Published on 01 January 2022

Insecticidal activity of Piper aduncum oil: variation in dillapiole content and chemical and toxicological stability during storage

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FAZOLIN, Murilo;MONTEIRO, André Fabio Medeiros;BIZZO, Humberto Ribeiro;GAMA, Paola Ervatti;VIANA, Luana de Oliveira;LIMA, Maria Érica Costa de

Description

ABSTRACT The insecticidal effect of the essential oil of Piper aduncum (EOPA), and of its constituent dillapiole [1-allyl-2,3-dimethoxy-4,5-(methylenedioxy) benzene] in particular, is well documented in the literature and can be associated with its interference with the enzymatic detoxification in arthropods. However, no data exist on the range of dillapiole content associated with insecticidal activity, which is necessary to establish reliable dose-activity parameters for a formulated product. The oil composition can also change during storage after distillation, mainly due to environmental factors such as light incidence, atmospheric oxygen and temperature, which can be deleterious to oil quality. In this study, EOPA subjected to different storage conditions over four years and its rectified fractions were submitted to bioassays to evaluate their insecticidal effect by topical contact and residual contact against Spodoptera frugiperda. Our objectives were to determine the relationship between dillapiole content and the insecticidal activity of EOPA, and to evaluate its chemical and toxicological properties over time under different conditions. Our results showed that EOPA was stable with respect to the dillapiole content and the toxicological effect against S. frugiperda under different storage conditions for four years. The overall chemical composition of the EOPA did not vary significantly among storage conditions. EOPA with dillapiole content ranging between 68% and 100% showed greater insecticidal toxicity by residual and topical contact against S. frugiperda larvae.

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Metrics

Dataset Index

0.1

FAIR Score

13%

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0

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0

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Publication Details

DOI

Publisher

SciELO journals

Assigned Domain

Subfield

Molecular Biology

Field

Biochemistry, Genetics and Molecular Biology

Domain

Life Sciences

Confidence Score

47%

Source

Scholar Data Model

Keywords

ZoologyFOS: Biological sciences60599 Microbiology not elsewhere classified100199 Agricultural Biotechnology not elsewhere classifiedFOS: Agricultural biotechnology

Normalization Factors

FT

30.77

CTw

1.00

MTw

1.00