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Title: Efficacy of some plant oils alone and/or combined with different insecticides on the cotton leaf-worm Spodoptera littoralis (Boisd.) (Lepidoptera: Noctuidae) in Egypt. Author: Mesbah HA, Mourad AK, Rokaia AZ. Journal: Commun Agric Appl Biol Sci; 2006; 71(2 Pt B):305-28. PubMed ID: 17385497. Abstract: The present work was conducted to evaluate the efficiency of two essential oils ((Flax or "Linseed" and Sesame ), five volatile plant oils ( Camphor, Red basil, Rose, Menthol and Clove ), four pesticides (Methoxyfenozide; Permethrin; Profenofos and Spinosad) and their mixtures on the cotton leaf-worm Spodoptera littoralis (Boisd.). This study was also devoted to minimize the usage of conventional insecticides, reduce the environmental pollution, and protect human-beings and domestic animals from hazards due to pesticides applications. In the meantime, the delayed effect of these tested plant oils on the developing immatures and moths of the cotton leaf-worm, Spodoptera littoralis was determined. Most of the evaluated plant oils were found to have an insecticidal effect on the 4th instar larvae of the cotton leaf-worm, S. littoralis. Both the essential Sesame oil and Clove volatile oil showed rather weak toxic effect corresponding to the same concentrations and periods of the bioassay tests. Comparing the toxicity of the tested plant oils, it was affirmed that both Rose and Red basil volatile oils were the highest efficient natural phytocompounds against the treated larvae and alternatively ranked either the 1st and/or the 2nd rank, throughout the different periods of the bioassay tests, followed by the other three tested oils which were more or less efficient phytocompounds. According to the toxicity index, all the tested oils were less toxic than the superior Red basil volatile oil after 48 h. post treatment followed by the gradual decrease in toxicity of Rose, Flax and Menthol, respectively. The development of the treated 4th larval instar was blocked due to treatment with the tested plant oils. With no exception, all the efficiently tested essential and/or volatile oils acted principally as Insect Growth Inhibitors (IGIs) rather than antifeedants causing disruption of the insect development, abnormal larvae, pupae and adults that were lead finally to death. The tested mixtures of Clove and Sesame oils increased the percentage of larval mortality in comparison to their use alone against the treated 4th larval instar.Contrarily, antagonism was revealed for the mixture of Sesame/Flax oils, the calculated value of LC50 greatly increased compared to the corresponding values of their individual evaluation after 48 h. from initiating the treatment. The delayed effect of tested plant oils was inspected on certain parameters of the fitness components of the subject insect and was mainly determined for the rates of hatched eggs and emerged moths. Remarkably, the Methoxyfenozide treated 4th larval instar became passive, or ceased feeding on the treated leaves and were unable to complete normally the moulting process, which partially took place in most'of the other treated individuals. The treated larvae with the tested lower concentrations, hardly succeeded in completing moulting process. The survived larvae failed to complete the next moulting at the end of the treatments. The toxic effect of Spinosad was more apparent against the treated larvae after 72 h from application. The calculated LC50 values indicated the gradual increase of its toxic effect in the subsequent prolonged intervals of the test. Spinosad showed its activity either by contact or ingestion and caused larval characteristic symptoms. Permethrin exhibited superior toxic efficacy overall the other tested chemicals, during the period from 72 up to 96 h post treatment. The gradual increase of the toxic effect of Permethrin indicated an efficient continuous persistence of nervous toxicity. According to the specific properties of Profenofos, results revealed that the toxicity by ingestion was more potential than by contact and explained the reason of developing toxicity with the increase of bioassay inspection period. The comparative toxic efficiency of the tested insecticides proved that Permethrin was the most effective one, giving LC50 values of 2.92 and 1.53 ppm after 72 and 96 h. bioassay, respectively, followed by Profenofos, Methoxyfenozide and Spinosad, successively. In addition, the calculated values of toxicity index also proved that all the tested compounds were less toxic than Permethrin (as a standard compound ). It is worth mentioning that the combined action of the mixed pesticides with four efficient volatile plant oils showed synergistic action against the 4th larval instar of S. littoralis.[Abstract] [Full Text] [Related] [New Search]