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首页> 外文期刊>The Science of the Total Environment >Mikania micrantha invasion enhances the carbon (C) transfer from plant to soil and mediates the soil C utilization through altering microbial community
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Mikania micrantha invasion enhances the carbon (C) transfer from plant to soil and mediates the soil C utilization through altering microbial community

机译:Mikania Micrantha侵袭增强了从植物到土壤的碳(c)转移,并通过改变微生物群落来介导土壤C利用率

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摘要

Exotic plant invasion alters the structure and coverage of terrestrial vegetation and affects the carbon (C) stocks in ecosystems. Previous studies have shown the increases in the C stocks with increasing invasive plants, but these results remain contentious. Soil microbial communities are usually altered by plant invasion, which potentially influences the C cycling underground. We hypothesized that the plant invasion-caused dynamic changes in soil microbes would lead to the corresponding change in soil C accumulation. Using greenhouse experiments we simulated different invader intensities through varying the relative abundance of invasive species Mikania micrantha and its co-occurring native species Paederia scandens. By analyzing ~(13)C-phospholipid fatty acid we found the invasive M. micrantha assimilated more ~(13)C and transferred faster the fixed ~(13)C through different tissues to soils, as compared to native P. scandens. Soil microbial components, i.e., i15:0, 16:0, 10Me16:0, 18:1w9c and 18:2w6,9 were mainly using the photo-assimilated ~(13)C. In addition, we found a hump-shaped relationship between soil net ,~(13)C accumulate rate and rhizosphere microbial biomass, indicating that the soil C accumulation may be either enhanced or reduced in invaded ecosystems, depending on microbe abundance.
机译:异国情调的植物入侵改变陆地植被的结构和覆盖,并影响生态系统中的碳(C)股。以前的研究表明,随着侵袭性植物的增加,C股增加,但这些结果仍然有争议。土壤微生物社区通常通过植物侵袭改变,这潜在地影响C循环地下。我们假设植物侵袭土壤微生物的动态变化会导致土壤C积累的相应变化。使用温室实验,我们通过改变侵入性物种Mikania Micrantha的相对丰度和其共同发生的原生物嗜睡剂来模拟不同的入侵者强度。通过分析〜(13)C-磷脂脂肪酸,我们发现侵袭性M. micrantha同化更多〜(13)c,与天然P. Scandens相比,通过不同组织转移到土壤中的固定〜(13)c。土壤微生物成分,即I15:0,16:0,110ME16:0,18:1W9C和18:2W6,9主要是使用光学氧化〜(13)C。此外,我们发现土壤网,〜(13)C积累率和根际微生物生物量之间的驼峰形关系,表明土壤C累积可以提高或减少入侵的生态系统,这取决于微生物丰度。

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  • 来源
    《The Science of the Total Environment》 |2020年第1期|135020.1-135020.9|共9页
  • 作者单位

    Key Laboratory of Vegetation Restoration and Management of Degraded Ecosystems & Guangdong Provincial Key Laboratory of Applied Botany South China Botanical Garden Chinese Academy of Sciences Guangzhou 510650 China;

    Key Laboratory of Vegetation Restoration and Management of Degraded Ecosystems & Guangdong Provincial Key Laboratory of Applied Botany South China Botanical Garden Chinese Academy of Sciences Guangzhou 510650 China;

    Environment and Plant Protection Institute Chinese Academy of Tropical Agricultural Sciences Haikou 571101 China;

    Key Laboratory of Vegetation Restoration and Management of Degraded Ecosystems & Guangdong Provincial Key Laboratory of Applied Botany South China Botanical Garden Chinese Academy of Sciences Guangzhou 510650 China;

    College of Life Sciences Ludong University Yantai 264025 China;

    College of Forestry and Landscape Architecture South China Agricultural University Guangzhou 510642 China;

    Department of Horticulture and Landscape Architecture Zhongkai University of Agriculture and Engineering Guangzhou 510225 China;

    Key Laboratory of Vegetation Restoration and Management of Degraded Ecosystems & Guangdong Provincial Key Laboratory of Applied Botany South China Botanical Garden Chinese Academy of Sciences Guangzhou 510650 China;

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

    Carbon utilization; ~(13)C-phospholipid fatty acid analysis; Mikania micrantha; Plant invasion; Soil microbial community;

    机译:碳利用;〜(13)C-磷脂脂肪酸分析;Mikania Micrantha;植物入侵;土壤微生物群落;

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