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用荧光增白剂增强的来自甘蓝夜蛾的一种核型多角体病毒分离株的阶段特异性杀虫特性

Stage-specific insecticidal characteristics of a nucleopolyhedrovirus isolate from Chrysodeixis chalcites enhanced by optical brighteners.

作者信息

Bernal Alexandra, Simón Oihane, Williams Trevor, Caballero Primitivo

机构信息

Instituto de Agrobiotecnología, CSIC-Gobierno de Navarra, Mutilva Baja, Spain.

出版信息

Pest Manag Sci. 2014 May;70(5):798-804. doi: 10.1002/ps.3617. Epub 2013 Aug 22.

Abstract

BACKGROUND

Chrysodeixis chalcites is a major noctuid pest of banana crops in the Canary Islands. The stage-specific susceptibility of this pest to C. chalcites single nucleopolyhedrovirus (ChchSNPV-TF1) was determined, as well as the effect of selected optical brighteners as enhancers of primary infection.

RESULTS

Susceptibility to ChchSNPV-TF1 occlusion bodies (OBs) decreased as larval stage increased; second instars (L2) were 10,000-fold more susceptible than sixth instars (L6). Virus speed of kill was 42 h faster in L2 than in L6 . OB production increased in late instars; L6 larvae produced 23-fold more OBs than L4 . Addition of 10 mg mL(-1) Tinopal enhanced OB pathogenicity by 4.43- to 397-fold depending on instar, whereas 10 µL mL(-1) Leucophor resulted in potentiation of OB pathogenicity from 1.46- to 143-fold. Mean time to death decreased by 14 to 26 h when larvae consumed OBs in mixtures with 10 mg mL(-1) Tinopal, or 10 µL mL(-1) Leucophor, although in these treatments OB yields were reduced by up to 8.5-fold (Tinopal) or up to 3.8-fold (Leucophor).

CONCLUSION

These results have clear applications for the use of ChchSNPV-TF1 as a biological insecticide in control programs against C. chalcites in the Canary Islands.

摘要

背景

棉铃虫是加那利群岛香蕉作物的一种主要夜蛾科害虫。测定了该害虫对棉铃虫单核多角体病毒(ChchSNPV-TF1)的阶段特异性易感性,以及所选荧光增白剂作为初次感染增强剂的效果。

结果

随着幼虫龄期增加,对ChchSNPV-TF1包涵体(OBs)的易感性降低;二龄幼虫(L2)比六龄幼虫(L6)的易感性高10000倍。L2中病毒致死速度比L6快42小时。OB产量在老龄期增加;L6幼虫产生的OB比L4多23倍。添加10mg/mL的Tinopal可使OB致病性提高4.43至397倍,具体取决于龄期,而10μL/mL的Leucophor可使OB致病性增强1.46至143倍。当幼虫食用与10mg/mL的Tinopal或10μL/mL的Leucophor混合的OB时,平均死亡时间减少14至26小时,尽管在这些处理中OB产量最多降低8.5倍(Tinopal)或最多降低3.8倍(Leucophor)。

结论

这些结果对于在加那利群岛针对棉铃虫的防治计划中使用ChchSNPV-TF1作为生物杀虫剂具有明确的应用价值。

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