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Quantitative and compositional responses of ammonia-oxidizing archaea and bacteria to long-term field fertilization

机译:氨氧化古细菌和细菌对长期田间施肥的定量和组成响应

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摘要

Archaeal (AOA) and bacterial (AOB) ammonia-oxidizer responses to long-term field fertilization in a Mollisol soil were assessed through pyrosequencing of amoA genes. Long-term fertilization treatments including chemical fertilizer (NPK), NPK plus manure (NPKM), and no fertilization over 23 years altered soil properties resulting in significant shifts in AOA and AOB community composition and abundance. NPK exhibited a strong influence on AOA and AOB composition while the addition of manure neutralized the community change induced by NPK. NPK also led to significant soil acidification and enrichment of Nitrosotalea. Nitrosospira cluster 9 and 3c were the most abundant AOB populations with opposing responses to fertilization treatments. NPKM had the largest abundance of ammonia-oxidizers and highest potential nitrification activity (PNA), suggesting high N loss potential due to a doubling of nutrient input compared to NPK. PNA was strongly correlated to AOA and AOB community composition indicating that both were important in ammonium oxidization in this Mollisol soil. Total N and organic C were the most important factors driving shifts in AOA and AOB community composition. The AOA community was strongly correlated to the activities of all sugar hydrolysis associated soil enzymes and was more responsive to C and N input than AOB.
机译:通过amoA基因的焦磷酸测序评估古细菌(AOA)和细菌(AOB)对Mollisol土壤中长期田间施肥的反应。长期施肥处理包括化学肥料(NPK),NPK加肥料(NPKM),并且23年来未施肥改变了土壤性质,导致AOA和AOB群落组成和丰度发生了显着变化。 NPK对AOA和AOB组成表现出强烈的影响,而添加粪便则抵消了NPK诱导的群落变化。氮磷钾还导致土壤显着酸化和亚硝酸盐的富集。亚硝基螺菌群9和3c是最丰富的AOB种群,对受精处理的反应相反。 NPKM具有最大量的氨氧化剂和最高的潜在硝化活性(PNA),这表明与NPK相比,由于养分投入增加了一倍,氮损失潜力很高。 PNA与AOA和AOB群落组成密切相关,表明两者在该Mollisol土壤中的铵氧化中均很重要。总氮和有机碳是驱动AOA和AOB群落组成变化的最重要因素。 AOA群落与所有与糖水解相关的土壤酶的活性密切相关,并且比AOB对碳和氮的输入更敏感。

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