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Fine root biomass dynamics and carbon storage along a successional gradient in Changbai Mountains, China

机译:中国长白山精细根系生物量动态和碳储量沿演替梯度分布

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摘要

Fine root dynamics and net primary production were studied using the sequential soil coring method in an old-growth Korean pine (Pinus koraiensis Sieb.et Zucc.) mixed broadleaved forest, an 80-year-old stand of secondary birch (Betula platyphylla Suks.) in mixture with poplar (Populus davidiana Dode) and a 20-year-old stand of secondary birch and poplar in Changbai Mountains in Northeast China. The biomass and necromass of the fine roots in the 0- to 0.5-m soil layer were determined every month from May to October in three types of forest during 2002. The total and monthly production dynamics of the fine roots were calculated and analysed according to seasonal biomass changes along the successional gradient, as well as their carbon and nitrogen contents. The total production of the fine roots from the dominant tree species increased along the successional gradient, being 222.8, 569.1 and 672.3 g m−2 from the young forest through to the old-growth stage, respectively. As important soil carbon and nitrogen sources, the total carbon and nitrogen storages by fine root growth increased along forest succession in the Changbai Mountains.
机译:使用顺序土壤取心法研究了老生长的红松(Pinus koraiensis Sieb.et Zucc。)混合阔叶林,80年生的白桦林(Betula platyphylla Suks)的细根动力学和净初级生产力。 )与杨树(Populus davidiana Dode)混合,并在中国东北长白山有20年历史的次生桦木和杨树林。在2002年期间,从5月到10月,每月从5到10月每月测定0-0.5-m土层细根的生物量和坏死。计算并分析细根的总动态和月动态。季节性生物量沿演替梯度及其碳和氮含量变化。优势树种的细根总产量沿演替梯度增加,从幼林到成年阶段分别为222.8、569.1和672.3 g m −2 。作为重要的土壤碳和氮源,长白山森林演替过程中,细根生长引起的总碳和氮存储量增加。

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