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Soil physical and microbiological properties affected by soil compaction, organic amendments and cropping in a claypan soil.

机译:土壤的物理和微生物特性会受到土壤压实,有机改良剂和黏土土壤耕作的影响。

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摘要

Soil compaction is a major cause of reduced crop productivity in agroecosystems and increases the potential for environmental problems. Compaction-induced changes in soil physical properties may modify soil microhabitats and affect soil microbially mediated processes related to nutrient cycling. Laboratory and field experiments were conducted to determine the effects of compaction, poultry-litter application and cropping on soil physical and microbiological properties related to carbon (C) and nitrogen (N) in claypan soils. Compaction significantly increased soil bulk density, decreased saturated hydraulic conductivity and total porosity, and shifted macropores to micropores. These compaction-induced physical changes decreased soil CO2 efflux and changes in total inorganic N. Total organic C, beta-glucosidase and beta-glucosaminidase activities, microbial biomass C (MBC) and microbial functional diversity of soil were increased due to moderate compaction (i.e., bulk density levels of 1.2 to 1.6 Mg m-3) and were not affected or decreased under more severely compacted conditions (1.8 Mg m-3). Decreased soil N fractions, including soil microbial biomass N and soluble organic N, after compaction suggest that these variables were more sensitive to soil compaction than soil C fractions. Compaction increased the soil microbial C:N ratio, which may suggest a structural shift of soil microbial community to fungi. Litter application and cropping increased most measured soil microbiological properties, except microbial C:N ratio. These results suggest that soil compaction changes these soil microbiological properties, and the magnitude of those changes is modified by climatic variation. Use of organic amendments and cropping may mitigate the compaction effects on these soil microbiological properties over time.
机译:土壤压实是农业生态系统农作物减产的主要原因,并增加了潜在的环境问题。压实引起的土壤物理性质变化可能会改变土壤微生境,并影响与养分循环有关的土壤微生物介导的过程。进行了实验室和田间试验,以确定压实,家禽凋落物和耕作对与粘土锅土壤中碳(C)和氮(N)有关的土壤物理和微生物特性的影响。压实作用显着增加了土壤容重,降低了饱和水力传导率和总孔隙度,并使大孔转变为微孔。这些压实引起的物理变化降低了土壤CO2的流出量和总无机氮的变化。由于中等压实(例如,土壤中总有机碳,β-葡糖苷酶和β-葡糖胺酶活性,微生物生物量C(MBC)和微生物功能多样性)的增加。 ,堆积密度水平为1.2至1.6 Mg m-3),并且在更严格的压实条件下(1.8 Mg m-3)不会受到影响或降低。压实后土壤氮组分(包括土壤微生物量氮和可溶性有机氮)的减少表明,这些变量比土壤碳组分对土壤压实更敏感。压实增加了土壤微生物碳氮比,这可能表明土壤微生物群落结构向真菌转移。除微生物C:N比外,随地施用垃圾和种植作物增加了大多数测得的土壤微生物学特性。这些结果表明,土壤压实改变了这些土壤的微生物学特性,并且这些变化的幅度因气候变化而改变。随着时间的推移,使用有机改良剂和农作物可能会减轻对这些土壤微生物特性的压实效应。

著录项

  • 作者

    Pengthamkeerati, Patthra.;

  • 作者单位

    University of Missouri - Columbia.;

  • 授予单位 University of Missouri - Columbia.;
  • 学科 Agriculture Soil Science.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤学;
  • 关键词

  • 入库时间 2022-08-17 11:43:22

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