Yu Huan, Zhou Bin, Meng Jiao, Xu Jian, Liu Tong-Xian, Wang Dun
State Key Laboratory of Crop Stress Biology for Arid Areas, Yangling, Shaanxi, China.
Key Laboratory of Applied Entomology, Northwest A&F University, Yangling, Shaanxi, China.
Insect Sci. 2017 Jun;24(3):397-408. doi: 10.1111/1744-7917.12289. Epub 2016 May 25.
A recombinant Helicoverpa armigera nucleopolyhedrovirus (HearNPV) expressing the insect-selective neurotoxin (RjAa17f) from Cuban scorpion Rhopalurus junceus was constructed by replacing the UDP-glucosyltransferase gene (egt) using λ-red homologous recombination system. Another egt deleted control HearNPV was constructed in a similar way by inserting egfp gene into the egt locus. One-step viral growth curve and viral DNA replication curve analysis confirmed that the recombination did not affect the viral growth and DNA replication in host cells. There is no discernable difference in occlusion-body morphogenesis between RjAa17f-HearNPV, Egfp-HearNPV and HZ8-HearNPV, which was confirmed by transmission electron microscopy analysis. However, the insecticidal activity of RjAa17f-HearNPV is enhanced against the third instar H. armigera larvae according to the bioassay on virulence comparison. There is a dramatic reduction (56.9%) in median lethal dose (LD ) and also a reduction (13.4%) in median survival time (ST ) for the recombinant RjAa17f-HearNPV compared to the HZ8-HearNPV, but only a 27.5% reduction in LD and 10.1% reduction in ST value when Egfp-HearNPV is compared with HZ8-HearNPV. The daily diet consumption analysis showed that the RjAa17f-HearNPV was able to inhibit the infected larvae feeding compared with the egt minus HearNPV. These results demonstrated that this novel recombinant RjAa17f-HearNPV could improve the insecticidal effect against its host insects and RjAa17f could be a considerable candidate for other recombinant baculovirus constructions.
通过使用λ-red同源重组系统替换UDP-葡萄糖基转移酶基因(egt),构建了一种表达来自古巴蝎子Rhopalurus junceus的昆虫选择性神经毒素(RjAa17f)的重组棉铃虫核多角体病毒(HearNPV)。以类似方式通过将egfp基因插入egt基因座构建了另一种缺失egt的对照HearNPV。一步病毒生长曲线和病毒DNA复制曲线分析证实,重组不影响病毒在宿主细胞中的生长和DNA复制。透射电子显微镜分析证实,RjAa17f-HearNPV、Egfp-HearNPV和HZ8-HearNPV之间在包涵体形态发生方面没有明显差异。然而,根据毒力比较生物测定,RjAa17f-HearNPV对棉铃虫三龄幼虫的杀虫活性增强。与HZ8-HearNPV相比,重组RjAa17f-HearNPV的半数致死剂量(LD)显著降低(56.9%),中位存活时间(ST)也降低(13.4%),但与HZ8-HearNPV相比,Egfp-HearNPV的LD仅降低了27.5%,ST值降低了10.1%。每日饮食消耗分析表明,与缺失egt的HearNPV相比,RjAa17f-HearNPV能够抑制受感染幼虫的取食。这些结果表明这种新型重组RjAa17f-HearNPV可以提高对其宿主昆虫的杀虫效果,并且RjAa17f可能是其他重组杆状病毒构建的一个相当不错的候选物。