Guo H F, Fang J C, Wang J P, Zhong W F, Liu B S
Institute of Plant Protection, Jiangsu Academy of Agricultural Sciences, No. 50, Zhongling Street, Nanjing 210014, China.
J Econ Entomol. 2007 Feb;100(1):20-5. doi: 10.1603/0022-0493(2007)100[20:ioxcgw]2.0.co;2.
Xestia c-nigrum granulovirus (XcGV) was tested for its ability to increase Spodoptera litura nucleopolyhedrovirus (SINPV) infection in larvae of S. litura (F.). The interaction of XcGV with peritrophic matrix and SINPV in S. litura also was studied to account for the synergism. In dose-response bioassays with a constant XcGV concentration of 5-mg/ ml capsules and SINPV concentration that varied from 10(3) to 10(7) polyhedral inclusion bodies (PIB) per larva, XcGV increased the virulence of SINPV infection in fifth instars of S. litura. The lethal concentration of 50% individuals (LC50) of SINPV combined with XcGV was 3.35 x 10(5)PIB/ml, which was significantly lower than that of SINPV alone (2.17 x 10(6)). Compared with 10(7) PIB/ml SINPV alone, the lethal time of 50% individuals (LT50) of 10(7) PIB/ml SINPV combined with XcGV was not significantly shortened. In addition, no significant improvement in the activity and killing speed of SINPV progeny was noted after propagation with XcGV, indicating that native characters of SINPV associated with viral potency were not altered by XcGV. Investigation via environmental scanning electronic microscopy showed that the peritrophic matrix (PM) of S. litura exposed to XcGV or XcGV enhancin, or the combination treatment, was markedly disrupted. The outer surface of the PM was loose, or ruptured, which potentially facilitated the passage of virions through the PM. Therefore, it is reasonable to conclude that the synergy between XcGV and SINPV was closely associated with the disruption of the PM in S. litura.
对Xestia c-nigrum颗粒体病毒(XcGV)提高斜纹夜蛾核型多角体病毒(SINPV)对斜纹夜蛾(F.)幼虫感染力的能力进行了测试。还研究了XcGV与斜纹夜蛾围食膜及SINPV之间的相互作用,以解释这种协同作用。在剂量反应生物测定中,XcGV浓度恒定为5毫克/毫升胶囊,SINPV浓度从每头幼虫10³到10⁷个多角体包涵体(PIB)不等,XcGV提高了SINPV对斜纹夜蛾五龄幼虫的感染毒力。SINPV与XcGV组合的半数致死浓度(LC50)为3.35×10⁵PIB/毫升,显著低于单独使用SINPV时的半数致死浓度(2.17×10⁶)。与单独使用10⁷PIB/毫升SINPV相比,10⁷PIB/毫升SINPV与XcGV组合时的半数致死时间(LT50)没有显著缩短。此外,用XcGV增殖后,未观察到SINPV子代的活性和杀灭速度有显著提高,这表明与病毒效力相关的SINPV的固有特性未被XcGV改变。通过环境扫描电子显微镜研究表明,暴露于XcGV或XcGV增强蛋白或联合处理的斜纹夜蛾围食膜(PM)明显被破坏。围食膜的外表面疏松或破裂,这可能促进了病毒粒子穿过围食膜。因此,有理由得出结论,XcGV与SINPV之间的协同作用与斜纹夜蛾围食膜的破坏密切相关。