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首页> 外文期刊>Science of the total environment >Decline in the contribution of microbial residues to soil organic carbon along a subtropical elevation gradient
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Decline in the contribution of microbial residues to soil organic carbon along a subtropical elevation gradient

机译:沿亚热床升降梯度的微生物残留对土壤有机碳的贡献的下降

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摘要

There has been an increasing interest in studying microbial necromasses and their contribution to soil organic carbon (SOC) accumulation. However, it remains unclear how the interaction among climate, plants, and soil influence the microbial anabolism and how microbial necromass contribute to SOC formation. Here, we assessed the relative contribution of microbial residues to SOC pool across a subtropical elevation gradient (ranged from 630 to 2130 m a.s.l.) representing a subtropical ecosystem on Wuyi Mountain in China, by using amino sugars as tracers. Analysis of topsoil (0-10 cm) amino sugars and the composition of microbial community across this gradient revealed that the soil total amino sugars accounting for 12.2-25.7% of the SOC pool, decreased with increasing elevation. Moreover, the linear reduction in the bacterial-derived carbon (C) and an increase in the ratio of fungal- to bacterial-derived C with increasing elevation suggested the reduction in the contribution of bacterial-derived C to SOC pool across this elevation gradient. The divergent changes in the contribution of the microbial residues to SOC infer a potential change in SOC composition and stability. The microbial-derived SOC formation and its climatic responses are influenced by the interaction of vegetation types and soil properties, with soil amorphous Fe being the determiner of soil amino sugar accrual. Our work highlights the importance of understanding ecosystem type and mineral composition in regulating microbial-mediated SOC formation and accumulation in responses to climate change in subtropical ecosystems.
机译:对研究微生物乳腺和对土壤有机碳(SoC)积累的贡献越来越令人兴趣。然而,它仍然尚不清楚气候,植物和土壤之间的相互作用如何影响微生物的合成和微生物乳腺多种多数人对SOC形成有助于SOC形成。在这里,我们评估了微生物残留对SoC池的相对贡献,其跨亚热带高程梯度(范围从630到2130米A.L.)代表中国武夷山的亚热带生态系统,通过使用氨基糖作为示踪剂。对Topsoil(0-10cm)氨基糖的分析和微生物群落的微生物群落的组成显示,土壤总氨基糖占SOC池的12.2-25.7%,随着高度的增加而下降。此外,细菌衍生的碳(c)的线性降低以及真菌至细菌衍生的C与升高的比率的增加表明,在该高度梯度上,细菌衍生的C至SoC池的贡献降低。微生物残留对SoC的贡献的发散变化推断SoC组成和稳定性的潜在变化。微生物衍生的SOC形成及其气候反应受植被类型和土壤性质相互作用的影响,土壤无定形FE是土壤氨基糖应激的决定率。我们的工作突出了了解生态系统类型和矿物组合在调节微生物介导的SOC形成和积累中的重要性,在亚热带生态系统中对气候变化的反应中的积累。

著录项

  • 来源
    《Science of the total environment》 |2020年第20期|141583.1-141583.8|共8页
  • 作者单位

    Key Laboratory for Subtropical Mountain Ecology (Ministry of Science and Technology and Fujian Province Funded) School of Geographical Sciences Fujian Normal University Fuzhou 350007 China;

    Key Laboratory for Subtropical Mountain Ecology (Ministry of Science and Technology and Fujian Province Funded) School of Geographical Sciences Fujian Normal University Fuzhou 350007 China Ecology Postdoctoral Research Station Fujian Normal University Fuzhou 350007 China;

    Key Laboratory for Subtropical Mountain Ecology (Ministry of Science and Technology and Fujian Province Funded) School of Geographical Sciences Fujian Normal University Fuzhou 350007 China;

    Key Laboratory for Subtropical Mountain Ecology (Ministry of Science and Technology and Fujian Province Funded) School of Geographical Sciences Fujian Normal University Fuzhou 350007 China;

    Key Laboratory for Subtropical Mountain Ecology (Ministry of Science and Technology and Fujian Province Funded) School of Geographical Sciences Fujian Normal University Fuzhou 350007 China;

    Key Laboratory for Subtropical Mountain Ecology (Ministry of Science and Technology and Fujian Province Funded) School of Geographical Sciences Fujian Normal University Fuzhou 350007 China Institute of Geography Science Fujian Normal University Fuzhou 350007 China;

    Key Laboratory for Subtropical Mountain Ecology (Ministry of Science and Technology and Fujian Province Funded) School of Geographical Sciences Fujian Normal University Fuzhou 350007 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Amino sugars; Climate changes; Microbial necromass; SOC formation; Subtropical elevation gradient;

    机译:氨基糖;气候变化;微生物乳腺;SOC形成;亚热带高程梯度;

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