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Utilizing plasma-generated N 2 O 5 gas from atmospheric air as a novel gaseous nitrogen source for plants.

Taro YamanashiShouki TakeshiShota SasakiKeisuke TakashimaToshiro KanekoYasuhiro IshimaruNobuyuki Uozumi
Published in: Plant molecular biology (2024)
Fixing atmospheric nitrogen for use as fertilizer is a crucial process in promoting plant growth and enhancing crop yields in agricultural production. Currently, the chemical production of nitrogen fertilizer from atmospheric N 2 relies on the energy-intensive Haber-Bosch process. Therefore, developing a low-cost and easily applicable method for fixing nitrogen from the air would provide a beneficial alternative. In this study, we tested the utilization of dinitrogen pentoxide (N 2 O 5 ) gas, generated from oxygen and nitrogen present in ambient air with the help of a portable plasma device, as a nitrogen source for the model plant Arabidopsis thaliana. Nitrogen-deficient plants supplied with medium treated with N 2 O 5 , were able to overcome nitrogen deficiency, similar to those provided with medium containing a conventional nitrogen source. However, prolonged direct exposure of plants to N 2 O 5 gas adversely affected their growth. Short-time exposure of plants to N 2 O 5 gas mitigated its toxicity and was able to support growth. Moreover, when the exposure of N 2 O 5 and the contact with plants were physically separated, plants cultured under nitrogen deficiency were able to grow. This study shows that N 2 O 5 gas generated from atmospheric nitrogen can be used as an effective nutrient for plants, indicating its potential to serve as an alternative nitrogen fertilization method for promoting plant growth.
Keyphrases
  • particulate matter
  • plant growth
  • carbon dioxide
  • arabidopsis thaliana
  • climate change
  • oxidative stress
  • risk assessment
  • endothelial cells
  • heavy metals
  • replacement therapy
  • human health
  • sewage sludge