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The Fine root dynamics after stand-replacing fire and clearcutting in the boreal forest of central Canada

机译:加拿大中部寒带森林置换林木和伐木后细根动态

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摘要

In boreal forest ecosystems, stand age is a key driver of forest ecosystem productivity, carbon storage/sequestration, and other ecosystem functions. The age-related decline of aboveground productivity is well known in secondary forests after stand-replacing disturbances, however, how belowground root system changes with stand age is not well understood. Both fire and harvesting (mostly mechanical clearcutting) are also well known to be two main disturbances in boreal forests. These two disturbances are two distinct processes in terms of ecological effects, one is a natural disturbance, and the other is an anthropogenic one, resulting in different regeneration substrates, coarse woody debris structures, and understory vegetation communities. However, direct comparisons of belowground root dynamics between these two disturbance types within the same region are not common. In this present study, a boreal forest chronosequence in northern Ontario that spans over 200 years (3-, 1 0-, 29-, 94-, 142- and 205-year old for postfire stands and 3-, 1 0-, and 29-year old for post-clearcutting stands) was used to study how ecosystem functions such as the dynamics of fine roots (::S2 mm in diameter) vary with stand ages and disturbances.
机译:在北方森林生态系统中,林分年龄是森林生态系统生产力,碳储存/固存和其他生态系统功能的关键驱动力。在林分替换干扰后,次生林中与年龄相关的地上生产力下降是众所周知的,但是,地下根系如何随着林分年龄的变化而变化是众所周知的。众所周知,砍伐和采伐(主要是机械砍伐)是北方森林的两个主要干扰。就生态效应而言,这两种干扰是两个不同的过程,一个是自然干扰,另一个是人为干扰,导致不同的再生基质,粗糙的木屑结构和林下植被群落。但是,在同一区域内这两种干扰类型之间地下根动力学的直接比较并不常见。在本研究中,安大略省北部的寒带森林时间序列分布了200多年(3年,3年,1 0年,29年,94年,142​​年和205年以及3年,3年,1 0年和采伐后林分现年29岁)用于研究生态系统功能,例如细根的动态变化(直径:: S2 mm)随林分年龄和干扰而变化。

著录项

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    Yuan Zhiyou;

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  • 年度 2012
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