大型化石
泥炭
黑云杉
泥炭藓
全新世
地质学
北方的
泰加语
自然地理学
植被(病理学)
环境科学
地理
海洋学
林业
考古
古生物学
病理
医学
作者
Éloïse Le Stum-Boivin,Gabriel Magnan,Michelle Garneau,Nicole J. Fenton,Pierre Grondin,Yves Bergeron
出处
期刊:Quaternary Research
[Cambridge University Press]
日期:2019-01-07
卷期号:91 (2): 650-664
被引量:21
摘要
Abstract Paludification is the most common process of peatland formation in boreal regions. In this study, we investigated the autogenic (e.g., topography) and allogenic (fire and climate) factors triggering paludification in different geomorphological contexts (glaciolacustrine silty-clayey and fluvioglacial deposits) within the Québec black spruce (Picea mariana)–moss boreal forest. Paleoecological analyses were conducted along three toposequences varying from a forest on mineral soil to forested and semi-open peatlands. Plant macrofossil and charcoal analyses were performed on basal peat sections (≤50 cm) and thick forest humus (<40 cm) to reconstruct local vegetation dynamics and fire history involved in the paludification process. Results show that primary paludification started in small topographic depressions after land emergence ca. 8000 cal yr BP within rich fens. Lateral peatland expansion and secondary paludification into adjacent forests occurred between ca. 5100 and 2300 cal yr BP and resulted from low-severity fires during a climatic deterioration. Fires that reduced or eliminated entirely the organic layer promoted the establishment ofSphagnumin microdepressions. Paludification resulted in the decline of some coniferous species such asAbies balsameaandPinus banksiana. The paleoecological approach along toposequences allowed us to understand the spatiotemporal dynamics of paludification and its impacts on the vegetation dynamics over the Holocene.
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