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:: Volume 10, Issue 21 (12-2022) ::
PEC 2022, 10(21): 79-92 Back to browse issues page
The effect of ecophysiography on the quantitative characteristics of DBH, height, basal area, crown diameter, and canopy area of trees in mountain forest communities (Case study: Oak-hornbeam community in Arasbaran forest)
Roya Abedi * , Leila Soleimannejad2
Ahar Faculty of Agriculture and Natural Resources, University of Tabriz, Ahar Faculty of Agriculture and Natural Resources, University of Tabriz , royaabedi@tabrizu.ac.ir
2- Department of Environmental Sciences, Faculty of Agriculture and Natural Resources, Arak University, Arak
Abstract:   (1766 Views)
Ecophysiography is the geography of the earth and the relationship between physiography and the ecosystem. Ecophysiography is a basis for planning processes to study the characteristics of terrestrial systems concerning the interactions between terrestrial physiography and living organisms. Due to the current state of ecosystems and the increase in natural disasters for ecosystem sustainability, the assessment of ecophysiographic features provides a basis for solving ecosystem problems to provide better ecosystem services. The environment has an important role in determining the affecting factors of the spread, distribution, and survival in forest communities. Therefore, the present study analyzed the relationship between the quantitative characteristics of trees and physiographic factors in slope aspects and elevation ranges. In this study, the data was prepared in six square sample plots with dimensions of 100 m ×100 m in oak and hornbeam-dominated stands in three altitude ranges from 1200 to 1600 meters above sea level and in two slopes aspects. The plots are selected from fully protected areas to minimize the effects of human degradation. The diameter at breast height, total height, and large and small diameters of the canopy of all trees were measured. The parameters of basal area (cm2), canopy area (m2), and average canopy diameter (m) of trees were calculated in each sample plot. Statistical tests included analysis of variance and comparison of means performed by Tukey test at the significance level of 0.05 to investigate the effect of elevation and independent t-test to evaluate the effects of geographical aspects in R software. The results showed that the elevation and the slope aspects have not significantly affected the trees’ diameter and basal area (p>0.05), but there was a significant difference in tree height, average canopy diameter, and canopy area (p≤0.05). The northwest slope was more homogeneous in all the studied features, but the changes were more in the northeast slope. The height and canopy of trees from the valley to the peak increased significantly (p≤0.05). There was a significant correlation between the diameter and the basal area, and the canopy area and the average of the canopy diameter (p≤0.05). The study showed that the ecophysiographic factors (including elevation and slope aspect) affected some quantitative characteristics of oak-hornbeam stands in Arasbaran, and the trees had significant changes under the influence of these factors and due to the nature of the tendency to adapt to the environment. The size of the trees in the top, slope, and valley in the northwest slope was homogeneous, and in the northeast slope from the valley to the top, the trees had larger sizes. This situation also existed for the basal area of trees. But in the northwest direction, they had a larger crown area in the slopes of the trees, and in the northeast direction, the peak trees had a larger crown area. The interaction effects of the aspects and the elevation ranges on the stand characteristics showed that the canopy area and the average canopy diameter had a significant difference (p≥0.05). But, other characteristics did not show any significant difference (p<0.05).
Article number: 7
Keywords: Arasbaran, Ecophysiography, Quantitative parameter, Plant community
Full-Text [PDF 480 kb]   (326 Downloads)    
Type of Study: Research | Subject: Special
Received: 2022/04/20 | Accepted: 2022/11/13 | Published: 2023/04/22
References
1. Abedi, R., Abedi, T. 2020. Some non-linear height–diameter models performance for mixed stand in forests in Northwest Iran. Journal of Mountain Science, 17(5): 1084-1095.
2. Abedi, R., Pourbabaei, H. 2011. Ecological species groups in the rural heritage museum of Guilan Province, Iran. Caspian Journal of Environmental Science, 9(2): 115-123.
3. Beadle, C., Sands, R. 2004. Tree physiology, physiology, and silviculture. Encyclopedia of Forest Science, p: 1568-1577.
4. Cabuk, S.N., Değerliyurt, M., Metin, T.C., Çabuk, A. 2016. Evaluating geodesign with ecophysiography. 41st Iahs World Congress Sustainability and Innovation for the Future 13-16th September 2016 Albufeira, Algarve, Portugal, p. 1 -11.
5. Cirimwami, L., Doumenge, C., Marie Kahindo, J., Amani, C. 2019. The effect of elevation on species richness in tropical forests depends on the considered lifeform: results from an East African mountain forest. Tropical Ecology, 60: 473–484
6. Ferry-Graham, L.A., Gibb, A.C. 2008. Ecophisiology. Encyclopedia of ecology (second edition), 3: 346-349.
7. Griffiths, R.P., Madritch, M.D., Swanson, A.K. 2009. The effects of topography on forest soil characteristics in the Oregon Cascade Mountains (USA): Implications for the effects of climate change on soil properties. Forest Ecology and Management, 257: 1–7.
8. Liang, P., Wang, X., Sun, H., Fan, Y., Wu, Y., Lin, X., Chang, J. 2019. Forest type and height are important in shaping the altitudinal change of radial growth response to climate change. Scientific Reports, 9 (1336): 1-9.
9. Mazon, M.M., Klanderud, K., Finegan, B., Veintimilla, D., Bermeo, D., Murrieta, E., Delgado, D., Sheil, D. 2020. How forest structure varies with elevation in old growth and secondary forest in Costa Rica. Forest Ecology and Management, 469: 118191.
10. Nath, B., Ni-Meister, W. 2021. The Interplay between Canopy Structure and Topography and Its Impacts on Seasonal Variations in Surface Reflectance Patterns in the Boreal Region of Alaska-Implications for Surface Radiation Budget. Remote Sensing, 13(3108): 1-22.
11. Nie, X., Guo, W., Huang, B., Zhuo, M., Li, D., Li, Z., Yuan, Z. 2019. Effects of soil properties, topography and landform on the understory biomass of a pine forest in a subtropical hilly region. Catena, 176: 104–111.
12. Pfeifer, M., Gonsamo, A., Woodgate, W., Cayuela, L., Marshall, A.R., Ledo A., et al. 2018. Tropical forest canopies and their relationships with climate and disturbance results from a global dataset of consistent field-based measurements. Forest Ecosystems, 5 (7): 1-14.
13. Rahman, A. Khan, N., Bräuning, A., Ullah R., Rahman, I. 2022. Effects of environmental and spatial gradients on Quercus-dominated Mountain forest communities in the Hindu-Kush ranges of Pakistan. Saudi Journal of Biological Sciences, 29 (4): 2867-2877.
14. Rezaei, H., Jafarzadeh, A.A., Alijanpour, A., Shahbazi F., Valizadeh Kamra, Kh. 2020. Soil Organic Matter Condition in Forest Stands of Arasbaran. Journal of Water and Soil, 34(1): 115-127.
15. Sinha, S., Badola, H.K., Chhetri, B., Gaira, K.S., Lepcha, J., Dhyani, P.P. 2018. Effect of altitude and climate in shaping the forest compositions of Singalila National Park in Khangchendzonga Landscape, Eastern Himalaya, India. Journal of Asia-Pacific Biodiversity, 11: 267e275.
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Abedi R, Soleimannejad L. The effect of ecophysiography on the quantitative characteristics of DBH, height, basal area, crown diameter, and canopy area of trees in mountain forest communities (Case study: Oak-hornbeam community in Arasbaran forest). PEC 2022; 10 (21) : 7
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Volume 10, Issue 21 (12-2022) Back to browse issues page
مجله حفاظت زیست بوم گیاهان Journal of Plant Ecosystem Conservation
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