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Two Year Field Study to Evaluate the Efficacy of Mamestra brassicae Nucleopolyhedrovirus Combined with Proteins Derived from Xestia c-nigrum Granulovirus

机译:为期两年的野外研究以评估菜鸟Mamestra核多角体病毒结合Xestia c粒状颗粒病毒的蛋白质的功效。

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摘要

Japan has only three registered baculovirus biopesticides despite its long history of studies on insect viruses. High production cost is one of the main hindrances for practical use of baculoviruses. Enhancement of insecticidal effect is one possible way to overcome this problem, so there have been many attempts to develop additives for baculoviruses. We found that alkaline soluble proteins of capsules (GVPs) of Xestia c-nigrum granulovirus can increase infectivity of some viruses including Mamestra brassicae nucleopolyhedrovirus (MabrNPV), and previously reported that MabrNPV mixed with GVPs was highly infectious to three important noctuid pests of vegetables in the following order, Helicoverpa armigera, M. brassicae, and Autographa nigrisigna. In this study, small-plot experiments were performed to assess concentrations of MabrNPV and GVPs at three cabbage fields and a broccoli field for the control of M. brassicae. In the first experiment, addition of GVPs (10 µg/mL) to MabrNPV at 106 OBs/mL resulted in a significant increase in NPV infection (from 53% to 66%). In the second experiment, the enhancing effect of GVP on NPV infection was confirmed at 10-times lower concentrations of MabrNPV. In the third and fourth experiments, a 50% reduction in GVPs (from 10 µg/mL to 5 µg/mL) did not result in a lowering of infectivity of the formulations containing MabrNPV at 105 OBs/mL. These results indicate that GVPs are promising additives for virus insecticides.
机译:尽管日本对昆虫病毒的研究已有很长的历史,但日本仅有三种注册的杆状病毒生物农药。生产成本高是杆状病毒实际使用的主要障碍之一。增强杀虫效果是克服该问题的一种可能方法,因此已经进行了许多尝试来开发杆状病毒的添加剂。我们发现Xestia c核粒状病毒胶囊的碱性可溶蛋白(GVPs)可以提高某些病毒的感染性,包括马氏杆菌(Mamestra brasicae)核多角体病毒(MabrNPV),并且先前报道MabrNPV与GVPs混合对三种蔬菜的重要夜蛾害虫具有高度传染性以下顺序是棉铃虫(Helicoverpa armigera),芸苔分枝杆菌(M. Brassicae)和黑纹Autographa nigrisigna。在这项研究中,进行了小规模实验,以评估在三个甘蓝田和西兰花田中用于控制芸苔分枝杆菌的MabrNPV和GVP的浓度。在第一个实验中,在MabrNPV中以10 6 OBs / mL添加GVP(10 µg / mL)导致NPV感染显着增加(从53%增至66%)。在第二个实验中,在低浓度MabrNPV的10倍时,证实了GVP对NPV感染的增强作用。在第三和第四次实验中,GVP降低50%(从10 µg / mL降至5 µg / mL)并不会导致含有MabrNPV的制剂在10 5 OBs /时的传染性降低。毫升这些结果表明,GVP是有希望的病毒杀虫剂添加剂。

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