Simulation of the features of the water regime of Pinus nigra subsp. pallasiana with the use of ecophysiological parameters in the conditions of the Southern Coast of the Crimea
https://doi.org/10.36305/2712-7788-2022-4-165-27-39
Abstract
About the Authors
O. A. IlnitskyRussian Federation
A. V. Pashtetsky
Russian Federation
References
1. Анненков А.А. Методические рекомендации по изыскательским работам для проектирования объектов озеленения в Крыму. Ялта, 1984. 26 с
2. Генкель П.А. Физиология жарои засухоустойчивости растений. М.: Наука, 1982. 280 с
3. Дроздов С.Н., Курец В.К. Некоторые аспекты экологической физиологии растений. Петрозаводск: ПетрГУ, 2003. 172 с
4. Дроздов С.Н., Попов Э.Г., Курец В.К. Влияние света и температуры на нетто-фотосинтез и дыхание Betula pendula var. pendula и Betula pendula var. carelica (Betulaceae) // Ботанический журнал. 1995. Т. 80, № 3. С. 60-64
5. Ильницкий О.А., Плугатарь Ю.В., Корсакова С.П. Методология, приборная база и практика проведения фитомониторинга. Симферополь: ИТ «АРИАЛ», 2018. 233 с
6. Плугатарь Ю.В., Корсакова С.П., Ильницкий О.А. Экологический мониторинг Южного берега Крыма. Симферополь: ИТ «АРИАЛ», 2015. 162 с
7. Korshikov I.I., Ducci F., Terliga N., Bychkov S., Gorlova E. Allozyme variation of Pinus pallasiana D. Don in Natural Crimean populations and in plantations in technogenously-polluted areas of the Ukraine steppes // Annals of Forest Science. 2004. Vol. 61. P. 389-396. DOI: 10.1051/forest:2004032
8. Korshikov E.A., Mudrik O.V., Krasnoshtan T.I., Velikorid’ko L.A., Kalafat D.Yu. Age Dynamics of the Population Gene Pool of the Crimean Pine (Pinus pallasiana D. Don) in Crimea // Cytology and Genetics. 2011. Vol. 45. No. 1. p. 33-37
9. Lapa G., Morandini F., Ferrat L. Sap flow and photosynthetic response to climate and drought of Pinus nigra in a Mediterranean natural forest // Trees. 2017. Vol. 31. P. 1711-1721. DOI: 10.1007/s00468-017-1580-0
10. Poyatos R., Llorens P., Piñol J., Rubio C. Response of Scots pine (Pinus sylvestris L.) and pubescent oak (Quercus pubescens Willd.) to soil and atmospheric water deficits under Mediterranean mountain climate. // Annals of Forest Science. 2008. Vol. 65 (3). P. 306-306. DOI:10.1051/forest:2008003
11. Sperlich D., Chang C.T., Peñuelas J., Gracia C., Sabaté S. Seasonal variability of foliar photosynthetic and morphological traits and drought impacts in a Mediterranean mixed forest // Tree Physiology. 2015. Vol. 35. P. 501-520. DOI:10.1093/treephys/tpv017
12. Zhang W., He K., Wang Y., Wang B., Deng J., Zhou Y., Zhong X., Li Z. Effects of light radiation intensity on photosynthetic characteristics and water use efficiency of Platycladus orientalis and Pinus tabulaeformis seedlings // Frontiers of Forestry in China. 2007. Vol. 2(2). P. 192-197. DOI: 10. 1007/s11461-007-0031-2
13. Larсher W. Physiological Plant Ecology: Ecophysiology and Stress Physiology of Functional Groups. Heidelberg: Springer-Verlag, 2003. 506 p
14. Kint V., Aertsen W., Fyllas N.M., Trabucco A., Janssen E., Özkan K., Muys B. Ecological traits of Mediterranean tree species as a basis for modelling forest dynamics in the Taurus mountains, Turkey // Ecological Modelling. 2014. Vol. 286. P. 53-65
15. Nevzat G., Ayşe D., Dilek Y. Effects of irrigation and fertilization on the growth of juniper seedlings Der Einfluss von Bewässerung und Düngung auf das Wachstum von Wacholdersämlingen // Austrian Journal of Forest Science. 2014. Heft 3. S. 171-190
16. Meletiou-Christou MS., Rhizopoulou S. Leaf functional traits of four evergreen species growing in Mediterranean environmental conditions // Acta Physiologiae Plantarum. 2017. Vol. 39. N 1. P. 34-46. DOI: 10.1007/s11738-016-2330-4
17. Güney A., Zweifel R., Türkan S. Reiner Z., Magnus W., Coşkun O.G. Drought responses and their effects on radial stem growth of two co-occurring conifer species in the Mediterranean mountain range // Annals of Forest Science. 2020. Vol. 77. Article. 105. https://doi.org/10.1007/s13595-020-01007-2
18. Mohamed A.B.A., Nicole D.W. Use and Soil Moisture Relationships on Western Juniper Trees at Different Growth Stages // Water. 2020. Vol. 12. P. 1596
19. Jones H.G., Archer N., Rotenberg E., Casa R. Radiation measurement for plant ecophysiology // Journal of Experimental Botany. 2003. Vol. 54(384). P. 879-889. DOI: 10.1093/jxb/erg116
20. Giorgi F., Lionello P. Climate change projections for the Mediterranean region // Global and Planetary Change. 2008. P. 90-104. DOI: 10.1016/j.gloplacha.2007.09.005
Review
For citations:
Ilnitsky O.A., Pashtetsky A.V. Simulation of the features of the water regime of Pinus nigra subsp. pallasiana with the use of ecophysiological parameters in the conditions of the Southern Coast of the Crimea. Plant Biology and Horticulture: theory, innovation. 2022;(4 (165)):27-39. (In Russ.) https://doi.org/10.36305/2712-7788-2022-4-165-27-39