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首页> 外文期刊>Science of the total environment >The relationships of present vegetation, bacteria, and soil properties with soil organic matter characteristics in moist acidic tundra in Alaska
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The relationships of present vegetation, bacteria, and soil properties with soil organic matter characteristics in moist acidic tundra in Alaska

机译:阿拉斯加潮湿酸性苔原土壤有机质特征存在植被,细菌和土壤性质的关系

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摘要

Soil organic matter (SOM) is related to vegetation, soil bacteria, and soil properties; however, not many studies link all these parameters simultaneously, particularly in tundra ecosystems vulnerable to climate change. Our aim was to describe the relationships between vegetation, bacteria, soil properties, and SOM composition in moist acidic tundra by integrating physical, chemical, and molecular methods. A total of 70 soil samples were collected at two different depths from 36 spots systematically arranged over an area of about 300 m × 50 m. Pyrolysis-gas chromatography/mass spectrometry and pyrosequencing of the 16S rRNA gene were used to identify the molecular compositions of the SOM and bacterial community, respectively. Vegetation and soil physicochemical properties were also measured. The sampling sites were grouped into three, based on their SOM compositions: Sphagnum moss-derived SOM, lipid-rich materials, and aromatic-rich materials. Our results show that SOM composition is spatially structured and linked to microtopography; however, the vegetation, soil properties, and bacterial community composition did not show overall spatial structuring. Simultaneously, soil properties and bacterial community composition were the main factors explaining SOM compositional variation, while vegetation had a residual effect. Verrucomicrobia and Acidobacteria were related to polysaccharides, and Chloroflexi was linked to aromatic compounds. These relationships were consistent across different hierarchical levels. Our results suggest that SOM composition at a local scale is closely linked with soil factors and the bacterial community. Comprehensive observation of ecosystem components is recommended to understand the in-situ function of bacteria and the fate of SOM in the moist acidic tundra.
机译:土壤有机物(SOM)与植被,土壤细菌和土壤性质有关;然而,并不多的研究同时链接所有这些参数,特别是在苔原生态系统中容易受气候变化的影响。我们的目标是通过整合物理,化学和分子方法来描述植被,细菌,土壤性质和SOM组成的关系。从系统地布置在约300m×50μm面积的36个点的两个不同深度的两种不同深度中收集了总共70个土壤样品。热解 - 气相色谱/质谱和16S rRNA基因的焦点分别用于鉴定SOM和细菌群落的分子组合物。还测量了植被和土壤理化性质。基于其SOM组合物:SPHAGUM苔藓源性SOM,富含富含脂质的材料和富含芳香的材料的抽样网站分为三个。我们的结果表明,SOM组成在空间上结构和与微拷贝相连;然而,植被,土壤性质和细菌群落组成没有显示出整体空间结构。同时,土壤性质和细菌群落组成是解释SOM成分变异的主要因素,而植被具有残余效果。 VerrucoMicrobia和acidobacteria与多糖有关,并且氯帘布氏素与芳族化合物连接。这些关系跨不同的层次级别一致。我们的研究结果表明,当地规模的SOM组成与土壤因子和细菌群落密切相关。建议综合观察生态系统组分,以了解细菌的原位功能,湿润酸性苔原中的索参的原位功能。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|145386.1-145386.13|共13页
  • 作者单位

    Korea Polar Research Institute Incheon 21990 Republic of Korea;

    Joint Research Unit CTFC - AGROTECNIO Av. Alcalde Rovira Roure 191 E25198 Lleida Spain Department of Crop and Forest Sciences University of Lleida Av. Alcalde Rovira Roure 191 E25198 Lleida Spain;

    Korea Polar Research Institute Incheon 21990 Republic of Korea;

    Korea Polar Research Institute Incheon 21990 Republic of Korea;

    Department of Statistics Seoul National University Seoul 08826 Republic of Korea;

    Department of Statistics Seoul National University Seoul 08826 Republic of Korea;

    Department of Geological Sciences Pusan National University Busan 46241 Republic of Korea;

    Korea Polar Research Institute Incheon 21990 Republic of Korea;

    Korea Polar Research Institute Incheon 21990 Republic of Korea;

    Korea Polar Research Institute Incheon 21990 Republic of Korea;

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

    Soil organic matter (SOM); Sphagnum moss; Soil properties; Microbiome; Moist acidic tundra; Pyrolysis GC/MS;

    机译:土壤有机物(SOM);斯巴格姆苔藓;土壤性质;微生物组;潮湿的酸性苔原;热解GC / MS;

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