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Responses of soil hydrolytic enzymes ammonia-oxidizing bacteria and archaea to nitrogen applications in a temperate grassland in Inner Mongolia

机译:内蒙古温带草原土壤水解酶氨氧化细菌和古生菌对氮素的响应

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摘要

We used a seven-year urea gradient applied field experiment to investigate the effects of nitrogen (N) applications on soil N hydrolytic enzyme activity and ammonia-oxidizing microbial abundance in a typical steppe ecosystem in Inner Mongolia. The results showed that N additions inhibited the soil N-related hydrolytic enzyme activities, especially in 392 kg N ha−1 yr−1 treatment. As N additions increased, the amoA gene copy ratios of ammonia-oxidizing archaea (AOA) to ammonia-oxidizing bacteria (AOB) decreased from 1.13 to 0.65. Pearson correlation analysis showed that the AOA gene copies were negatively related with NH4+-N content. However, the AOB gene copies were positively correlated with NO3-N content. Moderate N application rates (56–224 kg N ha−1 yr−1) accompanied by P additions are beneficial to maintaining the abundance of AOB, as opposed to the inhibition of highest N application rate (392 kg N ha−1 yr−1) on the abundance of AOB. This study suggests that the abundance of AOB and AOA would not decrease unless N applications exceed 224 kg N ha−1 yr−1 in temperate grasslands in Inner Mongolia.
机译:我们使用了为期7年的尿素梯度应用田间试验,研究了内蒙古典型草原生态系统中氮(N)施用对土壤氮水解酶活性和氨氧化微生物丰度的影响。结果表明,添加氮会抑制土壤中与氮相关的水解酶活性,特别是在392 kg N ha -1 yr -1 处理中。随着氮添加量的增加,氨氧化古细菌(AOA)与氨氧化细菌(AOB)的amoA基因拷贝比从1.13降低至0.65。皮尔逊相关分析表明,AOA基因拷贝数与NH4 + -N含量呈负相关。然而,AOB基因拷贝数与NO3 - -N含量呈正相关。适量的氮肥施用量(56–224 kg N ha −1 yr -1 )与磷的添加相结合,有利于维持AOB的丰度,而不是抑制AOB。施氮量最高时,施氮量最高(392 kg N ha -1 yr -1 )。这项研究表明,在内蒙古温带草地上,除非氮肥施用量超过224 kg N ha -1 yr -1 ,否则AOB和AOA的丰度不会降低。

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