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December 9, 2025Journal of Agricultural and Food Chemistry2 citations

Floral Volatile Organic Compound Profiles of Eco-Functional Plants Shape Plant–Insect Interactions and Their Community Structures in Wheat Agroecosystems

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XZXiangfen ZhangAMAsim MunawarYHYu Hu

Key Points

  • Investigate how volatile organic compounds from functional plants influence natural enemy recruitment in wheat agroecosystems.
  • Established three functional plants around wheat fields for two years.
  • Conducted GC-MS analysis of volatile organic compounds released by plants.
  • Performed Y-tube olfactometer bioassays to assess insect responses to plant VOCs.
  • Carried out synthetic VOC bioassays with key compounds to study natural enemy attraction.
  • Used electroantennogram recordings to evaluate sensitivity of natural enemies to VOCs.
  • Identified distinct volatile organic compound profiles from functional plants.
  • Demonstrated differential attraction of natural enemies to specific VOCs.
  • Confirmed neurophysiological mechanisms affecting behavioral preferences of insects.

Abstract

Elucidating volatile-mediated chemical communication between functional plants and natural enemies is critical for sustainable pest management. Three functional plants (Cnidium monnieri (L.) Cusson, Angelica sinensis (Oliv.) Diels, and Ligustrum quihoui Carriere) were established around wheat fields to investigate natural enemy recruitment over two years (2024-2025). Functional plants established differential insect community structures with distinct taxonomic profiles. GC-MS analysis revealed species-specific volatile organic compound (VOC) profiles, with phenol, nonanal, α-pinene, and α-farnesene highly emitted. Y-tube olfactometer bioassays demonstrated differential attractive responses of three natural enemy species to plant VOC. Synthetic VOC bioassays with seven key compounds (α-farnesene, phenol, copaene, α-pinene, caryophyllene, d-limonene, and linalool) revealed species-specific, concentration-dependent attraction and repellent responses. Electroantennogram recordings confirmed that natural enemies detected VOCs with differential sensitivity patterns, revealing distinct neurophysiological mechanisms underlying behavioral preferences. Strategic functional plant deployment enables predictable natural enemy recruitment through species-specific VOC signaling for integrated pest management.

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Cite This Study

Zhang et al. (2025) studied this question.

synapsesocial.com/papers/69401efa2d562116f28f9935https://doi.org/10.1021/acs.jafc.5c12170
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