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Nitrous oxide emission related to ammonia-oxidizing bacteria and mitigation options from N fertilization in a tropical soil

机译:与氨氧化细菌有关的一氧化二氮排放以及热带土壤中氮肥的缓解选择

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摘要

Nitrous oxide (N2O) from nitrogen fertilizers applied to sugarcane has high environmental impact on ethanol production. This study aimed to determine the main microbial processes responsible for the N2O emissions from soil fertilized with different N sources, to identify options to mitigate N2O emissions, and to determine the impacts of the N sources on the soil microbiome. In a field experiment, nitrogen was applied as calcium nitrate, urea, urea with dicyandiamide or 3,4 dimethylpyrazone phosphate nitrification inhibitors (NIs), and urea coated with polymer and sulfur (PSCU). Urea caused the highest N2O emissions (1.7% of N applied) and PSCU did not reduce cumulative N2O emissions compared to urea. NIs reduced N2O emissions (95%) compared to urea and had emissions comparable to those of the control (no N). Similarly, calcium nitrate resulted in very low N2O emissions. Interestingly, N2O emissions were significantly correlated only with bacterial amoA, but not with denitrification gene (nirK, nirS, nosZ) abundances, suggesting that ammonia-oxidizing bacteria, via the nitrification pathway, were the main contributors to N2O emissions. Moreover, the treatments had little effect on microbial composition or diversity. We suggest nitrate-based fertilizers or the addition of NIs in NH4+-N based fertilizers as viable options for reducing N2O emissions in tropical soils and lessening the environmental impact of biofuel produced from sugarcane.
机译:应用于甘蔗的氮肥中产生的一氧化二氮(N2O)对乙醇生产具有很高的环境影响。这项研究旨在确定造成不同N源施肥的土壤中N2O排放的主要微生物过程,确定减轻N2O排放的方案,并确定N源对土壤微生物组的影响。在田间试验中,将氮用作硝酸钙,尿素,具有双氰胺或3,4-二甲基吡喃酮的磷酸盐硝化抑制剂(NIs)的尿素以及涂覆有聚合物和硫的尿素(PSCU)。与尿素相比,尿素引起的N2O排放量最高(占施氮量的1.7%),PSCU并未减少累积的N2O排放量。与尿素相比,NIs减少了N2O排放(95%),并且排放量与对照组相当(无N)。同样,硝酸钙导致N2O排放极低。有趣的是,N2O排放仅与细菌amoA显着相关,而与反硝化基因(nirK,nirS,nosZ)的丰度没有显着相关,这表明氨氧化细菌通过硝化途径是N2O排放的主要来源。而且,这些处理对微生物组成或多样性几乎没有影响。我们建议硝酸盐基肥料或在NH4 + -N基肥料中添加NIs作为减少热带土壤中N2O排放并减轻甘蔗生产的生物燃料对环境的影响的可行选择。

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