Anti‐Phytopathogenic and Phytotoxic Effects of Annona glabra Lin. and Annona muricata Lin. Seed Extracts: In vitro and In vivo Assessment, Bioactive Compound Quantification, and Mechanism Involved

Author:

Le Dang Quang12,Quoc Nguyen Cuong3ORCID,De Tran Quang3,Kim Jin‐Cheol4,Thi Vo Kieu Anh1,Thi Cao Hong1,Thi Nguyen Xuyen1,Huy Nguyen Trung1,Thi Nguyen Thu Trang12,Huu Nguyen Tung5,Tu Ho Cuong26,Thanh Nguyen Cong7,Tam Le The8,Son Nguyen Vu19,Ja Choi Gyung10

Affiliation:

1. Institute for Tropical Technology Vietnam Academy of Science and Technology 18 Hoang Quoc Viet str. 10072 Cau Giay dist., Hanoi Vietnam

2. Graduate University of Science and Technology Vietnam Academy of Science and Technology 10072 Hanoi Vietnam

3. Department of Chemistry College of Natural Sciences Can Tho University Campus II 3/2 str. 94000 Ninh Kieu dist., Can Tho Vietnam

4. Division of Applied Bioscience and Biotechnology Institute of Environmentally Friendly Agriculture College of Agriculture and Life Sciences Chonnam National University 500-757 Gwangju Republic of Korea

5. Faculty of Pharmacy PHENIKAA University 10072 Ha Noi Vietnam

6. Institute of Environmental Technology Vietnam Academy of Science and Technology 18 Hoang Quoc Viet str. 10072 Cau Giay dist., Hanoi Vietnam

7. French National Research Institute for Sustainable Development 10000 Hanoi Vietnam

8. Vinh University 182 Le Duan 460000 Vinh Vietnam

9. Department of Pharmaceutical Chemistry and Pesticides Technology School of Chemical Engineering Hanoi University of Science and Technology 1 Dai Co Viet 10000 Hanoi Vietnam

10. Center for Eco-friendly New Materials Korea Research Institute of Chemical Technology 305-600 Daejeon Republic of Korea

Abstract

AbstractBuilding upon prior research demonstrating the excellent antifungal and nematicidal efficacy of Annona squamosa Lin. seed extracts, this study extends its scope to investigate similar properties in seed extracts from two other Annonaceae species: Annona muricata Lin. and Annona glabra Lin. The focus is on assessing their effectiveness against tomato late blight (TLB) and wheat leaf rust (WLR) diseases, as well as their broader antifungal activity against Colletotrichum sp. and Fusarium sp. The A. glabra seed extract exerted a superior control efficacy against TLB (85 % at 62.5 μg/mL) and WLR (75 % at 125 μg/mL) in vivo. The two Annonaceous extracts also exhibited in vitro antifungal inhibition against Colletotrichum sp. and Fusarium sp., as well as toxicology against pine wilt nematodes and Artemia salina. Besides, they showed phytotoxicity against Raphanus sativus seed germination. Squamocin G, a potent bioactive acetogenin, was isolated from A. glabara, which was found to occur at high contents in the following ascending order in A. glabra, A. muricata and A. squamosa dichloromethane extracts. To investigate the antifungal mechanism, molecular docking and molecular dynamic of squamocin G ligand were also performed for the first time at the active site of succinate dehydrogenase and β‐tubulin.

Funder

Vietnam Academy of Science and Technology

Publisher

Wiley

Reference66 articles.

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