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首页> 外文期刊>Land Degradation and Development >Herbivores stimulate respiration from labile and recalcitrant soil carbon pools in grasslands of Yellowstone National Park
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Herbivores stimulate respiration from labile and recalcitrant soil carbon pools in grasslands of Yellowstone National Park

机译:食草动物刺激黄石国家公园草原的不稳定和顽抗土壤碳库的呼吸

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Quantifying the effects of grazing on soil organic carbon (SOC) decomposition is of crucial importance for understanding soil C dynamics. However, less attention has been paid to the pool-specific SOC decomposition and the underlying factors associated with each C pool, representing critical knowledge gaps on soil C dynamics. In this study, we applied a state-of-the-art Bayesian data assimilation technique to re-analyze previous soil incubation data to examine how herbivores influenced the fraction and cumulative respiration of labile and recalcitrant soil C pools from seven edaphically diverse sites in Yellowstone National Park, whereas those variables were not explored in the earlier study. Our results showed that grazing significantly increased cumulative respiration from both labile and recalcitrant C pools. Greater cumulative respiration from the labile C pool was related to grazers increasing labile C pool fractions, while higher cumulative respiration from the recalcitrant C pool was associated with grazers accelerating the decomposition rate of the recalcitrant C pool. Cumulative respiration from both labile and recalcitrant C pools was positively correlated with shoot biomass, soil gravimetric moisture, and soil C and nitrogen content. Our results underscore how knowledge of pool-specific SOC decomposition can provide a better mechanistic understanding of soil C dynamics along topo-edaphic gradients in grazed grassland.
机译:量化放牧对土壤有机碳(SOC)分解的影响对于了解土壤C动态至关重要。然而,对池特定的SOC分解和与每个C池相关的潜在因素进行了不太关注,代表土壤C动力学的关键知识间隙。在这项研究中,我们应用了最先进的贝叶斯数据同化技术,以重新分析以前的土壤孵化数据,以检查草食病病毒如何影响黄石中七个养育区的不稳定和顽固土壤C池的分数和累积呼吸国家公园,而这些变量在早期的研究中没有探索。我们的研究结果表明,从不稳定和顽抗的C池中显着增加了累积呼吸。稳定的C池中的更大累积呼吸与加剧器增加了不稳定的C池级分相关,而核批变C池的累积呼吸较高与加速克拉普兰族C池的分解率的加剧器相关。双杠和顽抗C池的累积呼吸与芽生物质,土壤重量湿度和土壤C和氮含量正相关。我们的结果强调了池特定的SOC分解的知识如何能够沿着格拉泽草地的Topo-Taphic梯度对土壤C动态提供更好的机制理解。

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