Insect Growth Regulator and Insecticidal Activity of β-Dihydroagarofurans from Maytenus spp. (Celastraceae)

Author:

Céspedes Carlos L.1,Alarcón Julio2,Aranda Eduardo3,Becerra José4,Silva Mario4

Affiliation:

1. Instituto de Química, Universidad National Autónoma de México, Coyoacán 04510, Mexico DF, Mexico.

2. Dpto. Ciencias Básicas, Facultad de Ciencias, Universidad del Bío-Bío. Chilián, Chile

3. Centro de Investigación en Biotecnología, Universidad Autónoma del Estado de Morelos, Cuernavaca, Morelos, México

4. Dpto. Botánica, Facultad de Ciencias Naturales y Oceanográficas, Universidad de Concepción, Chile

Abstract

From the aerial parts of Maytenus disticha, we have isolated 9β-benzoyloxy-1α,2α,6β,8α,15- penta-acetoxy-dihydro-β-agarofuran (1) and from seeds of Maytenus boaria 9β-furoyloxy-1α, 6β, 8α-triacetoxy-dihydro-β-agarofuran (2). These compounds and their MeOH and hexane/ethyl acetate (1:1 v/v) extracts were evaluated for their effects on the fall armyworm (Spodoptera frugiperda). Toosendanin, a commercial insecticide derived from Melia azedarach was used as a positive control. When tested for activity using neonate larvae in a nochoice artificial diet bioassays, the agarofurans 1, 2 and toosendanin as well as the MeOH and hexane/EtOAc extracts caused significant growth inhibitory effects with GC50 of 7.55; 3.84; 1.75; 14.0 and 7.3 ppm at 7 days, respectively. Compounds 1 and 2 caused 100% larval mortality at 25 and 15 ppm, respectively. MeOH and hexane/EtOAc extracts caused 100% larval mortality at 25.0 ppm, respectively, they also increased the development time of surviving larvae and a significant delay for the time of pupation and adult emergence. These compounds showed comparable potency of activity with toosendanin. Acute toxicity against adults of S. frugiperda was also found, for hexane/EtOAc extract and 2 had the most potent activity with LD50 value of 4.7 and 1.9 ppm, respectively. MeOH extract, hexane/EtOAc extract, 1 and 2 caused acetylcholinesterase inhibition with 78.0, 89.2, 79.3 and 100% inhibition at 15.0 ppm, respectively. Therefore, the furoyloxy agarofuran may be responsible for the insecticidal activity of these plants

Publisher

Walter de Gruyter GmbH

Subject

General Biochemistry, Genetics and Molecular Biology

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