<p>The present study was designed to evaluate the role of tellurium-doped zinc oxide nanoparticles as potential elicitors for augmenting the levels of bioactive compounds in buckwheat microgreens and sprouts. The maximum content of total phenolics (7.14 ± 0.10&#xa0;mg GAE g<sup>−1</sup> FW in microgreens, 9.23 ± 0.08&#xa0;mg GAE g<sup>−1</sup> FW in sprouts), total flavonoids (13.40 ± 0.23&#xa0;mg RE g<sup>−1</sup> FW in microgreens, 9.94 ± 0.22&#xa0;mg RE g<sup>−1</sup> FW in sprouts), total tannins (18.59 ± 0.14&#xa0;mg GAE g<sup>−1</sup> FW in microgreens, 19.09 ± 0.12&#xa0;mg GAE g<sup>−1</sup> FW in sprouts), DPPH radical scavenging (268.74 ± 0.60% in microgreens, 297.37 ± 0.91% in sprouts) and FRAP activity (187.44 ± 1.90&#xa0;mg Fe (II) g<sup>−1</sup> FW in microgreens, 203.14 ± 0.94&#xa0;mg Fe (II) g<sup>−1</sup> FW in sprouts) were obtained when nanoparticles were sprayed at 50 and 10&#xa0;mg/l concentrations respectively. Furthermore, the highest content of rutin, ferulic acid and vanillic acid in microgreens and sprouts was attained at nanoparticle concentrations of 150 and 10&#xa0;mg/l, respectively. Thus, the acquired results suggest that the application of tellurium-doped zinc oxide nanoparticles could be a promising method for promoting the accumulation of bioactive compounds in buckwheat microgreens and sprouts.</p>

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Unveiling the novel potential of tellurium-doped zinc oxide nanoparticles as an elicitor for improving the content of bioactive compounds in buckwheat (Fagopyrum esculentum Moench) microgreens and sprouts

  • Nikhil Kawatra,
  • Gulshan Jha,
  • Akhilesh Dubey,
  • Aishwarya Singh,
  • Bhavani Prasad Nenavathu,
  • Harinder Singh

摘要

The present study was designed to evaluate the role of tellurium-doped zinc oxide nanoparticles as potential elicitors for augmenting the levels of bioactive compounds in buckwheat microgreens and sprouts. The maximum content of total phenolics (7.14 ± 0.10 mg GAE g−1 FW in microgreens, 9.23 ± 0.08 mg GAE g−1 FW in sprouts), total flavonoids (13.40 ± 0.23 mg RE g−1 FW in microgreens, 9.94 ± 0.22 mg RE g−1 FW in sprouts), total tannins (18.59 ± 0.14 mg GAE g−1 FW in microgreens, 19.09 ± 0.12 mg GAE g−1 FW in sprouts), DPPH radical scavenging (268.74 ± 0.60% in microgreens, 297.37 ± 0.91% in sprouts) and FRAP activity (187.44 ± 1.90 mg Fe (II) g−1 FW in microgreens, 203.14 ± 0.94 mg Fe (II) g−1 FW in sprouts) were obtained when nanoparticles were sprayed at 50 and 10 mg/l concentrations respectively. Furthermore, the highest content of rutin, ferulic acid and vanillic acid in microgreens and sprouts was attained at nanoparticle concentrations of 150 and 10 mg/l, respectively. Thus, the acquired results suggest that the application of tellurium-doped zinc oxide nanoparticles could be a promising method for promoting the accumulation of bioactive compounds in buckwheat microgreens and sprouts.