Laboratory of Pest Management of Horticultural Crop of Hunan Province, Hunan Plant Protection Institute, Hunan Academy of Agricultural Sciences, Changsha, 410125, China.
Department of Entomology, University of Kentucky, Lexington, KY, 40546, USA.
BMC Plant Biol. 2021 Jan 29;21(1):67. doi: 10.1186/s12870-021-02838-5.
Most plant viruses rely on vectors for their transmission and spread. One of the outstanding biological questions concerning the vector-pathogen-symbiont multi-trophic interactions is the potential involvement of vector symbionts in the virus transmission process. Here, we used a multi-factorial system containing a non-persistent plant virus, cucumber mosaic virus (CMV), its primary vector, green peach aphid, Myzus persicae, and the obligate endosymbiont, Buchnera aphidicola to explore this uncharted territory.
Based on our preliminary research, we hypothesized that aphid endosymbiont B. aphidicola can facilitate CMV transmission by modulating plant volatile profiles. Gene expression analyses demonstrated that CMV infection reduced B. aphidicola abundance in M. persicae, in which lower abundance of B. aphidicola was associated with a preference shift in aphids from infected to healthy plants. Volatile profile analyses confirmed that feeding by aphids with lower B. aphidicola titers reduced the production of attractants, while increased the emission of deterrents. As a result, M. persicae changed their feeding preference from infected to healthy plants.
We conclude that CMV infection reduces the B. aphidicola abundance in M. persicae. When viruliferous aphids feed on host plants, dynamic changes in obligate symbionts lead to a shift in plant volatiles from attraction to avoidance, thereby switching insect vector's feeding preference from infected to healthy plants.
大多数植物病毒依赖媒介进行传播和扩散。关于媒介-病原体-共生多营养层相互作用的一个突出生物学问题是媒介共生体是否参与病毒的传播过程。在这里,我们使用了一个多因素系统,其中包含非持久性植物病毒黄瓜花叶病毒(CMV)、其主要媒介桃蚜、桃蚜的专性内共生菌 Buchnera aphidicola,来探索这个未知领域。
基于我们的初步研究,我们假设蚜虫内共生体 B. aphidicola 可以通过调节植物挥发性图谱来促进 CMV 的传播。基因表达分析表明,CMV 感染降低了 M. persicae 中 B. aphidicola 的丰度,其中 B. aphidicola 的丰度降低与蚜虫从感染植物向健康植物的偏好转变有关。挥发性图谱分析证实,低 B. aphidicola 滴度的蚜虫取食减少了引诱剂的产生,同时增加了驱避剂的排放。结果,桃蚜改变了它们从感染植物到健康植物的取食偏好。
我们得出结论,CMV 感染降低了 M. persicae 中的 B. aphidicola 丰度。当带毒蚜虫取食宿主植物时,专性共生体的动态变化导致植物挥发性物质从吸引变为回避,从而使昆虫媒介的取食偏好从感染植物转向健康植物。