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Linkage between N2O emission and functional gene abundance in an intensively managed calcareous fluvo-aquic soil

机译:集约管理石灰钙潮土中N2O排放与功能基因丰度之间的联系

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摘要

The linkage between N2O emissions and the abundance of nitrifier and denitrifier genes is unclear in the intensively managed calcareous fluvo-aquic soils of the North China Plain. We investigated the abundance of bacterial amoA for nitrification and narG, nirS, nirK, and nosZ for denitrification by in situ soil sampling to determine how the abundance of these genes changes instantly during N fertilization events and is related to high N2O emission peaks. We also investigated how long-term incorporated straw and/or manure affect(s) the abundance of these genes based on a seven-year field experiment. The overall results demonstrate that the long-term application of urea-based fertilizer and/or manure significantly enhanced the number of bacterial amoA gene copies leading to high N2O emission peaks after N fertilizer applications. These peaks contributed greatly to the annual N2O emissions in the crop rotation. A significant correlation between annual N2O emissions and narG, nirS, and nirK gene numbers indicates that the abundance of these genes is related to N2O emission under conditions for denitrification, thus partly contributing to the annual N2O emissions. These findings will help to draw up appropriate measures for mitigation of N2O emissions in this ‘hotspot’ region.
机译:在华北平原集约化石灰钙潮土中,N2O排放与硝化和反硝化基因丰富之间的联系尚不清楚。我们通过原位土壤采样研究了细菌amoA的硝化作用以及narG,nirS,nirK和nosZ的反硝化作用的丰度,以确定原位土壤采样过程中这些基因的丰度如何在N施肥过程中立即发生变化,并与高N2O排放峰值相关。我们还根据一项为期7年的田间试验研究了长期掺入秸秆和/或肥料如何影响这些基因的丰度。总体结果表明,长期施用基于尿素的肥料和/或肥料会显着增加细菌amoA基因拷贝的数量,从而在施用氮肥后导致高N2O排放峰。这些高峰极大地促进了轮作中的年度N2O排放。年度N2O排放量与narG,nirS和nirK基因数量之间的显着相关性表明,这些基因的丰度与反硝化条件下的N2O排放量有关,从而部分地导致了年度N2O排放量。这些发现将有助于制定适当的措施,以减轻这一“热点”地区的N2O排放。

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