4.7 Article

Responses of Myzus persicae (Sulzer) to three Lamiaceae essential oils obtained by microwave-assisted and conventional hydrodistillation

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INDUSTRIAL CROPS AND PRODUCTS
卷 62, 期 -, 页码 272-279

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.indcrop.2014.08.041

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Melissa officinalis; Mentha pulegium; Origanum majorana; Aphid; Longevity; Fecundity

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The essential ails derived from three plants within the Lamiaceae family, Origanum majorana L. (marjoram), Mentha pulegium L. (pennyroyal), and Melissa officinalis L (lemon balm), using two techniques for their isolation, were evaluated for their effects on longevity and fecundity of the aphid Myzus persicae (Sulzer). The two techniques employed were Clevenger hydrodistillation (i) using conventional heating (HD) and (ii) assisted by microwaves (MWHD). Analysis of the essentiat oils by GC-MS showed an increase in the oxygenated fraction determined in MWHD oils. The effects of essential oils were screened with two concentrations, 250 and 500 mu l/l, on aphid adults <24h old enclosed individually in clip-cages on eggplants (Solanum melongena L). All the essential oils significantly reduced aphid longevity and fecundity, compared with the controls. M. pulegium oils exhibited the most significant activity at 500 mu l/l, with longevity shortened by 8 days (87% reduction) and fecundity reduced more than 40-fold. Carvacrol and piperitone were the main constituents of the O. majorana and M pulegium essential oils, respectively. Their toxic action was shown to be similar to that of the respective essential oils. Mixtures of commercially purchased pure compounds (citral, beta-caryophyllene, caryophyllene oxide) associated with M. officinalis essential oils were also proved effective. These results indicate a high potential of O. majorana, M. pulegium, and M. officinalis essential oils but also of their major constituents as alternatives in the management of M. persicae. However, further studies should follow to test the bioefficacy of these oils in larger scale experiments. The comparison of the efficacy of essential oils produced with the traditional HD and the MWHD technique showed no significant difference. Thus, the use of MWHD for the extraction of essential oils for pest control is suggested, considering also its well-known advantages such as shorter distillation time and less energy consumption. (C) 2014 Elsevier B.V. All rights reserved.

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