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首页> 外文期刊>Plant, Soil and Environment >The response of nitrifier, N-fixer and denitrifier gene copy numbers to the nitrification inhibitor 3,4-dimethylpyrazole phosphate
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The response of nitrifier, N-fixer and denitrifier gene copy numbers to the nitrification inhibitor 3,4-dimethylpyrazole phosphate

机译:硝化,N-固定和反硝化基因拷贝数对硝化抑制剂3,4-二甲基吡唑磷酸酯的响应

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摘要

A laboratory incubation experiment was conducted to examine the effects of 3,4-dimethylpyrazole phosphate (DMPP) on the transformation of urea-N and associated microbial communities in a low-fertility brown soil. The soil was supplied with urea at 180kg N/ha and DMPP at 0, 1.8 or 18 kg/ha, while soil that was not supplied with urea and DMPP was treated as the control. Soil mineral nitrogen (NH_4~+-N and NO_3~--N) was measured at regular intervals, and temporal variations in the population sizes of nitrogen-cycling microbes were determined using realtime PCR. Compared to the urea-alone treatment, the additional application of DMPP maintained significantly higher (P < 0.05) NH_4~+-N concentrations and lower NO_3~-N (P < 0.05) concentrations in the soil and decreased the population sizes of ammonia oxidizing and denitrifying microbes but promoted the growth of nitrogen-fixing bacteria. The results suggest that the application of DMPP is beneficial in improving the availability of fertilizer-N for plant uptake. This study is the first comprehensive investigation to examine the effects of DMPP on the functional microorganisms that are important in nitrogen-cycling processes.
机译:进行了实验室孵育实验,以研究3,4-二甲基吡唑磷酸酯(DMPP)对低肥力棕色土壤中尿素-N和相关微生物群落转化的影响。向土壤提供180kg N / ha的尿素,向DMPP提供0、1.8或18 kg / ha的土壤,而未向尿素和DMPP供应的土壤作为对照。定期测量土壤矿质氮(NH_4〜+ -N和NO_3〜--N),并通过实时PCR确定氮循环微生物种群数量的时间变化。与仅使用尿素的处理相比,DMPP的额外施用可保持土壤中较高的(P <0.05)NH_4〜+ -N浓度和较低的NO_3〜-N(P <0.05)浓度,并减少了氨氧化的种群规模和反硝化微生物,但促进固氮细菌的生长。结果表明,DMPP的应用有利于提高肥料中氮素的利用率。这项研究是检查DMPP对氮循环过程中重要的功能性微生物的作用的首次全面研究。

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