Novel Synthetic Strategy and Field Testing Tomato Pinworm Pheromone in Armenia

  • Chem Biodivers. 2025 Jul;22(7):e202403455. doi: 10.1002/cbdv.202403455.
Nina G Hobosyan  1  2 Kristine V Balyan  1  3 Lusine A Movsisyan  1 Varduhi S Hovsepyan  1  4 Hmayak B Sargsyan  1 Haykanush R Pogosyan  1 Harutyun R Harutyunyan  5 Armine A Manvelyan  6 Margarit H Ghazaryan  6 Samvel S Asatryan  6  7 Hrant L Terlemezyan  5
Affiliations
  • 1. Department of Organic Chemistry, Scientific Technological Center of Organic and Pharmaceutical Chemistry, National Academy of Sciences of the Republic of Armenia, Yerevan, Republic of Armenia.
  • 2. Department of Pharmaceutical Chemistry, Yerevan Haybusak University, Yerevan, Republic of Armenia.
  • 3. Department of Pharmaceutical Chemistry, International Scientific Educational Center of NASRA, Yerevan, Republic of Armenia.
  • 4. Department of Biology and Chemistry and their Teaching Methodology, Armenian State Pedagogical University after Khachatur Abovyan, Yerevan, Republic of Armenia.
  • 5. Department of Plant Protection, Research Centre of Risk Assessment and Analysis in Food Safety Area, Ministry of Economy of the Republic of Armenia, Merdzavan, Republic of Armenia.
  • 6. Department of Agronomy, Horticulture and Plant Protection, Armenian National Agrarian University, Yerevan, Republic of Armenia.
  • 7. Department of Plant Breeding, Ministry of Economy of the Republic of Armenia, Yerevan, Republic of Armenia.
Abstract

Two synthon C10 + C3 strategy syntheses of tomato pinworm sex pheromone- (E)-, (Z)-tridec-4-en-1-yl acetates- were illustrated. The iodinated dec-1-yn was successfully applied as a substrate in the synthesis of Sex Pheromone. The C10-component-1-iododec-1-yne was first obtained by the electrophilic iodination of dec-1-yne in the presence of cadmium (II) acetate. Additionally, the C3 component was produced from 2-(3-bromopropoxy) tetrahydro-2H-pyran by the Grignard reaction. The most important stage was the coupling of C10 and C3 components, and condensation in tetrahydrofuran in the presence of dilithium tetrachlorocuprate was carried out due to the great reactivity of the 1-iododec-1-yne. The dispensers were made based on the target Sex Pheromone and located in the traps. The active preparative forms were tested in field conditions in some regions of Armenia in 2024. Based on the field studies Keiferia lycopersicella belonging to the family Gelechiidae was recorded in Armenia (Armavir, Ararat, Tavush, and Kotayk regions) for the first time.

Keywords
Keiferia lycopersicella; coupling reaction; field tests in Armenia; preparative forms; sex pheromone.
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