Potential insecticidal extracts from Artocarpus lacucha against Spodoptera litura (Lepidoptera: Noctuidae) larvae

Author:

Ruttanaphan Torranis1,Songoen Weerasak23,Pluempanupat Wanchai3ORCID,Bullangpoti Vasakorn4ORCID

Affiliation:

1. Biology Program, School of Science, Walailak University , Nakhon Si Thammarat , Thailand

2. Central Laboratory and Greenhouse Complex, Faculty of Agriculture Kamphaeng Saen, Kasetsart University, Kamphaeng Saen Campus , Nakhon Pathom 73140 , Thailand

3. Department of Chemistry, Center of Excellence for Innovation in Chemistry and Special Research Unit for Advanced Magnetic Resonance, Faculty of Science, Kasetsart University , Bangkok 10900 , Thailand

4. Animal Toxicology and Physiology Specialty Research Unit, Department of Zoology, Faculty of Science, Kasetsart University , Bangkok , Thailand

Abstract

Abstract Artocarpus lacucha, a plant in the Moraceae family, has traditionally been used in Southeast Asian medicine to treat various ailments. This study investigated the insecticidal potential against Spodoptera litura of several compounds extracted from A. lacucha using a topical application method. A sequential extraction method was employed with A. lacucha stems to identify the most toxic crude extract by using hexane, dichloromethane, ethyl acetate, and methanol solvents. Subsequently, the most toxic crude extract was analyzed for chemical composition by HPLC, followed by the isolation process. Among these crude extracts, the ethyl acetate crude extract was the most toxic to second-instar S. litura larvae (24-h LD50 value of ~9.07 µg/larva). Our results showed that the catechin isolated from the ethyl acetate crude extract exhibited the highest toxicity against this insect (24-h LD50 value of ~8.37 µg/larva). Additionally, catechin significantly decreased the activities of acetylcholinesterase, carboxylesterases, and glutathione S-transferase in the larvae. These findings suggest that catechin isolated from A. lacucha could be a potential insecticidal agent against S. litura. However, the toxicity and persistence of catechin under field conditions need to be further investigated to develop this novel insecticide.

Funder

Faculty of Science, Kasetsart University

ISB funding

Kasetsart University

Kasetsart University Research and Development Institute

Center of Excellence for Innovation in Chemistry

Ministry of Higher Education, Science Research and Innovation

Ministry of Higher Education, Science, Research and Innovation

Thailand Science Research and Innovation

Kasetsart University Reinventing University Program 2021

Publisher

Oxford University Press (OUP)

Subject

Insect Science,Ecology,General Medicine

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