Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Comparative Bio-efficacy and Molecular Insights of North-Western Himalayan conifers, Cedrus deodara and Juniperus macropoda Essential Oils against two storage insect Pests

View through CrossRef
Abstract The study, aimed to evaluate fumigation and repellent properties of essential oils (EOs) from Juniperus macropoda leaves and cedarwood, Cedrus deodara against storage pests viz ., Tribolium casteneum and Callosobruchus maculatus . Further, the volatile compounds released from essential oils were collected through headspace extraction and analysed using Gas Chromatography–Mass Spectrometry (GC-MS). The major compounds released from C. deodara EO were α-Cuprenene (15.53%) and α-Himachalene (13.42%) whereas 4-terpineol (22.35%) and Limonene (14.16%) dominated the volatile composition of J. macropoda EO. Fumigation assay showed that C. deodara EO was significantly more toxic than J. macropoda EO against T. casteneum larvae (LC 50  = 103.91 vs. 357.33 µl/l) and adults (LC 50  = 123.10 vs. 724.66 µl/l). Similarly, C. deodara EO exhibited stronger fumigant activity against C. maculatus adult (LC 50  = 16.13 µl/l) compared to J. macropoda EO (LC 50  = 25.68 µl/l). Repellency assay revealed that C. deodara EO significantly repelled C. maculatus adults at 50 and 100 ng, whereas J. macropoda EO showed no significant effect. Against T. casteneum adults, both EOs exhibited significant repellency, except J. macropoda at lowest dose (10 ng). In-silico analysis revealed that in comparison to components from J. macropoda , C. deodara components such as γ -himachalene, α -cuprenene, α -himachalene, and α -(E)-atlantone often showed stronger and more stable binding affinities, consistent with bioassay results indicating the superior insecticidal activity of C. deodara essential oil. Molecular docking also revealed acetylcholinesterase as the primary target, thereby supporting its role in fumigation insecticidal activity of the essential oils.
Title: Comparative Bio-efficacy and Molecular Insights of North-Western Himalayan conifers, Cedrus deodara and Juniperus macropoda Essential Oils against two storage insect Pests
Description:
Abstract The study, aimed to evaluate fumigation and repellent properties of essential oils (EOs) from Juniperus macropoda leaves and cedarwood, Cedrus deodara against storage pests viz .
, Tribolium casteneum and Callosobruchus maculatus .
Further, the volatile compounds released from essential oils were collected through headspace extraction and analysed using Gas Chromatography–Mass Spectrometry (GC-MS).
The major compounds released from C.
deodara EO were α-Cuprenene (15.
53%) and α-Himachalene (13.
42%) whereas 4-terpineol (22.
35%) and Limonene (14.
16%) dominated the volatile composition of J.
macropoda EO.
Fumigation assay showed that C.
deodara EO was significantly more toxic than J.
macropoda EO against T.
casteneum larvae (LC 50  = 103.
91 vs.
357.
33 µl/l) and adults (LC 50  = 123.
10 vs.
724.
66 µl/l).
Similarly, C.
deodara EO exhibited stronger fumigant activity against C.
maculatus adult (LC 50  = 16.
13 µl/l) compared to J.
macropoda EO (LC 50  = 25.
68 µl/l).
Repellency assay revealed that C.
deodara EO significantly repelled C.
maculatus adults at 50 and 100 ng, whereas J.
macropoda EO showed no significant effect.
Against T.
casteneum adults, both EOs exhibited significant repellency, except J.
macropoda at lowest dose (10 ng).
In-silico analysis revealed that in comparison to components from J.
macropoda , C.
deodara components such as γ -himachalene, α -cuprenene, α -himachalene, and α -(E)-atlantone often showed stronger and more stable binding affinities, consistent with bioassay results indicating the superior insecticidal activity of C.
deodara essential oil.
Molecular docking also revealed acetylcholinesterase as the primary target, thereby supporting its role in fumigation insecticidal activity of the essential oils.

Related Results

ESSENTIAL OILS FROM JUNIPERUS PSEUDOSABINA: OPTIMIZING EXTRACTION CONDITIONS AND EVALUATING THEIR BIOLOGICAL ACTIVITY
ESSENTIAL OILS FROM JUNIPERUS PSEUDOSABINA: OPTIMIZING EXTRACTION CONDITIONS AND EVALUATING THEIR BIOLOGICAL ACTIVITY
Introduction. The genus Juniperus ranks second in prevalence among coniferous plants and is the largest in the family Cupressaceae. Many juni-perus species have long been used in f...
Primerjalna književnost na prelomu tisočletja
Primerjalna književnost na prelomu tisočletja
In a comprehensive and at times critical manner, this volume seeks to shed light on the development of events in Western (i.e., European and North American) comparative literature ...
Vegetation of highly disturbed conifer forests around Murree, Pakistan
Vegetation of highly disturbed conifer forests around Murree, Pakistan
This phytosociological investigation is conducted in various disturbed forests around Murree hills. The main purpose of study is to explore community types, associated ground flora...
Insect pests in apple (Malus domestca Borkh) gardens: Review
Insect pests in apple (Malus domestca Borkh) gardens: Review
Apple (Malus domestica), is one of the most important fruit trees cultivated in temperate regions but, newly introduced in Uganda for its income and nutritional importance. However...
Rarity of polyploidy in Conifer: a genetic conundrum
Rarity of polyploidy in Conifer: a genetic conundrum
Abstract Conifers are the largest, most widely distributed group of gymnosperms in the world. Conifers are predominantly diploid. Polyploidy,...
Cedrus deodara
Cedrus deodara
Background & objectives: The existing antileishmanial drugs for complete cure of visceral leishmaniasis (kala-azar) are limited. The available drugs are either toxi...
Origin of the Silurian Crude Oils and Reservoir Formation Characteristics in the Tazhong Uplift
Origin of the Silurian Crude Oils and Reservoir Formation Characteristics in the Tazhong Uplift
Abstract:The Silurian stratum in the Tazhong uplift is an important horizon for exploration because it preserves some features of the hydrocarbons produced from multi‐stage tectoni...

Back to Top