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凋落物、凋落物分解和土壤的碳氮状况在同龄落叶松、红松和火炬松人工林。

Carbon and nitrogen status of litterfall, litter decomposition and soil in even-aged larch, red pine and rigitaeda pine plantations.

机构信息

Department of Forest Resources, Jinju National University, 150 Chilarmdong, Jinju, 660-758, Korea.

出版信息

J Plant Res. 2010 Jul;123(4):403-9. doi: 10.1007/s10265-010-0317-6. Epub 2010 Mar 2.

Abstract

The carbon (C) and nitrogen (N) status in forest ecosystems can change upon establishment of plantations because different tree species have different nutrient cycling mechanisms. This study was carried out to evaluate C and N status of litterfall, litter decomposition and soil in three adjacent plantations consisting of one deciduous (larch: Larix leptolepis) and two evergreen (red pine: Pinus densiflora; rigitaeda pine: P. rigida x P. taeda) species planted in the same year (1963). Both the pine plantations showed comparatively higher C input from needle litter but significantly lower N concentration and input than the larch plantation (P < 0.05). During the decomposition process, the deciduous larch needle litter showed low C concentration and C remaining in soil, but high N concentration and N remaining in soil compared to the two evergreen pine needle litters. However, the soil C and N concentration and their content at a soil depth of 0-10 cm were not affected significantly (P > 0.05) by the plantation type. These results demonstrate the existence of considerable variation in C and N status resulting from needle litter input and litter decomposition in these three plantations grown at sites with similar environmental conditions.

摘要

森林生态系统中的碳(C)和氮(N)状况在人工林建立后可能会发生变化,因为不同的树种具有不同的养分循环机制。本研究旨在评估三种相邻人工林(落叶松:Larix leptolepis 和两种常绿树种:红松:Pinus densiflora 和火炬松:Pinus rigida x P. taeda)中凋落物、凋落物分解和土壤的 C 和 N 状况,这些人工林均于同年(1963 年)种植。与落叶松人工林相比,两种松树林的针叶凋落物具有相对较高的 C 输入量,但 N 浓度和输入量明显较低(P < 0.05)。在分解过程中,与两种常绿松针凋落物相比,落叶松的凋落物具有较低的 C 浓度和 C 在土壤中的残留量,但具有较高的 N 浓度和 N 在土壤中的残留量。然而,在 0-10cm 土壤深度处,土壤 C 和 N 浓度及其含量不受人工林类型的显著影响(P > 0.05)。这些结果表明,在环境条件相似的地点生长的这三种人工林中,由于针叶凋落物输入和凋落物分解,存在相当大的 C 和 N 状况变化。

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