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类二十烷酸生物合成抑制剂影响与真菌分生孢子共同注射的粉纹夜蛾幼虫的死亡率。

Eicosanoid biosynthesis inhibitors influence mortality of Pieris brassicae larvae co-injected with fungal conidia.

作者信息

Tunaz Hasan

机构信息

Department of Plant Protection, Faculty of Agriculture, Kahramanmaras Sütçü Imam University, Kahramanmaras, Turkey.

出版信息

Arch Insect Biochem Physiol. 2006 Nov;63(3):93-100. doi: 10.1002/arch.20145.

Abstract

Influence of fungal species (conidia spores) on mortality of Pieris brassicae larvae differed when injected into the larvae. The effects of B. bassiana (ARSEF-1151) were expressed in a conidial dose-dependent manner on mortality of the larvae. An increased and faster mortality of the larvae followed B. bassiana (ARSEF-1151) infection when the spores were co-injected with the eicosanoid biosynthesis inhibitors (dexamethasone, naproxen, phenidone, esculetin). These compounds express different modes of action. These lethal effects were reversed when dexamethasone was injected with eicosanoid precursor arachidonic acid (20:4n-6). Nodulation is the predominant cellular reaction to bacterial and fungal injection in insects. Injection of each of five fungal species showed that nodulation intensity varies according to infecting fungal species. These findings support the idea that virulent effects of entomopathogenic, fungal species can be increased when P. brassicae immune systems are suppressed.

摘要

当将真菌种类(分生孢子)注射到菜粉蝶幼虫体内时,其对菜粉蝶幼虫死亡率的影响有所不同。球孢白僵菌(ARSEF - 1151)对幼虫死亡率的影响呈分生孢子剂量依赖性。当孢子与类二十烷酸生物合成抑制剂(地塞米松、萘普生、苯茚酮、七叶亭)共同注射时,球孢白僵菌(ARSEF - 1151)感染后幼虫死亡率增加且加快。这些化合物表现出不同的作用方式。当地塞米松与类二十烷酸前体花生四烯酸(20:4n - 6)一起注射时,这些致死效应会逆转。结节形成是昆虫对细菌和真菌注射的主要细胞反应。注射五种真菌中的每一种都表明,结节形成强度因感染的真菌种类而异。这些发现支持了这样一种观点,即当菜粉蝶免疫系统受到抑制时,昆虫病原真菌种类的毒力效应会增强。

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