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落叶松-人参复合系统的植物多样性和碳储量特征 被引量:2
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作者 刘伟玮 刘某承 +2 位作者 李文华 曾凡顺 曲艺 《林业科学》 EI CAS CSCD 北大核心 2016年第9期124-132,共9页
【目的】本研究选取落叶松-人参复合系统,并与落叶松人工林及天然次生林进行比较,定量分析林下种植人参对生物多样性和碳汇功能这2种重要生态系统服务功能的影响。【方法】以落叶松-人参复合系统为对象,选择与其立地特征相似的落叶松人... 【目的】本研究选取落叶松-人参复合系统,并与落叶松人工林及天然次生林进行比较,定量分析林下种植人参对生物多样性和碳汇功能这2种重要生态系统服务功能的影响。【方法】以落叶松-人参复合系统为对象,选择与其立地特征相似的落叶松人工林和天然次生林2种林分作为对照,通过样地调查、采样和试验,对比分析3种林分类型的乔木和草本植物多样性,并对不同林分类型中的乔木、林下灌草、枯落物和木质物残体以及0-30 cm土壤的碳储量进行分析。【结果】落叶松-人参复合系统下,人参重要值达到0.33,具有明显优势;对于Shannon-Wiener多样性指数(H')、Margalef丰富度指数(R)和Pielou均匀度指数(E)3种植物多样性指数,乔木物种均表现为天然次生林〉落叶松-人参复合系统〉落叶松人工林,草本物种均表现为天然次生林〉落叶松人工林〉落叶松-人参复合系统;落叶松-人参复合系统草本植物的S,H'和R'值分别为16,1.91和1.83,均低于落叶松人工林下草本植物的17,2.1和2.04,但差异并不显著;而落叶松-人参复合系统的E值为0.87,显著低于落叶松人工林系统的0.91;对于不同林分类型的碳储量而言,32年生的落叶松近熟人工林平均碳储量为192.81 t·hm-2,略高于天然次生林碳储量(188.85 t·hm-2),2者均显著高于落叶松-人参复合系统(155.56 t·hm-2);3种林分类型不同层次碳储量均表现为土壤层〉乔木层〉枯落物和木质物残体层〉林下灌草层,且土壤层和乔木层碳储量之和均占到总碳储量的90%以上,此外,落叶松-人参复合系统的4个层次碳储量均显著低于落叶松人工林系统;对于不同林分类型,在0-30 cm土层随土壤深度增加,土壤碳储量逐渐降低。【结论】落叶松-人参复合经营对乔木植物多样性没有显著影响,但对草本植物多样性影响较大,同时其还会显著降低森林碳储量。因此,今后林参复合经营应注重深入研究,合理规划,正确引导,兼顾经济和生态效益,从而保障森林资源的可持续利用和林参复合经营的可持续发展。 展开更多
关键词 落叶松-人参复合系统 落叶松人工林 天然次生林 植物多样性 碳储量 辽东地区
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Leaf nutrient dynamics and nutrient resorption:a comparison between larch plantations and adjacent secondary forests in Northeast China 被引量:12
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作者 Tao Yan Xiaotao Lü +1 位作者 Kai Yang Jiaojun Zhu 《Journal of Plant Ecology》 SCIE 2016年第2期165-173,共9页
Aims Conversion of secondary forests to pure larch plantations is a common management practice driven by the increasing demand for timber production in Northeast China,resulting in a reduction in soil nutrient availab... Aims Conversion of secondary forests to pure larch plantations is a common management practice driven by the increasing demand for timber production in Northeast China,resulting in a reduction in soil nutrient availability after a certain number of years following conversion.Nutrient resorption prior to leaf senescence was related to soil fertility,an important nutrient conservation strategy for plants,being especially significant in nutrient-poor habitats.However,the seasonal dynamics of leaf nutrients and nutrient resorption in response to secondary forest conversion to larch plantations is not well understood.Methods A comparative experiment between larch plantations(Larix spp.)and adjacent secondary forests(dominant tree species including Quercus mongolica,Acer mono,Juglans mandshurica and Fraxinus rhynchophylla)was conducted.We examined the variations in leaf nutrient(macronutrients:N,P,K,Ca and Mg;micronutrients:Cu and Zn)concentrations of these tree species during the growing season from May to October in 2013.Nutrient resorption efficiency and proficiency were compared between Larix spp.and the broadleaved species in the secondary forests.Important Findings Results show that the seasonal variation of nutrient concentrations in leaves generally exhibited two trends,one was a downward trend for N,P,K,Cu and Zn,and another was an upward trend for Ca and Mg.The variations in foliar nutrient concentrations were mainly controlled by the developmental stage of leaves rather than by tree species.Resorption of the observed seven elements varied among the five tree species during leaf senescence.Nutrient resorption efficiency varied 6–75%of N,P,K,Mg,Cu and Zn,while Ca was not retranslocated in the senescing leaves of all species,and Mg was not retranslocated in Larix spp.Generally,Larix spp.tended to be more efficient and proficient(higher than 6–30%and 2–271%of nutrient resorption efficiency and resorption proficiency,respectively)in resorbing nutrients than the broadleaved species in the secondary forests,indicating that larch plantations had higher leaf nutrient resorption and thus nutrient use efficiency.Compared with Larix spp.,more nutrients would remain in the leaf litter of the secondary forests,indicating an advantage of secondary forests in sustaining soil fertility.In contrast,the larch plantation would reuse internal nutrients rather than lose nutrients with litter fall and thus produce a positive feedback to soil nutrient availability.In summary,our results suggest that conversion from secondary forests to pure larch plantations would alter nutrient cycling through a plantmediated pathway. 展开更多
关键词 seasonal variation nutrient resorption efficiency soil nutrient availability natural secondary forest larix spp.
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