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Vegetation change impacts on soil organic carbon chemical composition in subtropical forests

机译:植被变化对亚热带森林土壤有机碳化学成分的影响

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摘要

Changes in the chemical composition of soil organic carbon (SOC) might strongly affect the global carbon cycle as it controls the SOC decomposition rate. Vegetation change associated with long-term land use changes is known to strongly impact the chemical composition of SOC; however, data on the impacts of vegetation change following disturbance events of short durations and succession that occur frequently in forest ecosystems via diverse management objectives on SOC chemical composition are negligible. Here we examined the impacts of vegetation changes on the chemical composition of SOC by sampling soils of native broad-leaved forests, planted mixed broad-leaved and coniferous forests, and tea gardens in eastern China. We used nuclear magnetic resonance spectroscopy to quantify SOC chemical composition. We found that among all components of SOC chemical composition, alkyl carbon (C) and aryl C were more liable to change with vegetation than other SOC components. Soil pH was negatively correlated to the relative abundances of alkyl C and N-alkyl C, and Shannon’s index of overstory plant species was positively correlated to the relative abundances of phenolic C and aromaticity. Our results suggest that vegetation changes following short disturbance events and succession may strongly alter SOC chemical composition in forest ecosystems.
机译:土壤有机碳(SOC)化学成分的变化可能会严重影响全球碳循环,因为它控制了SOC的分解速率。已知与长期土地利用变化相关的植被变化会严重影响SOC的化学成分;然而,通过对SOC化学成分的不同管理目标,在森林生态系统中频繁发生的短时和连续干扰事件后植被变化的影响数据可忽略不计。在这里,我们通过取样天然阔叶林,种植的阔叶和针叶混交林以及中国东部茶园的土壤,研究了植被变化对SOC化学成分的影响。我们使用核磁共振波谱法来量化SOC化学成分。我们发现,在SOC化学组成的所有成分中,烷基碳(C)和芳基C比其他SOC成分更容易随植被变化。土壤pH值与烷基碳和N-烷基C的相对丰度呈负相关,而香农的过剩植物物种指数与酚类碳和芳香度的相对丰度呈正相关。我们的结果表明,短期干扰事件和演替后的植被变化可能会强烈改变森林生态系统中的SOC化学成分。

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