首页> 外文期刊>Journal of Biotechnology >Synthetic fusion-protein containing domains of Bt Cry1Ac and Allium sativum lectin (ASAL) conferred enhanced insecticidal activity against major lepidopteran pests.
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Synthetic fusion-protein containing domains of Bt Cry1Ac and Allium sativum lectin (ASAL) conferred enhanced insecticidal activity against major lepidopteran pests.

机译:包含Bt Cry1Ac和大蒜素凝集素(ASAL)的合成融合蛋白结构域增强了对主要鳞翅目害虫的杀虫活性。

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摘要

Different transgenic crop plants, developed with delta-endotoxins of Bacillus thuringiensis (Bt) and mannose-specific plant lectins, exhibited significant protection against chewing and sucking insects. In the present study, a synthetic gene (cry-asal) encoding the fusion-protein having 488 amino acids, comprising DI and DII domains from Bt Cry1Ac and Allium sativum agglutinin (ASAL), was cloned and expressed in Escherichia coli. Ligand blot analysis disclosed that the fusion-protein could bind to more number of receptors of brush border membrane vesicle (BBMV) proteins of Helicoverpa armigera. Artificial diet bioassays revealed that 0.025 mug/g and 0.50 mug/g of fusion-protein were sufficient to cause 100% mortality in Pectinophora gossypiella and H. armigera insects, respectively. As compared to Cry1Ac, the fusion-protein showed enhanced (8-fold and 30-fold) insecticidal activity against two major lepidopteran pests. Binding of fusion-protein to the additional receptors in the midgut cells of insects is attributable to its enhanced entomotoxic effect. The synthetic gene, first of its kind, appears promising and might serve as a potential candidate for engineering crop plants against major insect pests
机译:用苏云金芽孢杆菌(Bt)和δ-甘露糖特异的植物凝集素发育的δ-内毒素开发的不同转基因作物,对咀嚼和吮吸昆虫表现出显着的保护作用。在本研究中,克隆了编码具有488个氨基酸的融合蛋白的合成基因(cry-asal),该融合蛋白包含来自Bt Cry1Ac和大蒜素凝集素(ASAL)的DI和DII域,并在大肠杆菌中表达。配体印迹分析表明,该融合蛋白可以与棉铃虫刷缘膜囊泡(BBMV)蛋白的更多受体结合。人工饮食生物测定表明,融合蛋白0.025杯/克和0.50杯/克足以分别导致棉桃果蝇和棉铃虫昆虫的100%死亡率。与Cry1Ac相比,该融合蛋白对两种主要鳞翅目害虫表现出增强的杀虫活性(8倍和30倍)。融合蛋白与昆虫中肠细胞中其他受体的结合归因于其增强的昆虫毒性作用。该合成基因尚属首例,有望成为工程作物抗击主要害虫的潜在候选者

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