Chemical Composition, Repellent, and Phytotoxic Potentials of the Fractionated Resin Essential Oil from Araucaria heterophylla Growing in Tunisia

Author:

Ben Romdhane Oumayma1,Baccari Wiem1,Saidi Ilyes1,Flamini Guido23,Ascrizzi Roberta23,Chaieb Ikbal4,Halim Harrath Abdel5,Jannet Hichem Ben1ORCID

Affiliation:

1. Laboratory of Heterocyclic Chemistry Natural Products and Reactivity (LR11ES39) Team: Medicinal Chemistry and Natural Products Faculty of Science of Monastir University of Monastir Avenue of Environment 5019 Monastir Tunisia Phone

2. Dipartimento di Farmacia Università di Pisa Via Bonanno 6 56126 Pisa Italy

3. Centro Interdipartimentale di Ricerca “Nutraceutica e Alimentazione per la Salute” Nutrafood University of Pisa Italy

4. Laboratory of Horticultural production and protection (LR21AGR03) Regional Centre of Research on Horticulture and Organic Agriculture, 57 University of Sousse Chott Mariem TN-4042 Sousse Tunisia

5. Department of Zoology, College of Science King Saud University Riyad 11451 Saudi Arabia

Abstract

AbstractThe resin essential oil (REO) of the Tunisian Araucaria heterophylla trunk bark was investigated for its chemical composition. Then, it was evaluated for its insecticidal and allelopathic activities. The REO was obtained by hydrodistillation for 9 h (yield of 4.2 % w/w). Moreover, fractional hydrodistillation was carried out at 3‐hour intervals, resulting in 3 fractions (R1–R3), to facilitate chemical identification and localization of the aforementioned biological activities. GC/MS analysis of the obtained samples allowed the identification of 25 compounds, representing between 91.2 and 96.3 % of their total constituents, which consisted predominantly of sesquiterpene hydrocarbons, oxygenated sesquiterpenes and diterpene hydrocarbons. α‐Copaene (10.8 %), γ‐muurolene (5.8 %), α‐copaen‐11‐ol (7.8 %), spathulenol (10.5 %), 15‐copaenol (8.2 %), ylangenal (10.3 %), dehydrosaussurea lactone (7.7 %), and sandaracopimaradiene (11.4 %) were identified as major compounds. The second part aimed to assess the impact of the A. heterophylla EO and its three fractions for their insecticidal and repellent activity against Tribolium castaneum (Herbst), a stored grain pest, of which a strong repellent activity was noted. In addition, the studied samples showed high phytotoxic effects against Lactuca sativa. The third fraction (R3) performed a total inhibitory potential on seed germination and seedling growth of the target plant. Furthermore, alongside this discovery, an estimation was conducted through molecular docking analysis. Wherein the main compounds of the studied samples were docked into the active pocket of protoporphyrinogen IX oxidase (PDB: 1SEZ), a key enzyme in chlorophyll biosynthesis. Thus, it is recommended to use the REO of A. heterophylla as a natural herbicide.

Publisher

Wiley

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