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Effects of 3,4-dimethylpyrazole phosphate (DMPP) on nitrification and the abundance and community composition of soil ammonia oxidizers in three land uses

机译:3,4-二甲基吡唑磷酸酯(DMPP)对三种土地利用方式硝化作用及土壤氨氧化剂的丰度和群落组成的影响

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摘要

The application of the nitrification inhibitor, 3,4-dimethylpyrazole-phosphate (DMPP), is considered as an effective strategy to mitigate agricultural nitrogen loss. However, the inhibitory effect of DMPP on nitrification is variable and the importance of the soil microbial community composition to the variability is poorly understood. In this study, nine soils were collected across three land uses to investigate the impact of DMPP on nitrification and associated dynamics of ammonia oxidizers in a 28-day microcosm incubation. The results showed that the efficacy of DMPP at inhibiting net nitrification rates varied highly from no effect to 63.6 % during the first week of incubation. The abundance of ammonia-oxidizing bacteria (AOB), rather than ammonia-oxidizing archaea (AOA), was significantly correlated with nitrate concentrations across three land uses and significantly inhibited by DMPP addition. DMPP had higher efficacy in neutral and alkaline wheat and vegetable soils, compared with pasture soils. Canonical correspondence analysis suggested that soil pH was the most influential factor explaining the community composition of AOB and AOA in the collected soils. However, neither ammonium nitrate nor DMPP addition had a significant effect on the community composition of AOB or AOA during the incubation indicated by non-metric multidimensional scaling ordination. Taken together, our findings indicated that DMPP slowed nitrification by inhibiting the growth of AOB, and DMPP application affected the abundance of AOB more than the ammonia oxidizer community composition.
机译:硝化抑制剂3,4-二甲基吡唑磷酸酯(DMPP)的应用被认为是减轻农业氮素流失的有效策略。然而,DMPP对硝化的抑制作用是可变的,并且土壤微生物群落组成对变异性的重要性了解得很少。在这项研究中,在28天的微观温育中,从三种土地用途中收集了九种土壤,以研究DMPP对硝化作用的影响以及氨氧化剂的相关动力学。结果表明,在培养的第一周中,DMPP抑制净硝化速率的功效从无影响到63.6%差异很大。氨氧化细菌(AOB)而不是氨氧化古细菌(AOA)的丰度与三种土地利用中的硝酸盐浓度显着相关,并被添加DMPP显着抑制。与牧草土壤相比,DMPP在中性和碱性小麦和蔬菜土壤中具有更高的功效。典型的对应分析表明,土壤pH是影响收集土壤中AOB和AOA群落组成的最主要因素。但是,硝酸铵和DMPP的添加在非度量多维缩放排序指示的孵育过程中对AOB或AOA的群落组成均没有显着影响。两者合计,我们的研究结果表明DMPP通过抑制AOB的生长来减慢硝化作用,而DMPP的应用对AOB的丰度的影响大于氨气氧化剂的组成。

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