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Building Tools to Reconstruct Forest Disturbances

Building Tools to Reconstruct Forest Disturbances
构建重建森林扰动的工具
批准号:
RGPIN-2022-05423
负责人:
MontoroGirona, Miguel
金额:
$3.56万
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2022
资助国家:
加拿大
项目状态:
已结题
起止时间:
2022-01-01 至 2023-12-31

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中文摘要
翻译
气候变化是森林生态系统面临的最大挑战。自然干扰的频率和严重程度,如野火、昆虫爆发和狂风,将随着气候变暖而增加。因此,了解森林如何对过去的干扰作出反应,以预测它们将如何对未来的条件作出反应,是至关重要的。古生态学和树木生态学方法是重建森林动态、干扰机制和生物-非生物相互作用的主要工具。迄今为止,树木生态学和古生态学的研究主要集中在野火上,而其他干扰(例如,千年尺度上的昆虫爆发和历史上的采伐)往往被忽视,尽管它们被认为是森林结构和动态的主要驱动因素。这种知识差距源于缺乏可靠的代理或方法方法来重建其过去的发生和严重程度。我的研究的长期目标是提高我们在多个时空尺度上对森林干扰制度的理解。这个为期5年的项目旨在利用新的树木生态学和古生态学方法重建温带-北方森林界面的自然(昆虫爆发及其与野火的相互作用)和人为(采伐)干扰制度。具体目标是:(1)利用回收的原木驱动样本重建过去300至400年间昆虫爆发及其与火灾制度的相互作用;(2)利用亚化石样本和历史档案,重建历史采伐时采用的采伐标准(种、龄、径),并确定其对工业化前森林的影响;(3)利用鳞翅目鳞片重建千年昆虫暴发史。实现这些目标依赖于三种方法。(i)我将恢复在历史伐木过程中砍伐的亚化石树木,以重建过去的虫害爆发、火灾制度和历史收成。我将使用树木生态学来研究保存在选定的北方湖泊缺氧带的亚化石原木。(ii)通过识别所收集的日志驱动器样本上的历史伐木公司的标志类型,并结合使用历史档案,我将参考过去的森林采伐模式。(iii)我将运用我最近测试过的新颖的古生物指标鳞翅目鳞片,对加拿大东部森林中的两种主要鳞翅目剥叶动物(云杉budworm和森林帐篷毛虫)进行千年尺度的重建。该项目将极大地促进森林扰动的重建,这对于提供气候变化下未来森林生态系统对扰动响应的更现实预测至关重要。
英文摘要
Climate change is the greatest challenge facing forest ecosystems. The frequency and the severity of natural disturbances, such as wildfire, insect outbreaks, and windthrow, will increase with warming. Therefore, it is essential to understand how forests have responded to past disturbances to predict how they will react to future conditions. Paleoecological and dendroecological approaches are the main tools for reconstructing forest dynamics, disturbance regimes, and biotic-abiotic interactions. To date, dendroecological and paleoecological research has focused mainly on wildfires, whereas other disturbances have often been neglected (e.g., insect outbreaks at the millennial scale and historical harvesting) despite being known as major drivers of forest structure and dynamics. This knowledge gap stems from the absence of reliable proxies or methodological approaches for reconstructing their past occurrence and severity. The long-term objective of my research is to improve our understanding of forest disturbance regimes at multiple temporal and spatial scales. This 5-year program aims to reconstruct the natural (insect outbreaks and their interaction with wildfires) and anthropogenic (harvesting) disturbance regimes in the temperate-boreal forest interface using novel dendroecological and paleoecological methods. The specific objectives are to (1) reconstruct insect outbreaks and their interactions with fire regimes over the last 300 to 400 years using recovered log-drive samples; (2) reconstruct, using subfossil samples and historical archives, the harvest criteria (species, age, diameter) applied during historical harvests and determine their impact on the pre-industrial forest; and (3) reconstruct the millennial history of insect outbreaks using lepidopteran scales. Attaining these objectives relies on three approaches. (i) I will recover subfossil trees felled during historical log drives to reconstruct past insect outbreaks, fire regimes, and historical harvests. I will use dendroecology to study subfossil logs preserved in the anoxic zone of selected boreal lakes. (ii) By identifying the logotypes of historical logging companies on the collected log-drive samples combined with the use of historical archives, I will georeference past forest harvesting patterns. (iii) I will apply my novel and recently tested paleoindicator, lepidopteran scales, to produce a millennial-scale reconstruction of the two main lepidopteran defoliator species in eastern Canadian forests (spruce budworm and the forest tent caterpillar). This program will significantly advance the reconstruction of forest disturbances that is essential to provide a more realistic projection of future forest ecosystem response to disturbance under climate change.
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