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首页> 外文期刊>The Journal of Applied Ecology >Response of habitat quality to mixed severity disturbance regime in Norway spruce forests
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Response of habitat quality to mixed severity disturbance regime in Norway spruce forests

机译:挪威云杉林生境质量对混合严重性干扰机制的响应

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Abstract Natural disturbances change forest habitat quality for many species. As the extent and intensity of natural disturbances may increase under climate change, it is unclear how this increase can affect habitat quality on different spatial scales. To support management tools and policies aiming to prevent habitat loss, we studied how habitat quality develops in the long run depending on the disturbance severity using a space‐for‐time substitution approach. We explored the effects of time since disturbance (0–250 years) and disturbance severity (20–100 canopy removal) on structure‐based habitat quality indicators in European primary Norway spruce Picea abies forests using 1000 m2 circular plots in hierarchical design (a total of 407 plots in 35 stands). Disturbance history was reconstructed from tree cores. Habitat quality indicators were modelled as a function of the severity of the most severe disturbance and the time since this disturbance. We hypothesised that high within‐stand habitat heterogeneity is formed by different successional stages after disturbances of various intensities. The results showed a U‐shaped response of habitat quality to post‐disturbance habitat succession on the plot scale. The decline deepened with disturbance severity. The U‐shape response occurred in: large tree occurrence, amount of standing and lying deadwood, diversity of understory and understory openness. The spatial diversity in disturbance parameters increased spatial diversity of habitat quality on a stand level as expected. This high within‐stand habitat heterogeneity also decreased with increasing age of the most recent disturbance. This suggests that the absence of young successional stages results in the absence of some important elements for biodiversity, for example sun‐exposed snags. Synthesis and applications. Our results demonstrate that currently intensifying natural disturbance regime can consequently result in a lower habitat heterogeneity. In managed spruce forests after natural disturbances, we recommend at least the partial retention of biological legacies to preserve habitat heterogeneity and to avoid uniform and dense plantations resulting in a greater homogenisation. To emulate the natural disturbances pattern, spruce forests should be managed with a wide range of harvested patches of the size limited by a local natural disturbance regime creating spatial heterogeneity.
机译:摘要 自然干扰改变了许多物种的森林生境质量。由于气候变化下自然干扰的程度和强度可能会增加,目前尚不清楚这种增加如何影响不同空间尺度上的生境质量。为了支持旨在防止栖息地丧失的管理工具和政策,我们使用空间换时间替代方法研究了栖息地质量如何根据干扰严重程度长期发展。本研究以1000 m2圆形样地(35个林分共407个样地)为研究对象,研究了干扰发生时间(0—250年)和干扰严重程度(20%–100%冠层去除率)对欧洲原产挪威云杉云杉林结构生境质量指标的影响。从树芯重建扰动历史。生境质量指标的建模是根据最严重干扰的严重程度和自干扰以来的时间进行的函数。我们假设林分内生境的高异质性是由不同强度的干扰后的不同演替阶段形成的。结果表明,生境质量在样地尺度上对扰动后生境演替呈U型响应。随着干扰的严重程度,下降程度加深。U型响应发生在:大树出现、站立和躺卧枯木数量、林下多样性和林下开放度。干扰参数的空间多样性增加了林分水平生境质量的空间多样性,符合预期。这种高林分内生境异质性也随着最近干扰年龄的增加而降低。这表明,缺乏年轻的演替阶段导致缺乏生物多样性的一些重要要素,例如暴露在阳光下的障碍物。合成与应用.我们的研究结果表明,目前加剧的自然干扰机制会导致较低的生境异质性。在自然干扰后的云杉林中,我们建议至少部分保留生物遗产,以保持栖息地的异质性,并避免均匀和密集的人工林,从而导致更大的同质化。为了模拟自然干扰模式,云杉林应使用各种采伐斑块进行管理,这些斑块的大小受当地自然干扰机制的限制,从而产生空间异质性。

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