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Insecticidal activity of scorpion toxin (ButalT) and snowdrop lectin (GNA) containing fusion proteins towards pest species of different orders

机译:蝎融合蛋白(ButalT)和雪花莲凝集素(GNA)的融合蛋白对不同等级害虫的杀虫活性

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摘要

BACKGROUND: The toxicity of a fusion protein, ButalT/GNA, comprising a venom toxin (ButalT) derived from the red scorpion, Mesobuthus famulus (F.), and Galanthus nivalis agglutinin (GNA), was evaluated under laboratory conditions against several pest insects. Insecticidal activity was compared with SFI1 /GNA, a fusion comprising a venom toxin (SFI1) derived from the European spider Segestria florentina (Rossi) and GNA, which has been previously demonstrated to be effective against lepidopteran and hemipteran pests, and to GNA itself. RESULTS: Injection assays demonstrated that both fusion proteins were toxic to lepidopteran larvae, dipteran adults, coleopteran adults and larvae and dictyopteran nymphs. ButalT/GNA was more toxic than SFI1/GNA in all cases. GNA itself made a minor contribution to toxicity. Oral toxicity of ButalT/GNA towards lepidopteran pests was confirmed against neonate Spodoptera littoralis (Boisd.), where incorporation at 2% dietary protein resulted in 50% mortality and > 85% reduction in growth compared with controls. ButalT/GNA was orally toxic to Musca domestica L. adults, causing 75% mortality at 1 mg mL~(-1) in aqueous diets and, at 2 mg g~(-1) it was orally toxic to Tribolium castaneum (Herbst.), causing 60% mortality and a 90% reduction in growth. CONCLUSIONS: Toxicity of the ButalT/GNA recombinant fusion protein towards a range of insect pests from different orders was demonstrated by injection bioassays. Feeding bioassays demonstrated the potential use of the ButalT/GNA fusion protein as an orally active insecticide against lepidopteran, dipteran and coleopteran pests. These experiments provide further evidence that the development of fusion protein technology for the generation of new, biorational, anti-insect molecules holds significant promise.
机译:背景:在实验室条件下,评估了融合蛋白ButalT / GNA对几种害虫的毒性,该融合蛋白包含来源于红蝎子Mesobuthus famulus(F.)和Galanthus nivalis凝集素(GNA)的毒毒素(ButalT)。 。将杀虫活性与SFI1 / GNA进行了比较,SFI1 / GNA是一种融合蛋白,融合了来自欧洲蜘蛛弗洛伦特氏菌(Rossi)和GNA的毒毒素(SFI1),先前已被证明对鳞翅目和半翅目害虫以及GNA本身有效。结果:注射分析表明,两种融合蛋白均对鳞翅目幼虫,双翅目成虫,鞘翅目成虫以及幼虫和单翅目若虫具有毒性。在所有情况下,ButalT / GNA的毒性均高于SFI1 / GNA。 GNA本身对毒性的贡献很小。证实了ButalT / GNA对鳞翅目害虫的口服毒性对新生儿斜纹夜蛾(Boisd。)的抑制作用,其中以2%的日粮蛋白质掺入可导致50%的死亡率和与对照相比生长减少> 85%。 ButalT / GNA对家蝇成虫具有口服毒性,在含​​水日粮中1 mg mL〜(-1)时可导致75%的死亡率,而在2 mg g〜(-1)时对Tribolium castaneum(Herbst。 ),导致60%的死亡率和90%的增长下降。结论:通过注射生物测定法证明了ButalT / GNA重组融合蛋白对不同顺序的多种害虫的毒性。饲料生物测定表明,ButalT / GNA融合蛋白可作为一种抗鳞翅目,双翅目和鞘翅目害虫的口服活性杀虫剂。这些实验提供了进一步的证据,证明融合蛋白技术的发展可产生新的,具有生物理性的抗昆虫分子,具有广阔的前景。

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