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Characterization of Zanthoxylum rhoifolium (Sapindales: Rutaceae) Essential Oil Nanospheres and Insecticidal Effects to Bemisia tabaci (Sternorrhyncha: Aleyrodidae)

Encapsulation via nanotechnology offers a potential method to overcome limited thermal and photo-stability of botanical pesticides. In this study, nanospheres of essential oils (NSEO) derived from Zanthoxylum rhoifolium Lam. fruit were characterized and evaluated for their photostability and insecti...

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Autores principales: Pereira, Karla de Castro, Quintela, Eliane Dias, do Nascimento, Vinicius A., da Silva, Daniel José, Rocha, Dannilo V. M., Silva, José Francisco A., Arthurs, Steven P., Forim, Moacir Rossi, Silva, Fabiano Guimarães, Cazal, Cristiane de Melo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101351/
https://www.ncbi.nlm.nih.gov/pubmed/35567136
http://dx.doi.org/10.3390/plants11091135
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author Pereira, Karla de Castro
Quintela, Eliane Dias
do Nascimento, Vinicius A.
da Silva, Daniel José
Rocha, Dannilo V. M.
Silva, José Francisco A.
Arthurs, Steven P.
Forim, Moacir Rossi
Silva, Fabiano Guimarães
Cazal, Cristiane de Melo
author_facet Pereira, Karla de Castro
Quintela, Eliane Dias
do Nascimento, Vinicius A.
da Silva, Daniel José
Rocha, Dannilo V. M.
Silva, José Francisco A.
Arthurs, Steven P.
Forim, Moacir Rossi
Silva, Fabiano Guimarães
Cazal, Cristiane de Melo
author_sort Pereira, Karla de Castro
collection PubMed
description Encapsulation via nanotechnology offers a potential method to overcome limited thermal and photo-stability of botanical pesticides. In this study, nanospheres of essential oils (NSEO) derived from Zanthoxylum rhoifolium Lam. fruit were characterized and evaluated for their photostability and insecticidal activity against Bemisia tabaci. Three major compounds of Z. rhoifolium fruits were detected by CG-MS: β-phellandrene (76.8%), β-myrcene (9.6%), and germacrene D (8.3%). The nanoprecipitation method was used to obtain homogeneous spherical NSEO, with ≥98% encapsulation efficiency. Tests with UV/Vis spectrophotometry showed significantly reduced photodegradation from exposed NSEO samples when compared with essential oil (EO) controls. Whitefly screenhouses bioassays with bean plants treated with 0.25, 0.5, 1 and 1.5% suspensions showed EO treatments in both free and nanoencapsulated forms reduced adult whitefly oviposition by up to 71%. In further tests, applications at 1.5% caused ≥64% mortality of second instar nymphs. When the test was conducted under high temperature and light radiation conditions, the insecticidal effect of NSEO treatments was improved (i.e., 84.3% mortality) when compared to the free form (64.8%). Our results indicate the insecticidal potential of EO-derived from Z. rhoifolium fruits with further formulation as nanospheres providing greater photostability and enhanced insecticidal activity against B. tabaci under adverse environmental conditions.
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spelling pubmed-91013512022-05-14 Characterization of Zanthoxylum rhoifolium (Sapindales: Rutaceae) Essential Oil Nanospheres and Insecticidal Effects to Bemisia tabaci (Sternorrhyncha: Aleyrodidae) Pereira, Karla de Castro Quintela, Eliane Dias do Nascimento, Vinicius A. da Silva, Daniel José Rocha, Dannilo V. M. Silva, José Francisco A. Arthurs, Steven P. Forim, Moacir Rossi Silva, Fabiano Guimarães Cazal, Cristiane de Melo Plants (Basel) Article Encapsulation via nanotechnology offers a potential method to overcome limited thermal and photo-stability of botanical pesticides. In this study, nanospheres of essential oils (NSEO) derived from Zanthoxylum rhoifolium Lam. fruit were characterized and evaluated for their photostability and insecticidal activity against Bemisia tabaci. Three major compounds of Z. rhoifolium fruits were detected by CG-MS: β-phellandrene (76.8%), β-myrcene (9.6%), and germacrene D (8.3%). The nanoprecipitation method was used to obtain homogeneous spherical NSEO, with ≥98% encapsulation efficiency. Tests with UV/Vis spectrophotometry showed significantly reduced photodegradation from exposed NSEO samples when compared with essential oil (EO) controls. Whitefly screenhouses bioassays with bean plants treated with 0.25, 0.5, 1 and 1.5% suspensions showed EO treatments in both free and nanoencapsulated forms reduced adult whitefly oviposition by up to 71%. In further tests, applications at 1.5% caused ≥64% mortality of second instar nymphs. When the test was conducted under high temperature and light radiation conditions, the insecticidal effect of NSEO treatments was improved (i.e., 84.3% mortality) when compared to the free form (64.8%). Our results indicate the insecticidal potential of EO-derived from Z. rhoifolium fruits with further formulation as nanospheres providing greater photostability and enhanced insecticidal activity against B. tabaci under adverse environmental conditions. MDPI 2022-04-22 /pmc/articles/PMC9101351/ /pubmed/35567136 http://dx.doi.org/10.3390/plants11091135 Text en © 2022 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
Pereira, Karla de Castro
Quintela, Eliane Dias
do Nascimento, Vinicius A.
da Silva, Daniel José
Rocha, Dannilo V. M.
Silva, José Francisco A.
Arthurs, Steven P.
Forim, Moacir Rossi
Silva, Fabiano Guimarães
Cazal, Cristiane de Melo
Characterization of Zanthoxylum rhoifolium (Sapindales: Rutaceae) Essential Oil Nanospheres and Insecticidal Effects to Bemisia tabaci (Sternorrhyncha: Aleyrodidae)
title Characterization of Zanthoxylum rhoifolium (Sapindales: Rutaceae) Essential Oil Nanospheres and Insecticidal Effects to Bemisia tabaci (Sternorrhyncha: Aleyrodidae)
title_full Characterization of Zanthoxylum rhoifolium (Sapindales: Rutaceae) Essential Oil Nanospheres and Insecticidal Effects to Bemisia tabaci (Sternorrhyncha: Aleyrodidae)
title_fullStr Characterization of Zanthoxylum rhoifolium (Sapindales: Rutaceae) Essential Oil Nanospheres and Insecticidal Effects to Bemisia tabaci (Sternorrhyncha: Aleyrodidae)
title_full_unstemmed Characterization of Zanthoxylum rhoifolium (Sapindales: Rutaceae) Essential Oil Nanospheres and Insecticidal Effects to Bemisia tabaci (Sternorrhyncha: Aleyrodidae)
title_short Characterization of Zanthoxylum rhoifolium (Sapindales: Rutaceae) Essential Oil Nanospheres and Insecticidal Effects to Bemisia tabaci (Sternorrhyncha: Aleyrodidae)
title_sort characterization of zanthoxylum rhoifolium (sapindales: rutaceae) essential oil nanospheres and insecticidal effects to bemisia tabaci (sternorrhyncha: aleyrodidae)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101351/
https://www.ncbi.nlm.nih.gov/pubmed/35567136
http://dx.doi.org/10.3390/plants11091135
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