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丽蝇蛹集蜂雌蜂在蜡螟幼虫间被动传播球孢白僵菌。

Passive vectoring of entomopathogenic fungus Beauveria bassiana among the wax moth Galleria mellonella larvae by the ectoparasitoid Habrobracon hebetor females.

机构信息

Institute of Systematics and Ecology of Animals Siberian Branch of Russian Academy of Science, Novosibirsk, Russia.

出版信息

Insect Sci. 2018 Aug;25(4):643-654. doi: 10.1111/1744-7917.12457. Epub 2017 Jun 14.

Abstract

Females of the ectoparasitoid Habrobracon hebetor attack and envenomate numerous host individuals during oviposition. The vectoring of the entomopathogenic fungus Beauveria bassiana during the adhesion stage by ectoparasitoid females among the wax moth larvae Galleria mellonella was explored under laboratory conditions. Vectoring occurred both from infected parasitoids to wax moth larvae and from infected to healthy wax moth larvae by parasitoids. The efficacy of vectoring in both cases was dose dependent. Parasitoid females were unable to recognize infected larvae in a labyrinth test. In addition, the presence of H. hebetor females significantly (1.5-13 fold) increased the mycoses level in clusters of G. mellonella, with 40% of the larvae infected with fungal conidia. Envenomation by H. hebetor increased conidia germination on the cuticles of the wax moth larvae by 4.4 fold. An enhanced germination rate (2 fold) was registered in the n-hexane epicuticular extract of envenomated larvae compared to that of healthy larvae. Both envenomation and mycoses enhanced the phenoloxidase (PO) activity in the integument of G. mellonella and, in contrast, decreased the encapsulation rate in hemolymphs. We hypothesize that changes in the integument property and inhibition of cellular immunity provide the highest infection efficacy of entomopathogenic fungi with H. hebetor.

摘要

寄生蜂赤眼蜂在产卵过程中会攻击并毒害大量的宿主个体。在实验室条件下,探索了蜡螟幼虫感染的绿僵菌在蜡螟幼虫中的粘附阶段被外寄生蜂传播的情况。寄生蜂既可以将感染的绿僵菌从感染的寄生蜂传播到蜡螟幼虫,也可以从感染的蜡螟幼虫传播到健康的蜡螟幼虫。在这两种情况下,传播的效率都是剂量依赖性的。在迷宫试验中,寄生蜂雌虫无法识别感染的幼虫。此外,赤眼蜂雌虫的存在显著(1.5-13 倍)增加了蜡螟幼虫群中的真菌感染水平,其中 40%的幼虫感染了真菌孢子。赤眼蜂的毒液使蜡螟幼虫的外骨骼上的孢子萌发率增加了 4.4 倍。与健康幼虫相比,毒液处理过的幼虫的正己烷表皮提取物中的孢子萌发率提高了 2 倍。毒液处理和真菌感染都增强了 G. mellonella 表皮中的酚氧化酶(PO)活性,而在血液中则降低了包囊率。我们假设表皮特性的改变和细胞免疫的抑制为赤眼蜂提供了最高的感染效率。

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