首页> 外文期刊>International Journal of Tropical Insect Science >Bioefficacy of enhanced diatomaceous earth and botanical powders on the mortality and progeny production of Acanthoscelides obtectus (Coleoptera: Chrysomelidae), Sitophilus granarius (Coleoptera: Dryophthoridae) and Tribolium castaneum (Coleoptera: Tenebrionidae) in stored grain cereals
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Bioefficacy of enhanced diatomaceous earth and botanical powders on the mortality and progeny production of Acanthoscelides obtectus (Coleoptera: Chrysomelidae), Sitophilus granarius (Coleoptera: Dryophthoridae) and Tribolium castaneum (Coleoptera: Tenebrionidae) in stored grain cereals

机译:增强硅藻土和植物粉的生物效率对嗜酸剂(Coleoptera:Chrysomelidae),Sinophilus granarius(Coleoptera:Drophothoridae)和Tryolium castaneum(鞘翅目:Tenebrionidae)的死亡率和后代生产

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摘要

Food losses caused by insects during postharvest storage are of paramount economic importance worldwide, especially in Africa. Laboratory bioassays were conducted in stored grains to determine the toxicity of powders of Eugenia aromatica and Moringa oleifera alone or combined with enhanced diatomaceous earth (Probe-A (R) DE, 89.0% SiO2 and 5% silica aerogel) to adult Sitophilus granarius, Tribolium castaneum and Acanthoscelides obtectus. Adult mortality was observed up to 7 days, while progeny production was recorded at 6-10 weeks. LD50 and LT50 values for adult test insects exposed to plant powders and DE, showed that A. obtectus was the most susceptible towards the botanicals (LD50 0.179% and 0.088% wt/wt for E. aromatica and M. oleifera, respectively), followed by S. granarius. Tribolium castaneum was most tolerant (LD50 1.42% wt/wt and 1.40% wt/wt for E. aromatica and M. oleifera, respectively). The combined mixture of plant powders and DE controlled the beetles faster compared to the plant powders alone. LT50 ranged from 55.7 h to 62.5 h for T. castaneum exposed to 1.0% M. oleifera and 1.0% DE, and 0.5% E. aromatica and 1.0% DE, respectively. Botanicals caused significant reduction of F-1 adults compared to the control. Combined action of botanical insecticides with DE as a grain protectant in an integrated pest management approach is discussed.
机译:昆虫在采后储存期间引起的食品损失在全球范围内倾向于至关重要的经济意义,特别是在非洲。在储粒中进行实验室生物测定,以确定单独的桉树和辣木油脂的粉末的毒性,或者与增强的硅藻土(探针-A(R)DE,89.0%SiO 2和5%二氧化硅气凝胶)与成人沥青菌,呋喃树脂Castaneum和Acanthoscelides obetectus。观察到成年死亡率长达7天,而后代产量在6-10周时记录。暴露于植物粉末和DE的成人试验昆虫的LD50和LT50值表明,A. DECTENSES最容易受到植物(LD50 0.179%和0.088%wt / wt / 0.088%wt / wt),分别为aromatica和m. oleifera),随之而来由S. Granarius。 Triceolium Castaneum分别是最耐受的(LD50 1.42%wt / wt / wt / wt / wt / wt / wt / wt / wt / wt分别为E. aromatica和M.oleifera的1.40%wt / wt)。与单独的植物粉末相比,植物粉末和DE的组合混合物较快地控制甲虫。 LT50的55.7小时范围为55.7小时至62.5小时,分别暴露于1.0%M. Oleifera和1.0%de,0.5%E. aromatica和1.0%de。与对照相比,植物造成了大幅减少F-1成年人。讨论了植物杀虫剂在综合害虫管理方法中作为粒保护剂的植物杀虫剂的组合作用。

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