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首页> 外文期刊>Forest Ecology and Management >Delayed tree mortality, bark beetle activity, and regeneration dynamics five years following the Wallow Fire, Arizona, USA: Assessing trajectories towards resiliency
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Delayed tree mortality, bark beetle activity, and regeneration dynamics five years following the Wallow Fire, Arizona, USA: Assessing trajectories towards resiliency

机译:延迟树死亡率,树皮甲虫活动和沃尔沃斯火灾五年后的再生动态:美国,亚利桑那州,美国:评估对弹性的轨迹

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摘要

Warm/dry mixed conifer forests have undergone changes in disturbance regimes, forest structure, species composition, and surface fuel accumulation which have led to increased susceptibility to large, uncharacteristically severe wildfires and pathogenic outbreaks. Ecosystems resilient to fire events return to a similar set of structures (e.g., forest and understory composition and density) or processes (e.g., fire, decomposition rates); however, when exposed to disturbances outside the evolutionary envelope, may transition to a different state (e.g., type conversion). We sampled warm/dry mixed conifer forest stands treated prior to the 2011 Wallow Fire and paired untreated sites five years following the fire. Our objective was to evaluate mid-term ecosystem resiliency in terms of forest structure, bark beetle activity, and tree regeneration. We hypothesized that treated units would have higher mid-term post-fire resiliency compared to untreated units. In 2016, average total tree density remained significantly lower in treated compared to paired untreated units; conifer density and BA decreased in both treated and untreated units. Diameter distributions in 2016 treated units remained similar to those observed in 2012 with the exception of increased density in the smallest diameter class. In untreated units, the majority of tree density reductions occurred in the 10-30 cm dbh classes. Post-fire tree mortality was stable across treated and untreated units, with no significant differences; however, abundant ingrowth of small hardwoods occurred throughout the study area. Large-tree density decreased by about 20% in both treated and untreated units between 2012 and 2016. Evidence of post-fire bark beetles was generally low and patchy throughout the study site; however, beetle activity was more widespread in untreated units. Twice as many trees were attacked by bark beetles in untreated versus treated units suggesting treatments may have reduced post-fire beetle activity. Following wildfire, observed conifer regeneration was lower and hardwood regeneration was higher with increasing burn severity; conifer regeneration was nearly three times higher in treated units. This study suggests that pre-fire fuel reduction treatments contribute less to mid-term resiliency than to short-term resiliency of forested ecosystems. We observed trends of higher resilience to insect outbreaks and potential implications for type change from conifer to deciduous forest. Furthermore, our study underscores the importance of understanding mid-term post-fire recovery, and while it provides insights regarding recovery of these ecosystems, additional monitoring and research is needed to fully understand the implications toward long-term resiliency.
机译:温暖/干混针叶林经历了干扰制度,森林结构,物种组成和表面燃料积累的变化,这导致了对大型,无论严重的野火和病原爆发的敏感性增加。生态系统抵御火灾事件返回到类似的一组结构(例如,森林和下层组合物和密度)或处理(例如,火,分解速率);然而,当暴露于进化外壳之外的扰动时,可以转变为不同的状态(例如,类型转换)。我们在2011年沃尔沃尔火灾前进行了湿/干混针叶树林立式,并在火灾后五年配对未经处理的位点。我们的目标是在森林结构,树皮甲虫活动和树再生方面评估中期生态系统弹性。与未处理的单位相比,我们假设处理的单位将具有更高的中期后振荡振荡。 2016年,与配对未处理的单位相比,治疗后平均树木密度显着降低;针叶树密度和BA在处理和未处理的单位中减少。 2016年的直径分布处理单位仍然与2012年观察到的单位相似,除了最小直径等级中的密度增加。在未处理的单位中,大部分树密度减少发生在10-30厘米的DBH类中。后火灾后树死亡率在治疗和未经处理的单位稳定,没有显着差异;然而,在整个研究区域内发生了丰富的小硬木的发起。 2012年和2016年间,在治疗和未处理的单位之间大约20%的大树密度减少了约20%。火药后吠虫的证据在整个研究现场均低于和拼凑;然而,甲虫活性在未处理的单位中更广泛。在未经治疗的与治疗单位中,树皮甲虫的两倍遭受攻击的两倍,提示治疗可能会降低火灾后甲虫活性。在野火之后,观察到的针叶树再生较低,并且硬木再生随着烧伤严重程度的增加而较高;针叶树再生在处理的单位中几乎是较高的三倍。本研究表明,火灾预燃料减少处理对中期弹性较低而不是森林生态系统的短期弹性。我们观察到对昆虫爆发的更高恢复力的趋势,以及从针叶树到落叶林的类型变化的潜在影响。此外,我们的研究强调了解中期火灾后恢复的重要性,而在它提供关于这些生态系统的恢复的见解,则需要额外的监测和研究来充分了解对长期弹性的影响。

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