Tamiru Lemi, Solomon Guday, Yosef Fantaye, A. Eshete, N. Hassen
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To prioritize conservation efforts, the study utilized factors such as the importance value index, seedling and sapling densities, and population structure. A total of 42 woody tree species representing 30 families were recorded in the forest. The diversity and evenness of woody species in the Dindin forest were 2.66 and 0.70, respectively. Woody species density was 1403 individual ha−1, and the total basal area was 35.54 m2ha−1. About 480 seedlings per hectare were recorded in the Dindin forest. The research yielded practical insights into the dominance, population structure, importance value, and regeneration status of tree species. The analysis of population structure indicates that certain dominant species are experiencing inadequate regeneration. In addition, multiple nondominant shrubs and tree species within the forest are also at risk of extinction due to insufficient regeneration. 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引用次数: 0
摘要
关于物种组成、结构和多样性的信息对于介绍和选择不同的管理活动以提高森林生产力至关重要。因此,对丁丁天然林中树木的物种组成、结构、多样性和再生状况进行了评估。在该森林中,具有≥2.5 胸围和身高>1.5时直径为cm 在20个象限中的35个象限中识别并测量了m m × 20 m.再生状态在5中进行评估 m × 5. m个子地块,放置在每个主地块内,对幼苗和幼树进行取样。计算了木本物种多样性、密度、基底面积和重要值指数。为了优先考虑保护工作,该研究利用了重要性值指数、幼苗和树苗密度以及种群结构等因素。森林中共记录了代表30个科的42种木本树种。丁丁林木本物种多样性和均匀度分别为2.66和0.70。木本物种密度为1403个ha−1,总基底面积为35.54 m2ha−1。丁丁森林每公顷约有480株幼苗。这项研究对树种的优势地位、种群结构、重要价值和再生状况产生了实际的见解。种群结构分析表明,某些优势种的再生不足。此外,由于再生不足,森林中的多种非优势灌木和树种也面临灭绝的风险。因此,这些重要发现在制定和实施恢复和恢复所研究森林的有效战略方面发挥着至关重要的作用。
Woody Species Composition, Structure, and Diversity of Dindin Natural Forest, South East of Ethiopia
Information on species composition, structure, and diversity is essential to introduce and select different management activities to improve the forest productivity. Accordingly, species composition, structure, diversity, and regeneration status of trees were assessed in the Dindin natural forest. In this forest, trees or shrubs having ≥2.5 cm diameter at breast height and height >1.5 m were identified and measured in 35 quadrats of 20 m × 20 m. Regeneration status was assessed in 5 m × 5 m subplots that were laid within each main plot to sample seedling and sapling. Woody species diversity, density, basal area, and importance value index were calculated. To prioritize conservation efforts, the study utilized factors such as the importance value index, seedling and sapling densities, and population structure. A total of 42 woody tree species representing 30 families were recorded in the forest. The diversity and evenness of woody species in the Dindin forest were 2.66 and 0.70, respectively. Woody species density was 1403 individual ha−1, and the total basal area was 35.54 m2ha−1. About 480 seedlings per hectare were recorded in the Dindin forest. The research yielded practical insights into the dominance, population structure, importance value, and regeneration status of tree species. The analysis of population structure indicates that certain dominant species are experiencing inadequate regeneration. In addition, multiple nondominant shrubs and tree species within the forest are also at risk of extinction due to insufficient regeneration. Therefore, these important findings play a crucial role in the formulation and implementation of effective strategies to restore and rehabilitate the studied forest.
期刊介绍:
International Journal of Forestry Research is a peer-reviewed, Open Access journal that publishes original research and review articles focusing on the management and conservation of trees or forests. The journal will consider articles looking at areas such as tree biodiversity, sustainability, and habitat protection, as well as social and economic aspects of forestry. Other topics covered include landscape protection, productive capacity, and forest health.