首页> 外文期刊>Forest Ecology and Management >Regeneration changes in tree species abundance, diversity and structure in logged and unlogged subtropical rainforest over a 36-year period
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Regeneration changes in tree species abundance, diversity and structure in logged and unlogged subtropical rainforest over a 36-year period

机译:在36年的时间里,已砍伐和未砍伐的亚热带雨林树木物种丰富度,多样性和结构的更新变化

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摘要

The long-term effects of logging treatments on rainforest regeneration are difficult to quantify due to compounding interactions with natural dynamics, site characteristics and tree species. The aim of this study was to examine regeneration differences over a 36-year period in stands subjected to various levels of disturbance ranging from natural, through an increasing intensity of individual tree removal to intensive logging. Multivariate and univariate analyses of trees >=10cm diameter at 1.3m above the ground (dbh) showed that regeneration responses were generally correlated with disturbance gradient. In the undisturbed controls there were gradual changes that had no significant effects on tree species richness and diversity, stem density, or diameter distribution. Gradual changes were also observed during the early stages of regeneration following logging. However, in logged sites changes in tree species richness and diversity, stem density and diameter distribution became more rapid with time, and significant changes were observed. Similar regeneration events across site and disturbance levels resulted in three identifiable stages. In the first stage, lasting about 10 years, stem density of abundant shade tolerant trees decreased with no discernable changes in tree species richness. In the second stage, also lasting about 10 years, tree species richness and diversity, as well as stem density decreased to minima due to localised species turnover and net mortality. In the third stage, recruitment surpassed mortality and reversed the net loss of both species and stems, as tree species assemblages began to return to pre-disturbance levels. Sites subjected to individual tree selective logging returned to their pre-logging states in all aspects within 35 years of logging, but diameter distribution of trees >=40cmdbh showed low density compared to that observed in the controls. After 15-30 years, sites subjected to more intensive logging returned to their pre-logging levels of stem densities, species abundance and richness, but after 35-44 years of regeneration this sites had low species diversity and high densities of both the small sized stems and shade intolerant tree species. More intensively logged sites also had a low density of shade tolerant tree species compared to the controls. This suggests that the restoration of forest structure takes considerably longer than the restoration of tree species richness and abundance following logging in these forests. A high rate of stand basal area growth and a modest diameter distribution of lager trees >=40cmdbh were observed in moderate tree selection logging. This indicates high timber production potential at moderate tree selection rate in this type of forest. However, if the stem size distribution of larger trees is to be maintained, a logging cycle longer than 50 years is necessary.
机译:由于与自然动力,场地特征和树木种类的复合相互作用,伐木处理对雨林再生的长期影响难以量化。这项研究的目的是研究在受自然干扰,从逐渐增加的个体采伐强度到密集采伐的各种干扰水平下,林木在36年内的再生差异。在离地面1.3m(dbh)处直径大于等于10cm的树木的多变量和单变量分析表明,再生响应通常与扰动梯度相关。在不受干扰的对照中,有逐渐变化,但对树种的丰富度和多样性,茎密度或直径分布没有明显影响。在采伐后的再生早期也观察到了逐渐变化。然而,在伐木场,树木物种丰富度和多样性的变化,茎的密度和直径的分布随时间而变快,并且观察到显着的变化。跨站点和扰动级别的相似再生事件导致三个可识别阶段。在第一阶段(持续约10年),大量耐荫树的茎密度下降,树木物种丰富度没有明显变化。在第二阶段(也持续约10年),由于局部物种更新和净死亡率,树木物种的丰富性和多样性以及茎密度降至最低。在第三阶段,随着树种组合开始恢复到干扰前的水平,募集超过了死亡率并扭转了物种和茎干的净损失。在进行伐木的35年内,进行个别树木选择性伐木的站点在所有方面都恢复到其伐木前状态,但是与对照中观察到的相比,> = 40cmdbh的树木的直径分布显示出较低的密度。 15至30年后,进行更密集采伐的地点恢复到其伐木前的茎密度,物种丰富度和丰富度水平,但经过35至44年的再生,该地点的物种多样性较低,且小规模的密度都很高茎和不耐荫的树种。与对照相比,密集采伐的地点的耐荫树种密度也较低。这表明,恢复森林结构所花的时间要比砍伐这些森林后树木物种的丰富度和丰度要长得多。在适度的树木选择伐木中,观察到较高的林分基础面积生长速率和大于40cmdbh的较大林木直径分布。这表明在这种类型的森林中,以适中的树木选择率,木材生产潜力很大。但是,如果要保持大树的茎大小分布,则伐木周期必须超过50年。

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