Chiel Elad, Kelly Suzanne E, Harris Alexandre M, Gebiola Marco, Li Xianchun, Zchori-Fein Einat, Hunter Martha S
Department of Biology and Environment, University of Haifa-Oranim, Tiv'on, Israel.
Environ Entomol. 2014 Apr;43(2):353-62. doi: 10.1603/EN13286.
Wolbachia is a common intracellular bacterial endosymbiont of insects, causing a variety of effects including reproductive manipulations such as cytoplasmic incompatibility (CI). In this study, we characterized Wolbachia in the whitefly Bemisia tabaci and in the whitefly parasitoid Eretmocerus sp. nr. emiratus. We also tested for horizontal transmission of Wolbachia between and within trophic levels, and we determined the phenotype of Wolbachia in E. sp. nr. emiratus. Using multilocus sequence typing and phylogenetic analyses, we found that B. tabaci and E. sp. nr. emiratus each harbor a different and unique strain of Wolbachia. Both strains belong to the phylogenetic supergroup B. No evidence for horizontal transmission of Wolbachia between and within trophic levels was found in our study system. Finally, crossing results were consistent with a CI phenotype; when Wolbachia-infected E. sp. nr. emiratus males mate with uninfected females, wasp progeny survival dropped significantly, and the number of females was halved. This is the first description of CI caused by Wolbachia in the economically important genus Eretmocerus. Our study underscores the expectation that horizontal transmission events occur rarely in the dynamics of secondary symbionts such as Wolbachia, and highlights the importance of understanding the effects of symbionts on the biology of natural enemies.
沃尔巴克氏体是昆虫中常见的细胞内共生细菌,会产生多种影响,包括细胞质不亲和(CI)等生殖操控现象。在本研究中,我们对烟粉虱和烟粉虱寄生蜂埃氏啮小蜂中的沃尔巴克氏体进行了特征分析。我们还测试了沃尔巴克氏体在营养级之间和营养级内部的水平传播情况,并确定了埃氏啮小蜂中沃尔巴克氏体的表型。通过多位点序列分型和系统发育分析,我们发现烟粉虱和埃氏啮小蜂各自携带不同且独特的沃尔巴克氏体菌株。这两种菌株都属于系统发育超群B。在我们的研究系统中,未发现沃尔巴克氏体在营养级之间和营养级内部水平传播的证据。最后,杂交结果与细胞质不亲和表型一致;当感染沃尔巴克氏体的埃氏啮小蜂雄蜂与未感染的雌蜂交配时,黄蜂后代的存活率显著下降,雌蜂数量减半。这是首次对经济上重要的埃氏啮小蜂属中由沃尔巴克氏体引起的细胞质不亲和现象进行描述。我们的研究强调了这样一种预期,即在沃尔巴克氏体等次生共生菌的动态变化中,水平传播事件很少发生,并突出了了解共生菌对天敌生物学影响的重要性。