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Tinopal LPW对甜菜夜蛾核多角体病毒(鳞翅目:夜蛾科)杀虫特性及遗传稳定性的影响

Effect of tinopal LPW on the insecticidal properties and genetic stability of the nucleopolyhedrovirus of Spodoptera exigua (Lepidoptera: Noctuidae).

作者信息

Murillo Rosa, Lasa Rodrigo, Goulson Dave, Williams Trevor, Muñoz Delia, Caballero Primitivo

机构信息

Depto. Producción Agraria, Universidad Pública de Navarra, 31006 Pamplona, Spain.

出版信息

J Econ Entomol. 2003 Dec;96(6):1668-74. doi: 10.1093/jee/96.6.1668.

Abstract

The influence of an optical brightener, Tinopal LPW, on the activity of a purified genotype of the nucleopolyhedrovirus (SeMNPV) of the beet armyworm, Spodoptera exigua (Hübner), was determined in second to fifth instar (L2-L5) S. exigua. When mixed with viral occlusion bodies (OB) 1% Tinopal LPW significantly reduced the median lethal dose (LD50) of the virus in all instars compared with insects treated with SeMNPV alone. Levels of enhancement, as determined by LD50 values, ranged from 2.6- to 580-fold, depending on the instar. The greatest enhancement occurred on the two later instars, L4 (70-fold) and L5 (580-fold), which show a much higher resistance to SeMNPV infection than earlier instars. The median time to death (MTD) values were not significantly different in any instar among larvae treated with SeMNPV + Tinopal LPW and those treated with SeMNPV alone. Larval development in SeMNPV + Tinopal LPW treated larvae was retarded, in second and fourth instars, compared with controls or larvae treated with SeMNPV alone. The OB yields from SeMNPV treated larvae were almost 1.6-fold greater in second instars (9.3 x 10(6) OBs/larvae), and 1.9-fold greater in fourth instars (1.9 x 10(8) OBs/larvae), than those obtained in larvae treated with SeMNPV + Tinopal LPW. The addition of 1% Tinopal LPW to the virus suspension did not alter the genotypic composition of viral progeny during four successive passages of the virus.

摘要

在甜菜夜蛾(Spodoptera exigua (Hübner))的二龄至五龄(L2-L5)幼虫中,测定了荧光增白剂Tinopal LPW对纯化基因型的甜菜夜蛾核多角体病毒(SeMNPV)活性的影响。当与病毒包涵体(OB)混合时,与仅用SeMNPV处理的昆虫相比,1%的Tinopal LPW显著降低了所有龄期病毒的半数致死剂量(LD50)。根据LD50值确定的增强水平在2.6至580倍之间,具体取决于龄期。最大的增强作用出现在后两个龄期,即L4(70倍)和L5(580倍),这两个龄期对SeMNPV感染的抗性比早期龄期高得多。用SeMNPV + Tinopal LPW处理的幼虫与仅用SeMNPV处理的幼虫相比,在任何龄期的中位死亡时间(MTD)值均无显著差异。与对照或仅用SeMNPV处理的幼虫相比,用SeMNPV + Tinopal LPW处理的幼虫在二龄和四龄时的幼虫发育受到抑制。在二龄期(9.3×10⁶个OBs/幼虫),用SeMNPV处理的幼虫产生的OB数量比用SeMNPV + Tinopal LPW处理的幼虫多近1.6倍;在四龄期(1.9×10⁸个OBs/幼虫),前者产生的OB数量比后者多1.9倍。在病毒连续传代四次的过程中,向病毒悬液中添加1%的Tinopal LPW并未改变病毒后代的基因型组成。

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