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March 26, 2026Foods2 citationsOpen Access

Effect of Farming System on Grain Composition and Immunogenic Potential of Ancient and Modern Durum Wheat Varieties

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ABAnis BoukrainCMCristina Martinez-VillaluengaJFJuana Frías

Key Points

  • The aim is to understand how farming systems impact grain composition and the immunogenic potential of different durum wheat varieties.
  • Compared organic and conventional farming systems on 13 durum wheat varieties
  • Analyzed protein content, gluten quality, and starch levels
  • Conducted peptidomic analysis and epitope mapping after simulated digestion
  • Measured immunochemical reactivity using anti-gliadin antibodies
  • Organic farming reduced starch accumulation by 3.2–39.9%
  • Lower immunochemical reactivity in organically grown wheat
  • Peptidomic analysis showed 20.8–43.6% fewer immunogenic peptides in organic wheat compared to conventional
  • Genotype strongly influenced protein content and quality traits, with no consistent farming system effect across all varieties

Abstract

Organic farming is increasingly promoted as a sustainable alternative to conventional wheat production; however, its effects on grain quality and immunogenic potential remain insufficiently understood. This study evaluated the influence of the farming system (organic vs. conventional) on grain composition, technological quality traits, immunochemical reactivity, and immunogenic peptide profiles in 13 durum wheat varieties, including traditional and modern Tunisian varieties. Protein fraction content, amino acid composition, gluten-quality parameters, starch content, and immunochemical reactivity against anti-gliadin antibodies were determined. In addition, in vitro digestion followed by LC–MS/MS peptidomic analysis and epitope mapping was performed on representative ancient and modern varieties to investigate the release of celiac-disease-related immunogenic peptides after simulated gastrointestinal digestion. Protein content and quality traits were mainly genotype-dependent, with no consistent effect from the farming system across all varieties. Organic farming was associated with reduced starch accumulation (3.2–39.9% reduction) and lower immunochemical reactivity. Peptidomic analysis further revealed a reduced number and relative abundance (20.8–43.6% lower abundance) of immunogenic peptides in organically cultivated wheat compared with conventionally grown counterparts. This study highlights the significant interaction between the genotype and farming system, and provides a novel demonstration that organic management can reduce the abundance of celiac-disease-related immunogenic peptides, particularly in ancient varieties.

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Cite This Study

Boukrain et al. (2026) studied this question.

synapsesocial.com/papers/69c4ccf7fdc3bde448918b28https://doi.org/10.3390/foods15071121
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Genotype and Agronomic Management Interactions Shape the Accumulation of Immunogenic and Toxic Gluten Peptides in Durum Wheat2026
  2. 2Comparison of Wheat Quality, Antioxidant Activity, and Mycotoxins Under Organic and Conventional Farming2025
  3. 3Conventional Versus Organic Wheat Production: Implications on Breeding and the Supply Chain2026
  4. 4Farmer vs. industrial practices: impact of varieties and process on the protein solubility and digestibility of soft wheat products.2026
  5. 5Trade-Offs in Organic Wheat: Lower Protein Quality Versus Enhanced Prebiotic Oligosaccharides2026