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Basal area effects on a short-term nutrient status of litter fall and needle litter decomposition in a pinus densiflora stand

机译:基底面积对密松林凋落物脱落和针状凋落物分解短期养分状况的影响

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© 2016 The Ecological Society of Korea. All rights are reserved.This study was conducted to examine litter fall, litter decomposition, and a short-term nutrient (C, N, P, K, Ca, and Mg) status for one year at various levels of basal area (21.4, 27.0, 30.8, 37.0, 42.1, and 46.7 m2 ha-1) in approximately 40-year-old red pine (Pinus densiflora S. et Z.) stands in the Hwangmaesan mountain forest in Korea. Monthly fluxes of litter fall components such as needles, broad leaves, branches, bark and total litter fall followed a similar pattern at various levels of basal area. Mean annual needle, bark and total litter fall fluxes were positively correlated with increased basal area (p<0.05), but the woody litter such as branches and cones was not correlated with basal area. Carbon and K concentra­tions of needle litter were negatively correlated with increased basal area, while nutrient (C, N, P, K, Ca, and Mg) fluxes were positively correlated with the basal area treatments. Remaining mass, N and P concentration and remaining N and P stocks in decomposing needle litter were not affected by the basal area. However, the concentration and stocks remain­ing of K, Ca, and Mg from decomposing litter were positively correlated with increased basal area during the initial three months of decomposition. The results indicate that basal area has an impact on nutrient cycles through change in litter fall and litter decomposition processes; thus, the dynamics of nutrient cycles based on a stand scale could differ consider­ably with different levels of basal area in red pine stands.
机译:© 2016 韩国生态学会.保留所有权利。本研究以韩国黄前山林中约40年生的红松(Pinus densiflora S. et Z.)为基础,研究了凋落物掉落、凋落物分解和一年短期养分(C、N、P、K、Ca和Mg)状况。凋落物分量(如针叶、阔叶、树枝、树皮和总凋落物)的月流量在基底面积的各个层次上遵循类似的模式。年平均针叶、树皮和总凋落物落下通量与基部面积增加呈正相关(p<0.05),而枝果等木质凋落物与基部面积无相关性。针叶凋落物碳、钾浓度与基底面积增加呈负相关,而养分(C、N、P、K、Ca和Mg)通量与基底面积处理呈正相关。分解针状凋落物中剩余质量、N、P浓度及剩余N、P储备不受基底面积的影响。然而,在分解的最初3个月中,分解凋落物中K、Ca和Mg的浓度和剩余储量与基底面积的增加呈正相关。结果表明:基底面积通过凋落物落量变化和凋落物分解过程对养分循环产生影响;因此,基于林分尺度的养分循环动态在不同基面积水平下可能存在显著差异。

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