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Shotgun proteomic analysis of mulberry dwarf phytoplasma

机译:gun矮植原体的弹枪蛋白质组学分析

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Background Mulberry dwarf (MD), which is caused by phytoplasma, is one of the most serious infectious diseases of mulberry. Phytoplasmas have been associated with diseases in several hundred plant species. The inability to culture phytoplasmas in vitro has hindered their characterization at the molecular level. Though the complete genomes of two phytoplasmas have been published, little information has been obtained about the proteome of phytoplasma. Therefore, the proteomic information of phytoplasmas would be useful to elucidate the functional mechanisms of phytoplasma in many biological processes. Results MD phytoplasmas, which belong to the 16SrI-B subgroup based on the 16S DNA analysis, were purified from infected tissues using a combination of differential centrifugation and density gradient centrifugation. The expressed proteome of phytoplasma was surveyed by one-dimensional SDS-PAGE and nanocapillary liquid chromatography-tandem mass spectrometry. A total of 209 phytoplasma proteins were unambiguously assigned, including the proteins with the functions of amino acid biosynthesis, cell envelope, cellular processes, energy metabolism, nucleosides and nucleotide metabolism, replication, transcription, translation, transport and binding as well as the proteins with other functions. In addition to these known function proteins, 63 proteins were annotated as hypothetical or conserved hypothetical proteins. Conclusions Taken together, a total of 209 phytoplasma proteins have been experimentally verified, representing the most extensive survey of any phytoplasma proteome to date. This study provided a valuable dataset of phytoplasma proteins, and a better understanding of the energy metabolism and virulence mechanisms of MD phytoplasma.
机译:背景技术由植物质浆体引起的桑矮小病是最严重的桑树传染病之一。植原体与数百种植物中的疾病有关。无法在体外培养植物原浆在分子水平上阻碍了它们的鉴定。尽管已经公开了两个植物质体的完整基因组,但是关于植物质体蛋白质组的信息很少。因此,植物质体的蛋白质组学信息将有助于阐明植物质体在许多生物学过程中的功能机制。结果基于16S DNA分析,属于16SrI-B亚组的MD植物质浆体通过差速离心和密度梯度离心相结合从感染的组织中纯化。通过一维SDS-PAGE和纳米毛细管液相色谱-串联质谱法研究了植物质体表达的蛋白质组。总共明确分配了209种植物质原蛋白,包括具有氨基酸生物合成,细胞包膜,细胞过程,能量代谢,核苷和核苷酸代谢,复制,转录,翻译,转运和结合功能的蛋白,以及具有其他功能。除了这些已知的功能蛋白外,还有63种蛋白被标记为假设或保守的假设蛋白。结论总之,已经通过实验验证了总共209种植物质体蛋白,代表了迄今为止任何植物质体蛋白质组的最广泛的研究。这项研究提供了有价值的植物质体数据集,并更好地了解了MD植物质体的能量代谢和毒力机制。

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