Wang Hui, Wu Keke, Liu Yan, Wu Yunfeng, Wang Xifeng
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.
1] State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China [2] College of Plant Protection, Northwest A &F University, Yangling 712100, China.
Sci Rep. 2015 Jul 10;5:10971. doi: 10.1038/srep10971.
Barley yellow dwarf virus-GPV (BYDV-GPV) is transmitted by Rhopalosiphum padi and Schizaphis graminum in a persistent nonpropagative manner. To improve our understanding of its transmission mechanism by aphid vectors, we used two approaches, isobaric tags for relative and absolute quantitation (iTRAQ) and yeast two-hybrid (YTH) system, to identify proteins in R. padi that may interact with or direct the spread of BYDV-GPV along the circulative transmission pathway. Thirty-three differential aphid proteins in viruliferous and nonviruliferous insects were identified using iTRAQ coupled to 2DLC-MS/MS. With the yeast two-hybrid system, 25 prey proteins were identified as interacting with the readthrough protein (RTP) and eight with the coat protein (CP), which are encoded by BYDV-GPV. Among the aphid proteins identified, most were involved in primary energy metabolism, synaptic vesicle cycle, the proteasome pathway and the cell cytoskeleton organization pathway. In a systematic comparison of the two methods, we found that the information generated by the two methods was complementary. Taken together, our findings provide useful information on the interactions between BYDV-GPV and its vector R. padi to further our understanding of the mechanisms regulating circulative transmission in aphid vectors.
大麦黄矮病毒-GPV(BYDV-GPV)由禾谷缢管蚜和麦二叉蚜以持久性非增殖方式传播。为了更好地理解其通过蚜虫传播的机制,我们采用了两种方法,即相对和绝对定量的等压标签(iTRAQ)和酵母双杂交(YTH)系统,来鉴定禾谷缢管蚜中可能与BYDV-GPV相互作用或引导其沿循环传播途径传播的蛋白质。使用与二维液相色谱-串联质谱联用的iTRAQ鉴定了带毒和无毒昆虫中的33种差异蚜虫蛋白。通过酵母双杂交系统,鉴定出25种猎物蛋白与BYDV-GPV编码的通读蛋白(RTP)相互作用,8种与外壳蛋白(CP)相互作用。在鉴定出的蚜虫蛋白中,大多数参与初级能量代谢、突触小泡循环、蛋白酶体途径和细胞细胞骨架组织途径。在对这两种方法的系统比较中,我们发现这两种方法产生的信息是互补的。综上所述,我们的研究结果为BYDV-GPV与其载体禾谷缢管蚜之间的相互作用提供了有用信息,有助于我们进一步了解蚜虫载体中循环传播的调控机制。