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Inhibition of autotrophic nitrifiers in a nitrogen-rich paddy soil by elevated CO2

  • Kaihang Zhang,
  • Weilei Lei,
  • Huixin Zhang,
  • Chenchao Xu,
  • Jing Xiao,
  • Shuyao Li,
  • Maojun Liang,
  • Junpan He,
  • Yancen Lai,
  • Ruiyang Li,
  • Jiahua Dong,
  • Mingkai Jiang,
  • Jianguo Zhu,
  • Shuijin Hu,
  • Roger T. Koide,
  • Mary K. Firestone,
  • Lei Cheng

摘要

Autotrophic nitrifiers, by catalysing the oxidation of ammonia to nitrate, play a vital role in the global nitrogen cycle. They convert carbon dioxide (CO2) into biomass and, therefore, are expected to respond positively to increasing atmospheric CO2 concentrations. However, in a long-term free-air CO2 enrichment experiment, we demonstrated that elevated atmospheric CO2 inhibited the growth of autotrophic nitrifiers, resulting in a reduction in nitrification in a rice ecosystem. By coupling stable-isotope probing with metagenomics, we found that the CO2 inhibition of nitrifiers was mainly a consequence of CO2-induced functional loss (genomes not recovered from metagenomes) of dominant but previously uncharacterized autotrophic nitrifying species. These species belonged mainly to ammonia-oxidizing archaea and nitrite-oxidizing bacteria and comprised 63% of total dominant members identified from the active nitrifying communities. We further showed that the functional loss of these novel nitrifying species under elevated CO2 was due largely to the CO2-induced aggravation of anoxic stress in the paddy soil. Our results provide insight into the fate of inorganic nitrogen pools in global lowland soil and water systems under climate change.