首页> 外文期刊>Microbial Ecology: An International Journal >Impacts of Organic and Inorganic Fertilizers on Nitrification in a Cold Climate Soil are Linked to the Bacterial Ammonia Oxidizer Community
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Impacts of Organic and Inorganic Fertilizers on Nitrification in a Cold Climate Soil are Linked to the Bacterial Ammonia Oxidizer Community

机译:有机和无机肥料对寒冷气候土壤中硝化作用的影响与细菌氨氧化器社区有关

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摘要

The microbiology underpinning soil nitrogen cycling in northeast China remains poorly understood. These agricultural systems are typified by widely contrasting temperature, ranging from -40 to 38A degrees C. In a long-term site in this region, the impacts of mineral and organic fertilizer amendments on potential nitrification rate (PNR) were determined. PNR was found to be suppressed by long-term mineral fertilizer treatment but enhanced by manure treatment. The abundance and structure of ammonia-oxidizing bacterial (AOB) and archaeal (AOA) communities were assessed using quantitative polymerase chain reaction and denaturing gradient gel electrophoresis techniques. The abundance of AOA was reduced by all fertilizer treatments, while the opposite response was measured for AOB, leading to a six- to 60-fold reduction in AOA/AOB ratio. The community structure of AOA exhibited little variation across fertilization treatments, whereas the structure of the AOB community was highly responsive. PNR was correlated with community structure of AOB rather than that of AOA. Variation in the community structure of AOB was linked to soil pH, total carbon, and nitrogen contents induced by different long-term fertilization regimes. The results suggest that manure amendment establishes conditions which select for an AOB community type which recovers mineral fertilizer-suppressed soil nitrification.
机译:中国东北土壤微生物循环的微生物学知之甚少。这些农业系统的典型代表是温度范围从-40到38A摄氏度的大不相同。在该地区的一个长期站点中,确定了矿物和有机肥料改良剂对潜在硝化率(PNR)的影响。发现PNR被长期的矿物肥料处理所抑制,但被粪肥处理所增强。使用定量聚合酶链反应和变性梯度凝胶电泳技术评估了氨氧化细菌(AOB)和古细菌(AOA)群落的丰度和结构。所有肥料处理均降低了AOA的丰度,而对AOB却测出了相反的响应,导致AOA / AOB比降低了6至60倍。在所有施肥处理中,AOA的群落结构几乎没有变化,而AOB群落的结构则反应灵敏。 PNR与AOB而不是AOA的社区结构相关。 AOB群落结构的变化与长期不同施肥方式引起的土壤pH,总碳和氮含量有关。结果表明,粪肥改良为选择AOB群落类型创造了条件,该群落类型恢复了矿物肥料抑制的土壤硝化作用。

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