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Shifts in soil microbial metabolic activities and community structures along a salinity gradient of irrigation water in a typical arid region of China

机译:典型干旱区灌水盐度梯度下土壤微生物代谢活性和群落结构的变化

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摘要

Saline water irrigation can change soil environment, which thereby influence soil microbial process. Based on a field experiment, the shifts in soil microbial metabolic activities and community structures under five irrigation salinities were studied using Biolog and metagenomic methods in this study. The results demonstrated that microbial metabolic activities were greatly restrained in saline water irrigated soils, as average well color development (AWCD) reduced under all saline water irrigation treatments. Although no significant difference in carbon substrate utilization of all six categories was observed among Mild, Medium, High and Severe treatments, the consumption of sole carbon source was significantly varied. Especially, asparagine, galacturonic, putrescine and 4-benzoic acid played a decisive role in dominating the differences. Soil bacterial richness and diversity increased with irrigation salinity while the number of bacterial phyla decreased. Three significantly increased (Proteobacteria, Actinobacteria and Chloroflexi), two decreased (Planctomycetes, Bacteroidetes) and two irresponsive (Gemmatimonadetes and Acidobacteria) phyla were observed as the dominant groups in saline water irrigated soils. The results presented here could improve the understanding of the soil biological process under saline circumstance.
机译:盐水灌溉可以改变土壤环境,从而影响土壤微生物过程。在田间试验的基础上,利用Biolog和宏基因组学方法研究了五种灌溉盐分下土壤微生物代谢活性和群落结构的变化。结果表明,在所有盐水灌溉土壤中,微生物平均代谢显着降低(AWCD),这在盐水灌溉土壤中受到了极大的限制。尽管在轻度,中度,高度和重度处理中,所有六类碳底物利用率均无显着差异,但唯一碳源的消耗量却存在显着差异。尤其是天冬酰胺,半乳糖醛酸,腐胺和4-苯甲酸在决定差异上起决定性作用。随着灌水盐度的增加,土壤细菌的丰富度和多样性增加,而细菌门的数量减少。在盐水灌溉土壤中观察到三个显着增加的菌群(变形杆菌,放线菌和绿弯曲菌),两个减少的菌群(细菌菌,拟杆菌)和两个无反应的菌群(芽孢杆菌和酸性细菌)。此处提出的结果可以增进对盐环境下土壤生物过程的理解。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第15期|64-70|共7页
  • 作者单位

    Key Laboratory of Ecohydrology of Inland River Basin, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China,School of Earth and Environmental Sciences, The University of Queensland, Brisbane 4072, Australia;

    Plant Protection and Quarantine Station of Gansu Province, Lanzhou 730020, China;

    Key Laboratory of Ecohydrology of Inland River Basin, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China;

    School of Earth and Environmental Sciences, The University of Queensland, Brisbane 4072, Australia;

    Key Laboratory of Ecohydrology of Inland River Basin, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China,School of Earth and Environmental Sciences, The University of Queensland, Brisbane 4072, Australia;

    School of Earth and Environmental Sciences, The University of Queensland, Brisbane 4072, Australia;

    College of Marine Sciences, Shanghai Ocean University, Shanghai 201306, China;

    Key Laboratory of Ecohydrology of Inland River Basin, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China;

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

    Saline water; Functional diversity; Soil bacteria; Community structure; Metagenomics;

    机译:盐水;功能多样性;土壤细菌;社区结构;元基因组学;

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