首页> 外文期刊>Plant Protection Science >Susceptibility of Field and Laboratory Strains of Cotton Leafworm, Spodoptera littoralis (Boisd.) (Lepidoptera: Noctuidae) to Spinosad Pesticide under Laboratory Conditions
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Susceptibility of Field and Laboratory Strains of Cotton Leafworm, Spodoptera littoralis (Boisd.) (Lepidoptera: Noctuidae) to Spinosad Pesticide under Laboratory Conditions

机译:在实验室条件下,棉叶虫,斜纹夜蛾(Bospd。)(鳞翅目:夜蛾科)的田间和实验室菌株对多杀菌素农药的敏感性

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摘要

The susceptibility of field and laboratory strains against all instars larvae of S. littoralis to spinosad pesticide after a 24- and 48-h exposure and under laboratory conditions was investigated. As a result against 1st instar larvae, the LC50 values after 24 h were 12 and 0.275 mu g/ml for laboratory and field strain, respectively. In addition, the resistance ratio (RR) of 1st instar was 43.64-fold. In this interim, the 48 h LC50 values were 8.7 and 0.18 mu g/ml for laboratory and field strain, respectively and the RR was 48.33-fold, which revealed the field strain was more susceptible to spinosad than the laboratory strain. Distinctly similar trend was shown for later instar larvae stages. For instance, in 6th instar larvae, the LC50 values after a 24-h exposure to spinosad were 1100 and 105 mu g/ml for the laboratory and field strain, respectively, and the RR value was 10.48-fold. Furthermore, after a 48-h exposure, the LC50 values for laboratory and field strains were 500 and 42 mu g/ml, respectively, with RR value being 11.90-fold. On the other hand, according to relative tolerance values, the 6th instar larvae were the most tolerant instar of all the instars tested. The susceptibility of 6th, 5th, and 4th instar larvae was comparable and significantly lower than that of 3rd, 2nd., and 1st instar larvae. However, the 1st instar was the least tolerant. The results implied that spinosad may play a potential role in the control of S. littoralis and, therefore, it is considered a promising tool in integrated pest management program to control Cotton leafworm which is becoming resistant to conventional pesticides in Egypt.
机译:研究了田间和实验室菌株对24小时和48小时暴露后以及在实验室条件下对滨海链球菌所有幼虫对多杀菌素的敏感性。结果,针对第一龄幼虫,实验室和田间菌株的24小时后LC50值分别为12和0.275μg / ml。另外,第一龄的电阻比(RR)为43.64倍。在此期间,实验室菌株和田间菌株的48 h LC50值分别为8.7和0.18μg / ml,RR为48.33倍,这表明田间菌株比实验室菌株对多杀菌素更敏感。后期幼虫阶段显示出明显相似的趋势。例如,在六龄幼虫中,暴露于多杀菌素24小时后的LC50值分别为实验室菌株和田间菌株的LC50值为1100和105μg / ml,RR值为10.48倍。此外,在暴露48小时后,实验室菌株和田间菌株的LC50值分别为500和42μg / ml,RR值为11.90倍。另一方面,根据相对耐受性值,第六龄幼虫是所有被测龄幼虫中最耐受的幼虫。 6龄,5龄和4龄幼虫的药敏性可比,并且显着低于3龄,2龄和1龄幼虫。但是,第一龄幼虫的耐受性最低。结果表明,多杀菌素可能在控制S. littoralis中发挥潜在作用,因此,它被认为是病虫害综合防治计划中控制棉花叶虫的有前途的工具,该病虫害正在对埃及的常规农药产生抗药性。

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