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Short-Term Response of Sasa Dwarf Bamboo to a Change of Soil Nitrogen Fertility in a Forest Ecosystem in Northern Hokkaido Japan

机译:北海道北部森林生态系统中沙撒矮竹对土壤氮肥变化的短期响应

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摘要

In forest ecosystems, a change of soil nitrogen (N) cycling after disturbance is regulated by various factors. Sasa dwarf bamboo (hereafter referred to as Sasa) is an understory plant that grows thickly on the forest floor in northern Hokkaido, Japan. However, the ecosystem function of Sasa after disturbances in the soil N cycling is not fully understood. The purpose of this study was to determine the short-term response of Sasa to a change of soil N fertility. Biomass, litterfall, litter decomposition, soil N pool, and N leaching from soil were measured in control, and low- (5 g N m−2 year−1) and high-N (15 g N m−2 year−1) addition plots. Sasa immobilized much N as the soil N fertility increased. However, the leaf N concentration in aboveground biomass did not increase, suggesting that the N in leaves was maintained because of the increase of leaf biomass. As a result, the decomposition and mineralization rates of the produced litter before and after N addition were comparable among plots, even though the soil inorganic N fertility increased greatly. These results suggest that immediate response of Sasa to an increase of soil inorganic N mitigates the excess N leaching from soil.
机译:在森林生态系统中,扰动后土壤氮(N)循环的变化受多种因素调节。佐佐木矮竹(以下简称佐佐木)是一种林下植物,生长在日本北海道北部的森林地面上。但是,对土壤氮循环扰动后沙撒的生态系统功能尚不完全了解。这项研究的目的是确定Sasa对土壤氮肥变化的短期反应。在对照和低-(5 g N m -2 -1 )和土壤中测量了生物量,凋落物,凋落物分解,土壤氮库和土壤中的氮淋溶。高N(15 g N m −2 year -1 )添加图。随着土壤氮肥的增加,Sasa固定了很多N。然而,地上生物量中叶片氮的含量并未增加,这表明叶片中氮的保持是由于叶片生物量的增加。结果,即使土壤中的无机氮肥力大大提高,在各地块中添加氮前后,所产垃圾的分解和矿化速率也相当。这些结果表明,Sasa对土壤无机氮增加的立即反应减轻了土壤中过量的氮淋失。

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