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首页> 外文期刊>Applied Ecology and Environmental Research >Community composition and tree population structure in undisturbed and disturbed tropical semi-evergreen forest stands of North-East India
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Community composition and tree population structure in undisturbed and disturbed tropical semi-evergreen forest stands of North-East India

机译:印度东北部未受干扰和受干扰的热带半常绿林分群落的组成和树木种群结构

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Species composition, density, importance value index, diversity, dominance and tree population structure were studied in disturbed and undisturbed stands of tropical semi-evergreen forest in Lunglei District of Mizoram, North-East India.Total number of species in the undisturbed stand was 67 while in the disturbed stand 63 species were recorded. Number of tree and shrub species in the undisturbed stand were higher (32 and 18) than the disturbed stand (17 and 16). However, the number of herbaceous species remained higher in the disturbed stand (30) compared to the undisturbed stand (17). Castanopsis tribuloides (Smith) was common in both stands, and showed dominance in the undisturbed stand with a density of 90 individuals' ha-1. However Schima wallichii (DC.) Korth Choicy was dominant in the disturbed stand with a density of 125 individuals' ha-1. In both stands higher dbh classes showed lower density than that of the lower and intermediate girth classes. In general, the undisturbed forest stand showed more density of trees in each dbh classes and the intermediate girth class in particular. The study reveals that the anthropogenic disturbance causes disruption of forest structure and changes community composition which ultimately leads to disruption of tree population structure
机译:在印度东北部米佐拉姆邦伦雷区热带半常绿林的受干扰和未受干扰的林分中研究了物种组成,密度,重要价值指数,多样性,优势度和树木种群结构,未受干扰的林分中的物种总数为67而在受干扰的林地中,记录到63种。在未受干扰的林分中,树木和灌木的数量(32和18)比受干扰的林分(17和16)高。然而,与未受干扰的林分(17)相比,受干扰林分(30)中的草本物种数量仍然较高。栗三倍体(Smith)在这两个林分中都很常见,并且在不受干扰的林分中表现出优势,密度为90个个体的ha-1。然而,Schima wallichii(DC。)Korth Choicy在受干扰的林分中占主导地位,密度为125个个体的ha-1。在两个林分中,较高的dbh等级显示的密度均低于较低和中等的周长等级。通常,未扰动的林分在每个dbh类中,尤其是在中间围带类中,都显示出更高的树木密度。研究表明,人为干扰导致森林结构破坏并改变群落组成,最终导致树木种群结构破坏。

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