Evaluation of the adaptability and response of indigenous trees to assisted rehabilitation on the degraded hillsides of Kuriftu Lake Catchment (Debre Zeit, Ethiopia)

Wondwossen Gebretsadik

Journal of Forestry Research ›› 2014, Vol. 25 ›› Issue (1) : 97 -102.

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Journal of Forestry Research ›› 2014, Vol. 25 ›› Issue (1) : 97 -102. DOI: 10.1007/s11676-013-0398-x
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Evaluation of the adaptability and response of indigenous trees to assisted rehabilitation on the degraded hillsides of Kuriftu Lake Catchment (Debre Zeit, Ethiopia)

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Abstract

Removal of trees and shrubs from hillsides exposes a site to erosion that threatens soil aggregation and stability. The present study aimed at evaluating the performance of five indigenous tree species in rehabilitation of degraded hillsides of Kuriftu Lake Catchment and the role of water harvesting structures. Adaptability varied by tree species and water harvesting structures significantly augmented seedling establishment for some tree species. Height of Acacia abyssinica planted on steeper slopes (18%–27%) without infiltration pits was lower than for conspecifics planted with infiltration pits. Dodonaea angustifolia was proved to be best adapted to the site and showed no need for water harvesting regardless of planting position across the degraded hillside. Planting of Acacia seyal should be restricted to gentler slopes (0–17%) with infiltration pits: tree height declined significantly on steep slopes without infiltration pits. Olea africana performed better on gentle slopes with pits but also grew well on steeper slopes with pits. Euclea schimperi was proved to be least effective of the species evaluated in this study.

Keywords

Infiltration pits / Kuriftu Lake catchment / water harvesting

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Wondwossen Gebretsadik. Evaluation of the adaptability and response of indigenous trees to assisted rehabilitation on the degraded hillsides of Kuriftu Lake Catchment (Debre Zeit, Ethiopia). Journal of Forestry Research, 2014, 25(1): 97-102 DOI:10.1007/s11676-013-0398-x

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References

[1]

Anschutz J, Kome A, Nederlof M, Neef R, Ton V. Water harvesting and soil moisture retention. Agrodok, 2003, 13: 10-13.

[2]

Blanko H, Rattan L. Principles of Soil Conservation and Management, 2008 (1st edition) 399 400

[3]

Birhanu Z, Matthew M, Bharat S, Abeyou W. Integrated rainwater management strategies in the Blue Nile Basin of the Ethiopian highlands. International Journal of Water Resources and Environmental Engineering, 2011, 3: 220-222.

[4]

Daniel D. Enclosing and protecting an area of degraded land from human use and animal interference to permit natural rehabilitation, enhanced by additional vegetative and structural conservation measures. Bulletin Ministry of Agriculture and Rural Development, 2003, 25: 3-5.

[5]

FAO. Soil and Water Conservation in Semi-arid areas. FAO Soils Bulletin, 1991, 57 166.

[6]

Hillel D. Environmental Soil Physics, 1998 (2nd edition) Cambridge: Cambridge University Press, 433.

[7]

Mesfin A. Nature and Management of Ethiopian Soils, 1998 (1st edition) Alemaya: Alemaya University of Agriculture, 43.

[8]

Singh G, Khan A, Kumar A, Bala N, Tomar K. Effects of rainwater harvesting and afforestation on soil properties and growth of Emblica officinalis while restoring degraded hills in western India. African Journal of Environmental Science and Technology, 2012, 6(8): 300-311.

[9]

SLMP. Land Management Technologies and Approaches in Ethiopia. Bulletin Ministry of Agriculture and Rural Development, 2010, 20: 23-25.

[10]

Tesfaye B. Plant Population dynamics of Dodonaea angustifolia and Olea europaea in Dry Afromontane Forests of Ethiopia. Uppsala University Dissertations, 2000, 559: 38-39.

[11]

Toumey W.1974. Foundations of Silviculture (1st edition). Oxford: Oxford University Press, pp. 225–227.

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