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
Synthesis Myconanoparticles by using Metarhizium anisopliae as a biological management for Culex pipiens
Synthesis Myconanoparticles by using Metarhizium anisopliae as a biological management for Culex pipiens
By means of green synthesis and to control culex pipiens, new silver non-particles (AgNPs) were synthesized depending on soil fungus Metarhizium anisopliae and proposed a Metarhizi...
Integrative taxonomy of Metarhizium anisopliae species complex, based on phylogenomics combined with morphometrics, metabolomics, and virulence data
Integrative taxonomy of Metarhizium anisopliae species complex, based on phylogenomics combined with morphometrics, metabolomics, and virulence data
AbstractMetarhizium anisopliae (Clavicipitaceae, Hypocreales) is a globally distributed entomopathogenic fungus, which has been largely studied and used in agriculture for its pote...
Efficacy of
Beauveria bassiana
and
Metarhizium anisopliae
against wheat aphid
Efficacy of
Beauveria bassiana
and
Metarhizium anisopliae
against wheat aphid
Abstract
In the recent study, the entomopathogenic fungus,
Beauveria bassiana
and
...
Insights into sublethal effects of Metarhizium anisopliae on the biotic potentials of Spodoptera frugiperda (J. E. Smith) (Lepidoptera: Noctuidae) on maize
Insights into sublethal effects of Metarhizium anisopliae on the biotic potentials of Spodoptera frugiperda (J. E. Smith) (Lepidoptera: Noctuidae) on maize
Abstract
Background
Entomopathogenic fungi are an important biological agent in integrated pest management, playing a critical role in controlling i...
Behavioral Responses of Pyrethroid-resistant Anopheles Gambiae Mosquitoes to Insecticide-treated Bed Net
Behavioral Responses of Pyrethroid-resistant Anopheles Gambiae Mosquitoes to Insecticide-treated Bed Net
Abstract
Background: Long-lasting insecticidal nets are an effective tool in reducing malaria transmission. However, with increasing insecticide resistance little is known ...
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...
CELLULAR ABNORMALITIES INDUCED BY TRICHODERMA SPP. DURING IN VITRO INTERACTION AND CONTROL OF WHITE MUSCARDINE (BEAUVERIA BASSIANA) AND GREEN MUSCARDINE (METARHIZIUM ANISOPLIAE) DISEASE OF SILKWORM BOMBYX MORI
CELLULAR ABNORMALITIES INDUCED BY TRICHODERMA SPP. DURING IN VITRO INTERACTION AND CONTROL OF WHITE MUSCARDINE (BEAUVERIA BASSIANA) AND GREEN MUSCARDINE (METARHIZIUM ANISOPLIAE) DISEASE OF SILKWORM BOMBYX MORI
The silkworm is the larva of the domesticated silk moth, Bombyx mori. It is an economically important insect, being a primary producer of silk in sericulture industry. Among the si...
Is outdoor-resting behaviour in malaria vectors consistent? Short report from northern Ghana.
Is outdoor-resting behaviour in malaria vectors consistent? Short report from northern Ghana.
Abstract
Background
Recent reports of a change in the resting behaviour of malaria vectors, from predominantly indoor resting to outdoor resting following blood feeding, h...

