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首页> 外文期刊>Soil Biology & Biochemistry >Use of a regression method to partition sources of ecosystem respiration in an alpine meadow
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Use of a regression method to partition sources of ecosystem respiration in an alpine meadow

机译:利用回归方法划分高寒草甸生态系统呼吸源的方法

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摘要

The partitioning of ecosystem respiration (ER) into plant respiration (PR), aboveground-part respiration (AGR), root respiration (RR), and microbial respiration (MR) components is crucial for understanding the responses of carbon cycling in terrestrial ecosystems to climate change. Here, we present the ER-PB/AGB regression method, which is a modification of the SR-BGB method (PB, plant biomass; AGB, aboveground biomass; SR, soil respiration; BGB, belowground biomass) and is based on the assumption of a linear relationship between biomass and respiration rate for the partitioning of ER into PR, AGR, RR, and MR. Diurnal measurements of CO2 flux and biomass analysis were conducted in three Kobresia (Kobresia pygmaea, Kobresia humilis, and Kobresia tibetica) meadows on the Qinghai-Tibetan Plateau. We found significant linear relationships between ER and PB/AGB in the three meadows. However, the relationships between measured SR and BGB were either not significant or lower than those between ER and PB/AGB. The relative contributions of respiration components (AGR, RR, MR) to ER decreased consistently in the order AGR > MR > RR in the three Kobresia meadows. The contributions of RR and MR to SR calculated by the proposed ER-PB/AGB method differed widely among the three meadows and were consistently higher (RR) and lower (MR) than those by the SR-BGB method in all three meadows. Compared with the SR-BGB technique, our ER-PB/AGB regression method proved capable of determining more accurately the temporal changes in a larger number of respiration components.
机译:将生态系统呼吸(ER)划分为植物呼吸(PR),地上部分呼吸(AGR),根部呼吸(RR)和微生物呼吸(MR)组件对于理解陆地生态系统中碳循环对气候的响应至关重要更改。在这里,我们介绍了ER-PB / AGB回归方法,它是对SR-BGB方法(PB,植物生物量; AGB,地上生物量; SR,土壤呼吸; BGB,地下生物量)的修改,并基于以下假设ER分为PR,AGR,RR和MR的生物量与呼吸速率之间的线性关系。在青藏高原的三个草地嵩草(矮嵩草,矮嵩草和西藏矮嵩草)草地上进行了CO2通量的昼夜测量和生物量分析。我们在这三个草甸中发现ER和PB / AGB之间存在显着的线性关系。但是,测得的SR与BGB之间的关系不显着或低于ER与PB / AGB之间的关系。在三个嵩草草甸中,呼吸成分(AGR,RR,MR)对ER的相对贡献一直以AGR> MR> RR的顺序不断降低。通过提出的ER-PB / AGB方法计算出的RR和MR对SR的贡献在三个草甸之间差异很大,并且在所有三个草甸中,始终比SR-BGB方法更高(RR)和更低(MR)。与SR-BGB技术相比,我们的ER-PB / AGB回归方法证明能够更准确地确定大量呼吸成分的时间变化。

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