4.5 Article

Insecticidal effects of a novel polyherbal formulation (HF7) against Culex pipiens L. (Diptera: Culicidae)

Journal

SAUDI JOURNAL OF BIOLOGICAL SCIENCES
Volume 29, Issue 1, Pages 279-286

Publisher

ELSEVIER
DOI: 10.1016/j.sjbs.2021.08.101

Keywords

Botanical pesticide; Culex pipiens; Histopathology; Cytotoxicity; Mosquito control

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Funding

  1. King Saud University, Riyadh, Saudi Arabia [RSP-2021/112]

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Plant secondary metabolites, particularly the extract of seven plants (HF7), showed strong mosquitocidal activity against Culex pipiens at larval and adult stages. The HF7 extract contained a variety of secondary metabolites, with eugenol being the dominant compound. This suggests HF7 could be an effective botanical insecticide for controlling Cx. pipiens and potentially other mosquito species.
Plant secondary metabolites represent the most efficient and convenient method to control and overcome environmental pollution and insecticidal resistance. This study explored the mosquitocidal activity of the combined extract of seven plants, (HF7) extracted using a Soxhlet extractor against Culex pipiens under laboratory conditions. Exposure of the 3rd instars of Cx. pipiens to HF7 hexane extract resulted in LC50:114.5 lg/mL and LC90:117.0 lg/mL values after 24 h. The ovicidal activities of hexane extract against Cx. pipiens eggs were 21.6%, 48.3%, and 71.6% at 187.5, 93.7, and 46.88 lg/mL, respectively. HF7-treated larvae showed the formation of irregular blebbing of epithelial cells toward the lumen and sloughing into the gut lumen. HF7 extract resulted in 100% adulticidal mortality at the concentration of 3.7 mg/test tube after 30 min of exposure. The IC50 of HF7 extract was 97.03 mg/ml against larvae, at which nuclear and morphological changes were observed. The spectroscopy spectrum of HF7 hexane extract disclosed the presence of 57 different secondary metabolites, among which the dominant compound was eugenol (32.3%). HF7 hexane extract could serve as a botanical insecticide for controlling Cx. pipiens and potentially other mosquito species. (C) 2021 The Authors. Published by Elsevier B.V. on behalf of King Saud University.

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