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Influence of Silver Nanoparticles on the Metabolites of Two Transgenic Soybean Varieties: An NMR-Based Metabolomics Approach.

Amanda L QuintelaMaria F C SantosRodrigo F de LimaJuliana L S MayerGustavo Galo MarcheafaveMarco Aurélio Zezzi ArrudaCláudio Francisco Tormena
Published in: Journal of agricultural and food chemistry (2024)
This study investigated the effect of AgNPs and AgNO 3 , at concentrations equivalent, on the production of primary and secondary metabolites on transgenic soybean plants through an NMR-based metabolomics. The plants were cultivated in a germination chamber following three different treatments: T0 (addition of water), T1 (addition of AgNPs), and T2 (addition of AgNO 3 ). Physiological characteristics, anatomical analyses through microscopic structures, and metabolic profile studies were carried out to establish the effect of abiotic stress on these parameters in soybean plants. Analysis of the 1 H NMR spectra revealed the presence of amino acids, organic acids, sugars, and polyphenols. The metabolic profiles of plants with AgNP and AgNO 3 were qualitatively similar to the metabolic profile of the control group, suggesting that the application of silver does not affect secondary metabolites. From the PCA, it was possible to differentiate the three treatments applied, mainly based on the content of fatty acids, pinitol, choline, and betaine.
Keyphrases
  • silver nanoparticles
  • high resolution
  • magnetic resonance
  • ms ms
  • mass spectrometry
  • solid state
  • fatty acid
  • amino acid
  • gold nanoparticles
  • stress induced
  • high speed