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红棕榈象虫(Rhynchophorus ferrugineus)被昆虫病原真菌绿僵菌(Beauveria bassiana)感染的扫描电镜研究。

Infection of the red palm weevil (Rhynchophorus ferrugineus) by the entomopathogenic fungus Beauveria bassiana: a SEM study.

机构信息

Department of Marine Sciences and Applied Biology, Multidisciplinary Institute for Environmental Studies (MIES) Ramon Margalef, University of Alicante, Alicante, Spain.

出版信息

Microsc Res Tech. 2010 Jul;73(7):714-25. doi: 10.1002/jemt.20812.

Abstract

The Red Palm Weevil (Rhynchophorus ferrugineus) is a devastating pest of palms in the Mediterranean, Middle East, and Eastern countries. No effective control measures are available. R. ferrugineus has been found naturally infected by the entomopathogenic fungus Beauveria bassiana, but its infection process in this host is unknown. We have studied the infection of R. ferrugineus larvae and adults by B. bassiana using dry conidia and conidia suspensions using scanning electron microscopy (SEM). In early stages, SEM revealed acquisition of B. bassiana conidia by cuticle ornamentation in legs, antennae, and elytra of R. ferrugineus adults. Subsequently, conidia germinated and frequent episodes of hyphal/conidial fusion were found. Appressoria, signs of adhesion and cuticle degradation led to penetration (even direct) and colonization of R. ferrugineus hosts by the fungus. B. bassiana conidiophores were found in a R. ferrugineus cuticle, which indicate the completion of the life cycle of the fungus in the insect host. SEM has proven that dry conidia of B. bassiana is an adequate inoculum for R. ferrugineus infection. SEM revealed that conidia of B. bassiana attached to the cuticle of R. ferrugineus can germinate and differentiate appressoria.

摘要

红棕榈象(Rhynchophorus ferrugineus)是地中海、中东和东亚地区棕榈树的毁灭性害虫。目前尚无有效的控制措施。已经发现红棕榈象自然感染了虫生真菌绿僵菌,但在这种宿主中的感染过程尚不清楚。我们使用扫描电子显微镜(SEM)研究了绿僵菌对红棕榈象幼虫和成虫的感染过程,包括干分生孢子和分生孢子悬浮液。在早期阶段,SEM 显示红棕榈象成虫的腿、触角和鞘翅上的表皮纹饰获取了绿僵菌分生孢子。随后,分生孢子发芽,并频繁发生菌丝/分生孢子融合。附着器、附着和角质层降解的迹象导致真菌穿透(甚至直接)和定植红棕榈象宿主。在红棕榈象的角质层中发现了绿僵菌的分生孢子梗,这表明真菌在昆虫宿主中的生命周期已经完成。SEM 已证明绿僵菌的干分生孢子是感染红棕榈象的合适接种体。SEM 显示,附着在红棕榈象角质层上的绿僵菌分生孢子可以发芽并分化附着器。

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