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首页> 外文期刊>Journal of plant nutrition and soil science >Characterization of vegetable nitrogen uptake and soil nitrogen transformation in response to continuous molybdenum application
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Characterization of vegetable nitrogen uptake and soil nitrogen transformation in response to continuous molybdenum application

机译:植物氮吸收与土壤氮转化的表征响应连续钼应用

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摘要

Molybdenum (Mo), a plant micronutrient, is involved in nitrogen (N) cycling of global ecosystem, but little is known about its effect on soil N transformation especially the key processes nitrification and denitrification. A long-term field experiment was carried out to investigate the effects of continuous sufficient soil available Mo on vegetable N uptake and soil N transformation. The experiment consisted of three treatments: control (CK), Mo deficiency (NPK), and Mo application (NPK+Mo). The results show that (1) after a 7-year-experiment, continuous Mo application significantly increased soil available Mo content. (2) Compared to the NPK treatment, NPK+Mo treatment showed an increase of 11, 18, and 8% in the cumulative crop yield, plant N uptake, and N fertilizer use efficiency. (3) With continuous Mo application, the soil NO3--N, NH4+-N, microbial biomass N, and total N contents were reduced by 14, 29, 40, and 12%, the soil nitrate reductase (NR) and nitrite reductase (NiR) activities were reduced by 14 and 8%, as well as the potential denitrification activity (PDA) and gross nitrification rate (GNR) were decreased by 64 and 80%, respectively. Additionally, continuous Mo application decreased the abundance of ammonia-oxidizing archaea (AOA) and increased the abundance of narG-containing denitrifiers (narG) and nirK-type nitrite reducers (nirK) significantly. The data suggest that a deficiency in soil available Mo may induce the risk of soil N accumulation and environmental N emission in vegetable soil, whereas continuous Mo application could mitigate this risk by increasing crop yield and N uptake and, by decreasing soil N residues, soil nitrification and denitrification.
机译:钼(MO),一种植物微量营养素,涉及全球生态系统的氮气(n)循环,但对其对土壤N变化的影响几乎不了解,特别是硝化和反硝化。进行了长期的田间实验,以研究连续充分土壤可用MO对植物N吸收和土壤变化的影响。该实验由三种治疗组成:对照(CK),MO缺乏症(NPK)和MO申请(NPK + MO)。结果表明,(1)在7年实验后,连续的MO申请明显增加土壤可用MO含量。 (2)与NPK治疗相比,NPK + MO治疗表现出累积作物产量,植物N吸收和N肥料使用效率增加11,18和8%。 (3)通过连续Mo施用,土壤NO3 - N,NH 4 + -N,微生物生物量N和总N含量减少14,29,40和12%,土壤硝酸还原酶(NR)和亚硝酸盐还原酶(NIR)活性减少14%和8%,以及潜在的脱氮活性(PDA)和总硝化速率(GNR)分别降低了64%和80%。另外,连续的Mo申请减少了氨氧化古亚亚亚茶(AOA)的丰富,并显着增加了含含有鼻内的脱氮剂(Narg)和Nirk型亚硝酸盐还原剂(Nirk)的丰度。该数据表明土壤可用MO的缺陷可能会诱导植物土壤中土壤积累和环境N排放的风险,而连续的MO申请可以通过增加作物产量和N脱落,通过降低土壤残留物,土壤硝化和反硝化。

著录项

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  • 作者单位

    Huazhong Agr Univ Res Ctr Trace Elements Hubei Prov Engn Lab New Fertilizers Dept Resources &

    Environm Wuhan 430070 Hubei Peoples R China;

    Huazhong Agr Univ Res Ctr Trace Elements Hubei Prov Engn Lab New Fertilizers Dept Resources &

    Environm Wuhan 430070 Hubei Peoples R China;

    Huazhong Agr Univ Res Ctr Trace Elements Hubei Prov Engn Lab New Fertilizers Dept Resources &

    Environm Wuhan 430070 Hubei Peoples R China;

    Huazhong Agr Univ Res Ctr Trace Elements Hubei Prov Engn Lab New Fertilizers Dept Resources &

    Environm Wuhan 430070 Hubei Peoples R China;

    Huazhong Agr Univ Res Ctr Trace Elements Hubei Prov Engn Lab New Fertilizers Dept Resources &

    Environm Wuhan 430070 Hubei Peoples R China;

    Huazhong Agr Univ Res Ctr Trace Elements Hubei Prov Engn Lab New Fertilizers Dept Resources &

    Environm Wuhan 430070 Hubei Peoples R China;

    Huazhong Agr Univ Res Ctr Trace Elements Hubei Prov Engn Lab New Fertilizers Dept Resources &

    Environm Wuhan 430070 Hubei Peoples R China;

    Huazhong Agr Univ Res Ctr Trace Elements Hubei Prov Engn Lab New Fertilizers Dept Resources &

    Environm Wuhan 430070 Hubei Peoples R China;

    Huazhong Agr Univ Res Ctr Trace Elements Hubei Prov Engn Lab New Fertilizers Dept Resources &

    Environm Wuhan 430070 Hubei Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业基础科学;
  • 关键词

    denitrification; nitrification; nitrogen losses; nitrogen transformation;

    机译:反硝化;硝化;氮损失;氮转化;

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