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Effect of Different Land Use on Activity and Composition of Ammonia-Oxidizing Bacteria in an Alfisol Soil

机译:不同土地利用方式对铝土土壤中氨氧化细菌活性和组成的影响

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The effects of long-term (19 years) different land use on activity and composition of ammonia- oxidizing bacteria (AOB) were detected. The result showed that the potential nitrification rate in soils (RM, NPK+RM, Mowed, Fallow) was significantly higher (P < 0.05) than the CK and NPK treatments, indicating that long-term applications of recycled manure and return by plant residue both significantly increased the activity of AOB. However, the application of NPK did not enhance soil potential nitrification because of decreased pH. Fingerprints from DGGE showed that each treatment exhibit distinctly different DGGE patterns. Non-agricultural plots showed an increase in the diversity of the AOB community compared to CK, RM and NPK treatments, implying that agricultural practices, especially tillage, have an adverse effect on the soil AOB community. A phylogenetic analysis showed that most of the DGGE bands derived from all plots belonged to Nitrosospira cluster 3.
机译:检测了长期(19年)不同土地利用方式对氨氧化细菌(AOB)的活性和组成的影响。结果表明,土壤的潜在硝化速率(RM,NPK + RM,Mowed,Fallow)显着高于(P <0.05)CK和NPK处理,表明长期施用可回收肥料并通过植物残渣返回两者均显着增加了AOB的活性。但是,施用NPK不会因为pH降低而增强土壤潜在的硝化作用。 DGGE的指纹显示,每种处理均表现出截然不同的DGGE模式。与CK,RM和NPK处理相比,非农业地块显示AOB群落的多样性增加,这表明农业实践(尤其是耕作)对土壤AOB群落有不利影响。系统发育分析表明,来自所有地块的大多数DGGE带均属于亚硝基螺菌群3。

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