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首页> 外文期刊>Revista da Sociedade Brasileira de Medicina Tropical >Preliminary screening of the larvicidal effect of Brevibacillus laterosporus strains against the blowfly Chrysomya megacephala(Fabricius, 1794) (Diptera: Calliphoridae)
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Preliminary screening of the larvicidal effect of Brevibacillus laterosporus strains against the blowfly Chrysomya megacephala(Fabricius, 1794) (Diptera: Calliphoridae)

机译:初生短壁孢菌菌株对巨大蝇蝇(Chrysomya megacephala)的杀幼虫作用的初步筛选(Fabricius,1794)(双翅目:Calliphoridae)

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AbstractINTRODUCTION: This study evaluated whether different strains of Brevibacillus laterosporus could be used to control larvae of the blowfly Chrysomya megacephala , a pest that affects both human and animal health.METHODS:Mortality rates were recorded after 1-mL suspensions of sporulated cells of 14 different strains of B. laterosporus were added to 2.5g of premixed diet consisting of rotting ground beef fed to first instar larvae of C. megacephala . All bioassays were performed using 10 larvae per strain, with a minimum of three replicates for each bioassay. Larval mortality was recorded daily up to seven days.RESULTS:Strains Bon 707, IGM 16-92, and Shi 3 showed the highest toxicity toward the larvae producing 70.5%, 64.5%, and 51.6% of larval mortality, respectively, which was significantly higher than that in the control group (p 0.05). In contrast, strains NRS 1642, NRS 661, NRS 590 BL 856, NRS 342, ATCC 6457, Bon 712, and NRS 1247 showed limited or no pathogenic activity against the target larvae.CONCLUSIONS:Our preliminary data indicated that B. laterosporus could be used to develop bioinsecticides against C. megacephala .
机译:摘要简介:该研究评估了是否可以使用不同菌株的细孢短小芽孢杆菌(Brevibacillus Laterosporus)来控制影响人类和动物健康的一种巨大的蝇Ch(Chrysomya megacephala)虫的幼虫。将菌株B.lateosporus添加到2.5g的预混合饲料中,该饲料由腐烂的碎牛肉组成,饲喂到C. megacephala的第一龄幼虫。每个菌株使用10个幼虫进行所有生物测定,每个生物测定至少重复3次。结果:每天最多记录7天的幼虫死亡率。结果:菌株Bon 707,IGM 16-92和Shi 3对幼虫的毒性最高,分别产生70.5%,64.5%和51.6%的幼虫死亡率,这是显着的。高于对照组(p <0.05)。相比之下,菌株NRS 1642,NRS 661,NRS 590 BL 856,NRS 342,ATCC 6457,Bon 712和NRS 1247对靶标幼虫的致病活性有限或没有致病性。用于研发对抗巨大念珠菌的生物农药。

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