首页> 外文期刊>Journal of Water Resources and Ocean Science >Effects of Integrated Soil and Water Conservation Practices on Woody Species Diversity, Structure and Regeneration in Southern Ethiopia
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Effects of Integrated Soil and Water Conservation Practices on Woody Species Diversity, Structure and Regeneration in Southern Ethiopia

机译:综合土壤和水资源施法对埃塞俄比亚南部木质物种多样性,结构和再生的影响

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Land degradation in the form of soil erosion is one of the most serious problems in the worldwide. Physical and biological soil and water conservation measures implemented by various land rehabilitation program is the best option to address this problem. This study was conducted to evaluate the effect of integrated soil and water conservation (SWC) practices on Woody Species Diversity, Structure and Regeneration in Southern Ethiopia. A total of 60 plots (3 land use~*4 transect~*5 quadrants), measuring 20 m~*20 m each, were established along transect line laid for woody vegetation data collection. Woody species diversity in the study sites were determined using the Shannon (H') and Simpson diversity index through the analysis of species richness and evenness of species. A total of 28 woody species, belonging to 15 families were identified. The diversity, richness, density and basal area of woody species were significantly higher in closure area with SWC (p0.05) compared to the value in closure area without SWC and open grazing land. The inverted 'J' shaped distribution of height and DBH exhibited in closure area with SWC, which has more potential to enhance vegetation regeneration. The findings generally confirmed that area closure with SWC practices was highly improved woody species diversity, structure and regeneration status. Accordingly, to improve the biophysical conditions of degraded hillside areas implementing of area closure with integrated SWC practices is a best option.
机译:土壤侵蚀形式的土地退化是世界上最严重的问题之一。各种土地康复计划实施的物理和生物水土保持措施是解决这一问题的最佳选择。本研究进行了评价欧洲南部南部木质物种多样性,结构和再生的综合水土保持(SWC)实践的影响。共有60个地块(3个土地使用〜* 4横断〜* 5象限),沿着木质植被数据收集的横向线建立了20米〜* 20米。在研究网站中的木质物种多样性使用Shannon(H')和SIMPSON多样性指数通过分析物种丰富性和物种的均匀度来确定。鉴定了总共28种木质物种,属于15个家庭。与没有SWC的闭合区域的价值相比,封闭区域的多样性,丰富度,密度和基础面积显着高于闭合区域(P <0.05)。倒置的“j”形状的高度和dbh的分布在封闭区域中展出,具有SWC,其具有提高植被再生的潜力。调查结果通常证实,使用SWC实践的区域闭合高度改善木质物种多样性,结构和再生状态。因此,为了改善利用集成SWC实践的区域闭合的降级山坡区域的生物物理条件是最好的选择。

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