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Changes in soil microbial biomass C, ATP and microbial ATP concentrations due to increasing soil Cd levels in Chinese paddy soils growing rice (Oryza sativa)

机译:中国水稻土壤中土壤镉水平稻镉土壤微生物生物量C,ATP和微生物ATP浓度的变化(Oryza sativa)

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摘要

AimsThe mean biomass ATP concentration in aerobic soils is around 10-11mol ATP g(-1) biomass C, within a fairly narrow range. It is much lower in short-term incubated laboratory waterlogged soils. However, the biomass ATP concentration in waterlogged paddy soils under field conditions remains unknown. This is investigated.MethodsSoil microbial biomass C (biomass C), ATP, biomass ATP and heavy metal (Cd, Zn, and Cu) concentrations in soil and rice were measured in a Chinese paddy soil growing rice. Soils and plants were analyzed at day 0, 30, 75 and 90, over the 90day growing period with inputs of inorganic fertilizer, or biochar and manure singly or in combination.ResultsBoth biomass C and ATP concentrations increased, range from 14.9-30.5% for microbial biomass C and 115.8-160.1% for ATP, from initial values until the end of the experiment following manure or biochar addition. An important result was that the biomass ATP concentration increased throughout the growth period. There were also significant negative correlations (p0.05) between total and available Cd and these three microbial parameters, despite the low levels of Cd. Over the same period, total plant Cd concentrations increased, and soil Cd decreased. This suggests that the rice acted as a bioaccumulator. The microbial biomass was then in a continually decreasingly toxic environment and responded rapidly by increasing its size.ConclusionsThese results demonstrate clear differences in microbial energy dynamics between aerobic and anaerobic microbial populations. Both ATP and biomass C are useful bioindicators of the effects of cadmium contamination on microbial processes in waterlogged soil.
机译:AIMSTHE平均化生物量ATP浓度在有氧土壤中约为10-11mol ATP G(-1)生物量C,在相当窄的范围内。短期孵化实验室涝渍土壤较低。然而,在现场条件下涝渍水稻土中的生物质ATP浓度仍然未知。在中国水稻土壤生长水稻中测量了这一点,研究了土壤和水稻中的过多的微生物生物量C(生物量C),ATP,生物质ATP和重金属(CD,Zn和Cu)浓度。在第0,30,75和90天分析了土壤和植物,在90天生长的时间内与无机肥料的输入,或单独或组合的生物炭和粪肥分析。生物量C和ATP浓度增加,范围为14.9-30.5%对于ATP的微生物生物量C和115.8-160.1%,从初始值到粪便或生物炭后的实验结束。重要的是,生物量ATP浓度在整个生长期内增加。尽管CD水平低,但在总和可用的CD和可用CD之间的显着的负相关(P <0.05)也存在显着的负相关性(P <0.05)。在同一时期,总植物CD浓度增加,土壤CD降低。这表明米饭充当生物累积者。然后将微生物生物量在不断下降的毒性环境中,并通过增加其尺寸来迅速响应。结论结果表明有氧和厌氧微生物群之间的微生物能量动态的明显差异。 ATP和BioMass C都是镉污染对涝渍土微生物过程的影响的有用生物indicer。

著录项

  • 来源
    《Plant and Soil》 |2019年第2期|共12页
  • 作者单位

    Zhejiang Univ Inst Soil &

    Water Resources &

    Environm Sci Coll Environm &

    Resource Sci Zhejiang Prov Key Lab Agr Resources &

    Environm Hangzhou 310058 Zhejiang Peoples R China;

    Zhejiang Univ Inst Soil &

    Water Resources &

    Environm Sci Coll Environm &

    Resource Sci Zhejiang Prov Key Lab Agr Resources &

    Environm Hangzhou 310058 Zhejiang Peoples R China;

    Zhejiang Univ Inst Soil &

    Water Resources &

    Environm Sci Coll Environm &

    Resource Sci Zhejiang Prov Key Lab Agr Resources &

    Environm Hangzhou 310058 Zhejiang Peoples R China;

    Zhejiang Univ Inst Soil &

    Water Resources &

    Environm Sci Coll Environm &

    Resource Sci Zhejiang Prov Key Lab Agr Resources &

    Environm Hangzhou 310058 Zhejiang Peoples R China;

    Zhejiang Univ Inst Soil &

    Water Resources &

    Environm Sci Coll Environm &

    Resource Sci Zhejiang Prov Key Lab Agr Resources &

    Environm Hangzhou 310058 Zhejiang Peoples R China;

    Zhejiang Univ Inst Soil &

    Water Resources &

    Environm Sci Coll Environm &

    Resource Sci Zhejiang Prov Key Lab Agr Resources &

    Environm Hangzhou 310058 Zhejiang Peoples R China;

    Zhejiang Univ Inst Soil &

    Water Resources &

    Environm Sci Coll Environm &

    Resource Sci Zhejiang Prov Key Lab Agr Resources &

    Environm Hangzhou 310058 Zhejiang Peoples R China;

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

    Soil microbial biomass C; Soil microbial biomass ATP; Biomass ATP concentrations; Waterlogged soil; Soil cd concentrations;

    机译:土壤微生物生物量C;土壤微生物化学生物量ATP;生物量ATP浓度;涝渍土;土壤CD浓度;

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