Optimization of Factors Affecting Beauveria bassiana Fungus Ability in Control of Greater Wax Moth (Galleria mellonella L.) by Response Surface Method

Introduction: Stored product pests are a major problem in the storage of agricultural products that cause damage from harvest until consumption. Greater Wax Moth (Galleria mellonella L.) is one of the most important pests of stored products and beehives. The most common method to control this pest i...

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Veröffentlicht in:Majallah-i hifāzat-i giyāhān 2017-03, Vol.30 (4), p.684-692
Hauptverfasser: Ali Heidari, shahrokh gharanjik, Ali Derakhshan Shadmehri, Alireza Shabaninejad
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Sprache:per
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Zusammenfassung:Introduction: Stored product pests are a major problem in the storage of agricultural products that cause damage from harvest until consumption. Greater Wax Moth (Galleria mellonella L.) is one of the most important pests of stored products and beehives. The most common method to control this pest in many countries is use of chemical compounds. However, these compounds have disadvantages such as pesticide residues in wax, the development of resistance in pest and irreversible effects on the environment and humans. The use of insect pathogenic fungi due to its low risk on mammals and natural enemies can be a good alternative to conventional chemical pesticides. Response surface methodology (RSM) is a statistical technique that is employed to optimize processes that are affected by several variables. This technique uses regression analysis to obtain optimal equations to estimate the values. Using this method, while maintaining the quality in the experiments, the number of those could be reduced. Therefore, this study was aimed to evaluate response surface methodology to determine the effect of optimum lethal level of concentration of B. bassiana conidia, temperature as well as humidity variables on the mortality of fifth instar larvae of greater wax moth. Materials and Methods: Wax moth-eating insects were raised in plastic containers containing artificial food and old black wax at 30 ± 1 ° C and a relative humidity of 85 ± 1 % and photoperiod of 14:10 h (L: D). Isolation of insect pathogenic fungus B. bassiana was done by using Galleria Bait Method (GBM). For this purpose, after preparation of the fungus suspension from the infected larvae, 1 ml volume of the suspension was transferred to the water-agar 1.2% and then sealed petri dishes incubated at 30 ° C for three days. After identifying the single colony and formation of pure isolates, microscopic slides were prepared and eventually recovered isolates were recognized as B. bassiana. The bioassay was performed by determining the lethal concentrations of the B.bassiana that cause 20% to 80% casualties with a lot of concentration by immersion method for 10 seconds. Concentrations 1×106 and 1×108 conidia/ml were identified as high and low lethality ranges, respectively. In this study, the central composite design and response surface methodology with three independent variables including temperature (25-35°C), humidity (70-80 percent) and concentration (1×106-1×108 conidia/ml) and six replications in the cen
ISSN:2008-4749
2423-3994
DOI:10.22067/jpp.v30i4.52462