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首页> 外文期刊>Soil Biology & Biochemistry >Warming increases microbial residue contribution to soil organic carbon in an alpine meadow
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Warming increases microbial residue contribution to soil organic carbon in an alpine meadow

机译:变暖将微生物残留对Alpine Meadow的土壤有机碳贡献增加

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摘要

The contribution of microbial residues to soil organic carbon (SOC) is a process highly influenced by soil properties. We evaluated the presence of microbial amino sugar residues in soil (0-50 cm) of control and warmed plots in an alpine meadow on the Qinghai-Tibet Plateau. Alpine grasslands in the Qinghai-Tibet Plateau store large amounts of soil C and are highly vulnerable to climate change. Results showed that warming significantly increased total microbial residues across the 0-50 cm soil depth. The proportion of microbial-derived C to SOC significantly increased in warmed plots (52% on average) by soil depth compared to the control (38%). Higher microbial turnover and selective preservation into organo-mineral complexes likely explains the observed result. Given insignificant change in total SOC, our results infer an alteration of the SOC source configuration (microbial-derived vs. plant-derived). The observed greater magnitude of warming effects on fungal residues compared to bacterial illustrate a distinct community response to warming. We conclude that warming has the potential to influence soil C sequestration through increased microbial residue inputs, consequently altering its composition and source configuration. Our work provides valuable insights at the molecular level to identify mechanisms of microbial-mediated C processes that are influenced by climate change in high elevation ecosystems.
机译:微生物残留对土壤有机碳(SoC)的贡献是土壤性质受到高度影响的过程。我们在青藏高原上的高山草地上评价了土壤(0-50厘米)对照和温暖地块中的微生物氨基糖残基的存在。青藏高原储存大量土壤C的高山草原,易受气候变化的群体。结果表明,在0-50厘米的土壤深度上变暖显着增加了总微生物残留量。与对照相比,通过土壤深度(38%)与土壤深度相比,微生物衍生的C至SoC的比例显着增加更高的微生物转换和选择性保护进入有机矿物络合物,可能解释了所观察到的结果。对于总体SOC的微不足道,我们的结果推断出SOC源配置的改变(微生物衍生的与植物衍生的)。与细菌相比,观察到对真菌残留物的更大程度的变暖效应说明了对变暖的明显群落反应。我们得出结论,变暖具有通过增加的微生物残留物输入来影响土壤C螯合的可能性,从而改变其组成和源配置。我们的作品为分子水平提供了有价值的见解,以确定受高海拔生态系统气候变化影响的微生物介导的C进程的机制。

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