.V., 304 pp.
  • 35. Schoenau J.J., O’Halloran I.P. 2008 – Sodium bicarbonate-extractable phosphorous (In: Soil Sampling and Methods of Analysis, Eds: M.R. Carter, E.G. Gregorich) – USA, pp. 89–94.
  • 36. Szentmihályi K., Vinkler P., Lakatos B., Illes V., Then M. 2002 – Rose hip (Rosa canina L.) oil obtained from waste hip seeds by different extraction methods – Bioresource Technol. 82: 195–201.
  • 37. Zech W., Çepel N. 1972 – Güney Anadolu’daki Bazı Pinus brutia Meşcerelerinin Gelişimi ile Toprak ve Relief Özellikleri Arasındaki İlişkiler[Relationships between the growth of some Calabrian pine stands and soil, and relief properties in Western Anatolia] – Istanbul University, Press No: 1753, Department of Forestry publication No: 191, Istanbul, 107 pp.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-3303-2787
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