Javascript must be enabled to continue!
Insecticidal Efficacy of Metarhizium anisopliae Derived Chemical Constituents against Disease-Vector Mosquitoes
View through CrossRef
Insecticides can cause significant harm to both terrestrial and aquatic environments. The new insecticides derived from microbial sources are a good option with no environmental consequences. Metarhizium anisopliae (mycelia) ethyl acetate extracts were tested on larvae, pupae, and adult of Anopheles stephensi (Liston, 1901), Aedes aegypti (Meigen, 1818), and Culex quinquefasciatus (Say, 1823), as well as non-target species Eudrilus eugeniae (Kinberg, 1867) and Artemia nauplii (Linnaeus, 1758) at 24 h post treatment under laboratory condition. In bioassays, Metarhizium anisopliae extracts had remarkable toxicity on all mosquito species with LC50 values, 29.631 in Ae. aegypti, 32.578 in An. stephensi and 48.003 in Cx. quinquefasciatus disease-causing mosquitoes, in A. nauplii shows (5.33–18.33 %) mortality were produced by the M. anisopliae derived crude extract. The LC50 and LC90 values were, 620.481; 6893.990 μg/mL. No behavioral changes were observed. A low lethal effect was observed in E. eugeniae treated with the fungi metabolites shows a 14.0 % mortality. The earthworm E. eugeniae mid-gut histology revealed that M. anisopliae extracts had no more harmful effects on the epidermis, circular muscle, setae, mitochondrion, and intestinal lumen tissues than chemical pesticides. By Liquid chromatography mass spectrometry (LC-MS) analysis, camphor (25.4 %), caprolactam (20.68 %), and monobutyl phthalate (19.0 %) were identified as significant components of M. anisopliae metabolites. Fourier transform infrared (FT-IR) spectral investigations revealed the presence of carboxylic acid, amides, and phenol groups, all of which could be involved in mosquito toxicity. The M. anisopliae derived chemical constituents are effective on targeted pests, pollution-free, target-specific, and are an alternative chemical insecticide.
Title: Insecticidal Efficacy of Metarhizium anisopliae Derived Chemical Constituents against Disease-Vector Mosquitoes
Description:
Insecticides can cause significant harm to both terrestrial and aquatic environments.
The new insecticides derived from microbial sources are a good option with no environmental consequences.
Metarhizium anisopliae (mycelia) ethyl acetate extracts were tested on larvae, pupae, and adult of Anopheles stephensi (Liston, 1901), Aedes aegypti (Meigen, 1818), and Culex quinquefasciatus (Say, 1823), as well as non-target species Eudrilus eugeniae (Kinberg, 1867) and Artemia nauplii (Linnaeus, 1758) at 24 h post treatment under laboratory condition.
In bioassays, Metarhizium anisopliae extracts had remarkable toxicity on all mosquito species with LC50 values, 29.
631 in Ae.
aegypti, 32.
578 in An.
stephensi and 48.
003 in Cx.
quinquefasciatus disease-causing mosquitoes, in A.
nauplii shows (5.
33–18.
33 %) mortality were produced by the M.
anisopliae derived crude extract.
The LC50 and LC90 values were, 620.
481; 6893.
990 μg/mL.
No behavioral changes were observed.
A low lethal effect was observed in E.
eugeniae treated with the fungi metabolites shows a 14.
0 % mortality.
The earthworm E.
eugeniae mid-gut histology revealed that M.
anisopliae extracts had no more harmful effects on the epidermis, circular muscle, setae, mitochondrion, and intestinal lumen tissues than chemical pesticides.
By Liquid chromatography mass spectrometry (LC-MS) analysis, camphor (25.
4 %), caprolactam (20.
68 %), and monobutyl phthalate (19.
0 %) were identified as significant components of M.
anisopliae metabolites.
Fourier transform infrared (FT-IR) spectral investigations revealed the presence of carboxylic acid, amides, and phenol groups, all of which could be involved in mosquito toxicity.
The M.
anisopliae derived chemical constituents are effective on targeted pests, pollution-free, target-specific, and are an alternative chemical insecticide.
Related Results
Metarhizium anisopliae: Unlocking green solutions for sustainable pest management
Metarhizium anisopliae: Unlocking green solutions for sustainable pest management
Metarhizium anisopliae (Metsch.), a naturally occurring entomopathogenic fungus, has emerged as a promising green bioinsecticide with significant potential for sustainable pest man...
Microbial exposure across life reduces susceptibility ofAedes aegyptito Zika virus by enhancing blood digestion and limiting midgut cell infection
Microbial exposure across life reduces susceptibility ofAedes aegyptito Zika virus by enhancing blood digestion and limiting midgut cell infection
The worldwide expansion of mosquito-borne pathogens necessitates improved control measures, including approaches to reduce transmission by mosquito vectors. Reducing transmission i...
Los texturizantes incrementan la producción de conidios de Metarhizium anisopliae
Los texturizantes incrementan la producción de conidios de Metarhizium anisopliae
La producción de hongos entomopatógenos para el control de plagas agrícolas se ha vuelto una alternativa para evitar la aplicación de insecticidas químicos, los cuales han generado...
Effects of Myco-Entomopathogens on Bio-Control of Trialeurodes Vaporariorum, Endophytic Colonization of Tomato, and Compatibility with selected pesticides
Effects of Myco-Entomopathogens on Bio-Control of Trialeurodes Vaporariorum, Endophytic Colonization of Tomato, and Compatibility with selected pesticides
Abstract
Purpose
The biological pest control efficiency of entomopathogenic fungi is improved by the endophytic establishment and combination with agricultural recommended...
The chemical code for attracting Culex mosquitoes
The chemical code for attracting Culex mosquitoes
Mosquitoes use chemical codes to locate and discriminate among vertebrate hosts to obtain a blood meal. Recent advances have allowed for the identification of the chemical codes us...
Toxicity of entomopathogenic fungi against Spodoptera frugiperda larvae under laboratory conditions
Toxicity of entomopathogenic fungi against Spodoptera frugiperda larvae under laboratory conditions
Maize Fall Armyworm (FAW), Spodoptera frugiperda (Lepidoptera: Noctuidae) is considered an economically important pest and becoming the main threat to food security. This polyphago...
Entomological survey to determine the role of cisterns in the production of Aedes aegypti in the U.S. Virgin Islands
Entomological survey to determine the role of cisterns in the production of Aedes aegypti in the U.S. Virgin Islands
Given the limited potable water supply in the U.S. Virgin Islands, most residents use cisterns to collect rainwater and store it for their daily needs. A survey conducted in 2019 f...
Evaluating the virulence of Metarhizium anisopliae (Deuteromycotina: Hyphomycetes) and Beauveria bassiana (Ascomycota: Hypocreales) isolates to Arabian rhinoceros beetle, Oryctes agamemnon arabicus
Evaluating the virulence of Metarhizium anisopliae (Deuteromycotina: Hyphomycetes) and Beauveria bassiana (Ascomycota: Hypocreales) isolates to Arabian rhinoceros beetle, Oryctes agamemnon arabicus
Virulence of entomopathogenic fungi <em>Metarhizium anisopliae</em> and <em>Beauveria bassiana</em> were tested against Arabian Rhinoceros Beetle, <em>...

