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Bioefficacy of Epaltes divaricata (L.) n-Hexane Extracts and Their Major Metabolites against the Lepidopteran Pests Spodoptera litura (fab.) and Dengue Mosquito Aedes aegypti (Linn.)

The present research investigated the chemical characterization and insecticidal activity of n-Hexane extracts of Epaltes divaricata (NH-EDx) along with their chief derivatives n-Hexadecanoic acid (n-HDa) and n-Octadecanoic acid (n-ODa) against the dengue vector Aedes aegypti and lepidopteran pest S...

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Autores principales: Amala, Kesavan, Karthi, Sengodan, Ganesan, Raja, Radhakrishnan, Narayanaswamy, Srinivasan, Kumaraswamy, Mostafa, Abd El-Zaher M. A., Al-Ghamdi, Abdullah Ahmed, Alkahtani, Jawaher, Elshikh, Mohamed Soliman, Senthil-Nathan, Sengottayan, Vasantha-Srinivasan, Prabhakaran, Krutmuang, Patcharin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8234362/
https://www.ncbi.nlm.nih.gov/pubmed/34204264
http://dx.doi.org/10.3390/molecules26123695
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author Amala, Kesavan
Karthi, Sengodan
Ganesan, Raja
Radhakrishnan, Narayanaswamy
Srinivasan, Kumaraswamy
Mostafa, Abd El-Zaher M. A.
Al-Ghamdi, Abdullah Ahmed
Alkahtani, Jawaher
Elshikh, Mohamed Soliman
Senthil-Nathan, Sengottayan
Vasantha-Srinivasan, Prabhakaran
Krutmuang, Patcharin
author_facet Amala, Kesavan
Karthi, Sengodan
Ganesan, Raja
Radhakrishnan, Narayanaswamy
Srinivasan, Kumaraswamy
Mostafa, Abd El-Zaher M. A.
Al-Ghamdi, Abdullah Ahmed
Alkahtani, Jawaher
Elshikh, Mohamed Soliman
Senthil-Nathan, Sengottayan
Vasantha-Srinivasan, Prabhakaran
Krutmuang, Patcharin
author_sort Amala, Kesavan
collection PubMed
description The present research investigated the chemical characterization and insecticidal activity of n-Hexane extracts of Epaltes divaricata (NH-EDx) along with their chief derivatives n-Hexadecanoic acid (n-HDa) and n-Octadecanoic acid (n-ODa) against the dengue vector Aedes aegypti and lepidopteran pest Spodoptera litura. Chemical screening of NH-EDx through GC–MS analysis delivered nine major derivatives, and the maximum peak area percentage was observed in n-Hexadecanoic acid (14.63%) followed by n-Octadecadienoic acid (6.73%). The larvicidal activity of NH-EDx (1000 ppm), n-HDa (5 ppm), and n-ODa (5 ppm) against the A. aegypti and S. litura larvae showed significant mortality rate in a dose-dependent way across all the instars. The larvicidal activity was profound in the A. aegypti as compared to the S. litura across all the larval instars. The sublethal dosages of NH-EDx (500 ppm), n-HDa (2.5 ppm), and n-ODa (2.5 ppm) also showed alterations in the larval/pupal durations and adult longevity in both the insect pests. The enzyme activity revealed that the α- and β-carboxylesterase levels were decreased significantly in both the insect pests, whereas the levels of GST and CYP450 uplifted in a dose-dependent manner of NH-EDx, n-HDa, and n-ODa. Correspondingly, midgut tissues such as the epithelial layer (EL), gut lumen (GL), peritrophic matrix (Pm), and brush border membrane (BBM) were significantly altered in their morphology across both A. aegypti and S. litura against the NH-EDx and their bioactive metabolites. NH-EDx and their bioactive metabolites n-HDa and n-ODa showed significant larvicidal, growth retardant, enzyme inhibition, and midgut toxicity effects against two crucial agriculturally and medically challenging insect pest of ecological importance.
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spelling pubmed-82343622021-06-27 Bioefficacy of Epaltes divaricata (L.) n-Hexane Extracts and Their Major Metabolites against the Lepidopteran Pests Spodoptera litura (fab.) and Dengue Mosquito Aedes aegypti (Linn.) Amala, Kesavan Karthi, Sengodan Ganesan, Raja Radhakrishnan, Narayanaswamy Srinivasan, Kumaraswamy Mostafa, Abd El-Zaher M. A. Al-Ghamdi, Abdullah Ahmed Alkahtani, Jawaher Elshikh, Mohamed Soliman Senthil-Nathan, Sengottayan Vasantha-Srinivasan, Prabhakaran Krutmuang, Patcharin Molecules Article The present research investigated the chemical characterization and insecticidal activity of n-Hexane extracts of Epaltes divaricata (NH-EDx) along with their chief derivatives n-Hexadecanoic acid (n-HDa) and n-Octadecanoic acid (n-ODa) against the dengue vector Aedes aegypti and lepidopteran pest Spodoptera litura. Chemical screening of NH-EDx through GC–MS analysis delivered nine major derivatives, and the maximum peak area percentage was observed in n-Hexadecanoic acid (14.63%) followed by n-Octadecadienoic acid (6.73%). The larvicidal activity of NH-EDx (1000 ppm), n-HDa (5 ppm), and n-ODa (5 ppm) against the A. aegypti and S. litura larvae showed significant mortality rate in a dose-dependent way across all the instars. The larvicidal activity was profound in the A. aegypti as compared to the S. litura across all the larval instars. The sublethal dosages of NH-EDx (500 ppm), n-HDa (2.5 ppm), and n-ODa (2.5 ppm) also showed alterations in the larval/pupal durations and adult longevity in both the insect pests. The enzyme activity revealed that the α- and β-carboxylesterase levels were decreased significantly in both the insect pests, whereas the levels of GST and CYP450 uplifted in a dose-dependent manner of NH-EDx, n-HDa, and n-ODa. Correspondingly, midgut tissues such as the epithelial layer (EL), gut lumen (GL), peritrophic matrix (Pm), and brush border membrane (BBM) were significantly altered in their morphology across both A. aegypti and S. litura against the NH-EDx and their bioactive metabolites. NH-EDx and their bioactive metabolites n-HDa and n-ODa showed significant larvicidal, growth retardant, enzyme inhibition, and midgut toxicity effects against two crucial agriculturally and medically challenging insect pest of ecological importance. MDPI 2021-06-17 /pmc/articles/PMC8234362/ /pubmed/34204264 http://dx.doi.org/10.3390/molecules26123695 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Amala, Kesavan
Karthi, Sengodan
Ganesan, Raja
Radhakrishnan, Narayanaswamy
Srinivasan, Kumaraswamy
Mostafa, Abd El-Zaher M. A.
Al-Ghamdi, Abdullah Ahmed
Alkahtani, Jawaher
Elshikh, Mohamed Soliman
Senthil-Nathan, Sengottayan
Vasantha-Srinivasan, Prabhakaran
Krutmuang, Patcharin
Bioefficacy of Epaltes divaricata (L.) n-Hexane Extracts and Their Major Metabolites against the Lepidopteran Pests Spodoptera litura (fab.) and Dengue Mosquito Aedes aegypti (Linn.)
title Bioefficacy of Epaltes divaricata (L.) n-Hexane Extracts and Their Major Metabolites against the Lepidopteran Pests Spodoptera litura (fab.) and Dengue Mosquito Aedes aegypti (Linn.)
title_full Bioefficacy of Epaltes divaricata (L.) n-Hexane Extracts and Their Major Metabolites against the Lepidopteran Pests Spodoptera litura (fab.) and Dengue Mosquito Aedes aegypti (Linn.)
title_fullStr Bioefficacy of Epaltes divaricata (L.) n-Hexane Extracts and Their Major Metabolites against the Lepidopteran Pests Spodoptera litura (fab.) and Dengue Mosquito Aedes aegypti (Linn.)
title_full_unstemmed Bioefficacy of Epaltes divaricata (L.) n-Hexane Extracts and Their Major Metabolites against the Lepidopteran Pests Spodoptera litura (fab.) and Dengue Mosquito Aedes aegypti (Linn.)
title_short Bioefficacy of Epaltes divaricata (L.) n-Hexane Extracts and Their Major Metabolites against the Lepidopteran Pests Spodoptera litura (fab.) and Dengue Mosquito Aedes aegypti (Linn.)
title_sort bioefficacy of epaltes divaricata (l.) n-hexane extracts and their major metabolites against the lepidopteran pests spodoptera litura (fab.) and dengue mosquito aedes aegypti (linn.)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8234362/
https://www.ncbi.nlm.nih.gov/pubmed/34204264
http://dx.doi.org/10.3390/molecules26123695
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