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Computational and biological characterization of fusion proteins of two insecticidal proteins for control of insect pests

机译:两种杀虫蛋白融合蛋白控制虫害的计算与生物学特征

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摘要

Sucking pests pose a serious agricultural challenge, as available transgenic technologies such as Bacillus thuringiensis crystal toxins (Bt) are not effective against them. One approach is to produce fusion protein toxins for the control of these pests. Two protein toxins, Hvt (ω-atracotoxin from Hadronyche versuta) and onion leaf lectin, were translationally fused to evaluate the negative effects of fusion proteins on Phenacoccus solenopsis (mealybug), a phloem-feeding insect pest. Hvt was cloned both N-terminally (HL) and then C-terminally (LH) in the fusion protein constructs, which were expressed transiently in Nicotiana tabacum using a Potato Virus X (PVX) vector. The HL fusion protein was found to be more effective against P. solenopsis, with an 83% mortality rate, as compared to the LH protein, which caused 65% mortality. Hvt and lectin alone caused 42% and 45%, respectively, under the same conditions. Computational studies of both fusion proteins showed that the HL protein is more stable than the LH protein. Together, these results demonstrate that translational fusion of two insecticidal proteins improved the insecticidal activity relative to each protein individually and could be expressed in transgenic plants for effective control of sucking pests.
机译:吸吮害虫构成严重的农业挑战,因为可用的转基因技术如芽孢杆菌晶体毒素(BT),如枯草芽孢杆菌(BT)对它们无效。一种方法是生产用于控制这些害虫的融合蛋白毒素。两种蛋白质毒素HVT(来自Hadronyche vertuta的ω-atracotoxin)和洋葱叶凝集素,被平移地融合,以评估融合蛋白对植物源自植物虫害的融合蛋白的负面影响。在融合蛋白构建体中克隆N-末端(HL),然后在融合蛋白构建体中克隆HVT,其使用马铃薯病毒X(PVX)载体瞬时在尼古特氏菌塔卡骨内表达。发现HL融合蛋白对P.溶血二瓣更有效,与LH蛋白相比,死亡率为83%,导致65%的死亡率。单独的HVT和凝集素分别在相同的条件下分别引起42%和45%。两种融合蛋白的计算研究表明,HL蛋白比LH蛋白更稳定。这些结果表明,两种杀虫蛋白的平移融合可以单独地改善了相对于每种蛋白质的杀虫活性,并且可以在转基因植物中表达,以有效控制吸吮害虫。

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