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全新世晚期北方森林野火对湖泊生物地球化学的恢复力。

Resilience of lake biogeochemistry to boreal-forest wildfires during the late Holocene.

机构信息

Department of Earth Sciences, Syracuse University, Syracuse, NY, USA.

Department of Plant Biology, University of Illinois, Urbana, IL, USA.

出版信息

Biol Lett. 2019 Aug 30;15(8):20190390. doi: 10.1098/rsbl.2019.0390. Epub 2019 Aug 28.

Abstract

Novel fire regimes are expected in many boreal regions, and it is unclear how biogeochemical cycles will respond. We leverage fire and vegetation records from a highly flammable ecoregion in Alaska and present new lake-sediment analyses to examine biogeochemical responses to fire over the past 5300 years. No significant difference exists in δC, %C, %N, C : N, or magnetic susceptibility between pre-fire, post-fire, and fire samples. However, δN is related to the timing relative to fire (χ = 19.73, p < 0.0001), with higher values for fire-decade samples (3.2 ± 0.3‰) than pre-fire (2.4 ± 0.2‰) and post-fire (2.2 ± 0.1‰) samples. Sediment δN increased gradually from 1.8 ± 0.6 to 3.2 ± 0.2‰ over the late Holocene, probably as a result of terrestrial-ecosystem development. Elevated δN in fire decades likely reflects enhanced terrestrial nitrification and/or deeper permafrost thaw depths immediately following fire. Similar δN values before and after fire decades suggest that N cycling in this lowland-boreal watershed was resilient to fire disturbance. However, this resilience may diminish as boreal ecosystems approach climate-driven thresholds of vegetation structure, permafrost thaw and fire.

摘要

在许多北方地区预计会出现新的火灾模式,而生物地球化学循环将如何做出反应尚不清楚。我们利用阿拉斯加一个高度易燃生态区的火灾和植被记录,并提出新的湖泊沉积物分析,以研究过去 5300 年来火灾对生物地球化学的响应。在火灾前、火灾后和火灾样本之间,δC、%C、%N、C:N 或磁化率没有显著差异。然而,δN 与相对于火灾的时间有关(χ=19.73,p<0.0001),火灾十年样本(3.2±0.3‰)的δN 值高于火灾前(2.4±0.2‰)和火灾后(2.2±0.1‰)样本。在全新世晚期,沉积物δN 逐渐从 1.8±0.6‰增加到 3.2±0.2‰,这可能是由于陆地生态系统的发展。火灾十年中较高的 δN 值可能反映了陆地硝化作用的增强和/或火灾后永久冻土融化深度的加深。火灾十年前后相似的 δN 值表明,在这个低地北方流域,N 循环对火灾干扰具有恢复力。然而,随着北方生态系统接近植被结构、永久冻土融化和火灾的气候驱动阈值,这种恢复力可能会减弱。

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