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Integrative proteomics to understand the transmission mechanism of Barley yellow dwarf virus-GPV by its insect vector Rhopalosiphum padi

机译:综合蛋白质组学通过昆虫载体Rhodolosiphum padi了解大麦黄矮病毒-GPV的传播机制

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摘要

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.
机译:大麦黄矮病毒-GPV(BYDV-GPV)是由Rhopalosiphum padi和Schizaphis graminum持续非传播地传播的。为了增进我们对蚜虫载体传播机制的了解,我们使用了两种方法,即相对定量和绝对定量(iTRAQ)的同量异位标签和酵母双杂交(YTH)系统,以鉴定可能与R. padi相互作用或直接相互作用的蛋白质。 BYDV-GPV沿循环传播途径的扩散。使用与2DLC-MS / MS偶联的iTRAQ,可鉴定出有毒和无毒昆虫中的33种差异蚜虫蛋白。使用酵母双杂交系统,鉴定出25种猎物蛋白与通读蛋白(RTP)相互作用,而八种与外壳蛋白(CP)相互作用,这些蛋白由BYDV-GPV编码。在鉴定出的蚜虫蛋白中,大多数与初级能量代谢,突触小泡循环,蛋白酶体途径和细胞骨架组织途径有关。通过对这两种方法的系统比较,我们发现这两种方法生成的信息是互补的。综上所述,我们的发现为BYDV-GPV及其载体R. padi之间的相互作用提供了有用的信息,以进一步使我们了解调节蚜虫载体中循环传播的机制。

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