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Natural regeneration dynamics of three dry deciduous forest species in Chacocente Wildlife Reserve, Nicaragua

机译:尼加拉瓜Chacocente野生动物保护区的三种干燥落叶林物种的自然更新动态

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摘要

A study was conducted to examine the natural regeneration of three dry forest species, Lysiloma divaricatum (Jacq.), Tabebuia ochracea (Cham.) and Lonchocarpus minimiflorus (Donn. Sm.) over a three-year period and to analyze heterogeneity of regeneration in relationship to topographic slope and incidence of light in Chacocente Wildlife Reserve in Nicaragua. Permanent sample plots were established in 2001, and all individuals with height as low as 10 cm and diameter as large as 10 cm were recorded for three consecutive years from 2001 to 2003. The results show that the density of naturally regenerated individuals varied significantly among species, as well as over time. L. minimiflorus and T. ochracea had higher densities compared with L. divaricatum, and the net change in population density was slightly positive for T. ochracea only. Regeneration was more abundant in the gentle and steep slopes under partial exposure of the crown to sunlight, thus resulting in aggregated pattern of distribution, especially for L. minimiflorus and T. ochracea. We concluded that natural regeneration alone is not sufficient to maintain the desired number of stocks of these species, and an immediate restoration measure should be taken to assist the natural regeneration process.
机译:进行了一项研究,以研究三年内三种干燥森林物种(Lysiloma divaricatum(Jacq。),Tabebuia ochracea(Cham。)和Lonchocarpus minimiflorus(Donn。Sm。))的自然再生,并分析了再生的异质性。尼加拉瓜Chacocente野生动物保护区与地形坡度和光的入射率的关系。永久样本区建立于2001年,从2001年到2003年连续三年记录了所有高度低至10 cm,直径大至10 cm的个体。结果表明,自然再生个体的密度在物种之间差异很大,以及随着时间的推移。相比于L. divaricatum,小花L. and ochracea的密度更高,并且种群密度的净变化仅对木略有正向。在树冠部分暴露于阳光下,在平缓和陡峭的斜坡上,再生更为丰富,因此导致聚集的分布模式,特别是对于小米L. mimiflorus和T木T. ochracea。我们得出的结论是,仅自然再生不足以维持这些物种所需的种群数量,因此应立即采取恢复措施以协助自然再生过程。

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  • 来源
    《林业研究(英文版)》 |2009年第1期|1-6|共6页
  • 作者单位

    Facultad de Recursos Naturales y del Ambiente, Universidad Nacional Agraria, Apartado posta 453, Managua, Nicaragua;

    Swedish University of Agricultural Sciences, Faculty of Forest Sciences, Department of Forest Genetics and Plant Physiology, Tropical Silviculture and Seed Laboratory, SE-901 83, Umea, Sweden;

    Facultad de Recursos Naturales y del Ambiente, Universidad Nacional Agraria, Apartado posta 453, Managua, Nicaragua;

    Swedish University of Agricultural Sciences, Faculty of Forest Sciences, Department of Forest Genetics and Plant Physiology, Tropical Silviculture and Seed Laboratory, SE-901 83, Umea, Sweden;

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  • 原文格式 PDF
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