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首页> 外文期刊>Forest Ecology and Management >Edge effects and the responses of aerial insect assemblages to structural-retention harvesting in Canadian boreal peatland forests.
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Edge effects and the responses of aerial insect assemblages to structural-retention harvesting in Canadian boreal peatland forests.

机译:加拿大北方泥炭地森林的边缘效应和空中昆虫聚集对结构保留收获的响应。

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Clear-cut harvesting can alter ecosystem conditions and dynamics drastically compared to natural disturbance regimes, hence alternative harvesting systems are being developed in an attempt to better mimic natural forest structure. A recent approach is to harvest trees at variable intensities and spatial configurations in what is known as variable retention harvesting. Our study examines the responses of aerial insect assemblages to a gradient of forest retention at the landscape scale, and provides an assessment of the conservation benefits of alternative versus traditional harvesting systems in lowland boreal forest. The experimental design consisted of six treatments representing decreasing levels of structural retention at the landscape scale (with four replicates per treatment): (1) unharvested forest interior; (2) unharvested forest edge; (3) high-structural retention (strip retention harvesting areas at the edge of adjacent areas of unharvested forest); (4) medium-structural retention (strip retention harvesting areas in the interior of contiguous retention harvesting areas); (5) low-structural retention (strip retention harvesting areas adjacent to clear-cutted areas); (6) clear-cut harvesting. Response variables were the abundances of selected families and trophic assemblages of aerial insects, which were sampled with Malaise traps at each site. Univariate and multivariate analyses showed that the structural-retention harvesting influenced the abundance of most families and trophic assemblages. Most insect families and assemblages were most abundant in the strip retention harvested areas, especially in the medium retention treatment. These increases in abundance reflected strong edge effects, as evidenced by the fact that significant treatment effects were observed even within the two major habitat types of the study (cleared or forested habitat). Increasing structural retention favoured some assemblages such as Diapriidae, herbivores, and parasitoids whereas other groups such as predators decreased in abundance. Results support the potential use of high-level taxonomic and trophic assemblages of aerial insects in monitoring the ecological sustainability of forest harvesting practices.
机译:与自然干扰制度相比,明确的采伐方式可以大大改变生态系统条件和动态,因此正在开发替代采伐系统,以更好地模仿天然森林结构。最近的方法是在可变强度和空间配置下以所谓的可变保留采伐来采伐树木。我们的研究在景观尺度上考察了空中昆虫群落对森林滞留梯度的响应,并提供了对低地寒带森林替代采伐系统与传统采伐系统的保护效益的评估。实验设计由六种处理组成,这些处理代表着景观尺度上结构保留水平的降低(每个处理重复四次):(1)未砍伐的森林内部; (2)未采伐的森林边缘; (3)高结构性保留(未收获森林相邻区域边缘的条状保留收获区); (4)中型结构保留区(连续保留区内部的条状保留区); (5)低结构滞留(条状保留收获区与明挖区相邻); (6)明确收获。响应变量是选定昆虫的科的数量和营养组合,这些昆虫在每个位置都用马拉氏诱捕器采样。单因素和多因素分析表明,保留结构的收获影响了大多数家庭和营养组合的丰度。在条带保留收获区,尤其是在中等保留处理中,大多数昆虫科和组合最丰富。这些丰度的增加反映了强烈的边缘效应,这一事实证明,即使在该研究的两种主要生境类型(开垦或森林生境)中也观察到了显着的治疗效果。增加的结构保持力有利于某些组合,例如蛇蝎科,草食动物和寄生性寄生虫,而其他类群(例如掠食者)的数量减少。结果支持了空中昆虫的高级生物分类学和营养学组合在监测森林采伐方式的生态可持续性方面的潜在用途。

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