4.7 Article

Comparative effects of 3,4-dimethylpyrazole phosphate (DMPP) and dicyandiamide (DCD) on ammonia-oxidizing bacteria and archaea in a vegetable soil

期刊

APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
卷 99, 期 1, 页码 477-487

出版社

SPRINGER
DOI: 10.1007/s00253-014-6026-7

关键词

Nitrification inhibitors; Nitrification; Ammonia-oxidizing bacteria; Ammonia-oxidizing archaea; Vegetable soil

资金

  1. National Basic Research Program (973 Program) of China [2013CB127403]
  2. National Project of Scientific and Technical Supporting Programs [2012BAC17B02]
  3. Natural Science Foundation of China [31272237, 30971859]
  4. Foundation for University PhD Granting Discipline of the Ministry of Education [20120101110130]
  5. International Plant Nutrition Institute (IPNI)

向作者/读者索取更多资源

Nitrification inhibitors (NIs) 3,4-dimethylpyrazole phosphate (DMPP) and dicyandiamide (DCD) have been used extensively to improve nitrogen fertilizer utilization in farmland. However, their comparative effects on ammonia-oxidizing bacteria (AOB) and ammonia-oxidizing archaea (AOA) in agricultural soils are still unclear. Here, we compared the impacts of these two inhibitors on soil nitrification, AOA and AOB abundance as well as their community structure in a vegetable soil by using real-time PCR and terminal restriction fragment length polymorphism (T-RFLP). Our results showed that urea application significantly increased the net nitrification rates, but were significantly inhibited by both NIs, and the inhibitory effect of DMPP was significantly greater than that of DCD. AOB growth was more greatly inhibited by DMPP than by DCD, and the net nitrification rate was significantly related to AOB abundance, but not to AOA abundance. Application of urea and NIs to soil did not change the diversity of the AOA community, with the T-RFs remaining in proportions that were similar to control soils, while the community structure of AOB exhibited obvious shifts within all different treatments compared to the control. Phylogenetic analysis showed that all AOA sequences fell within group 1.1a and group 1.1b, and the AOB community consisted of Nitrosospira cluster 3, cluster 0, and unidentified species. These results suggest that DMPP exhibited a stronger inhibitory effect on nitrification than DCD by inhibiting AOB rather than AOA.

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