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How can plant virus satellite RNAs alter the effects of plant virus infection? A study of the changes in the nicotiana benthamiana proteome after infection by peanut stunt virus in the presence or absence of its satellite RNA

机译:植物病毒卫星RNA如何改变植物病毒感染的影响?在存在或不存在其卫星RNA的情况下,花生特技病毒感染后本氏烟草蛋白质组变化的研究

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Peanut stunt virus (PSV), which belongs to the Cucumovirus genus, is a pathogen of legumes. Certain PSV strains associated with a satellite RNA (satRNA) modify the symptoms of infected plants and interfere with plant metabolism. We used PSV-P genomic transcripts (GTs) with and without PSV-P satRNA and a comparative proteomic 2D-DIGE/MS study to assess their effects on Nicotiana benthamiana infection. When the proteomes of the PSV-P genomic transcripts-infected (no satRNA present) and mock-inoculated plants were compared 29 differentially regulated proteins were found. When comparisons were made for plants infected with PSV-P-GT in the presence or absence of satRNA, and for mock-infected plants and those infected with the satRNA-associated PSV-P-GT, 40 and 60 such proteins, respectively, were found. The presence of satRNA mostly decreased the amounts of the affected host proteins. Proteins involved in photosynthesis and carbohydrate metabolism, for example ferredoxin-NADP-reductase and malate dehydrogenase, are among the identified affected proteins in all comparisons. Proteins involved in protein synthesis and degradation were also affected. Such proteins include chaperonin 60β-whose abundance of the proteins changed for all comparisons-and aminopeptidase that is a satRNA- or PSV-P-GT/satRNA-responsive protein. Additionally, the levels of the stress-related proteins superoxide dismutase and acidic endochitinase Q increased in the PSV-P-GT- and PSV-P-GT/satRNA-infected plants. This study appears to be the first report on plant proteome changes in response to a satRNA presence during viral infection and, as such, may provide a reference for future studies concerning the influence of satRNAs during viral infections.
机译:属于黄瓜病毒属的花生特技病毒(PSV)是豆类的病原体。与卫星RNA(satRNA)相关的某些PSV株会改变被感染植物的症状并干扰植物的新陈代谢。我们使用带有和不带有PSV-P satRNA的PSV-P基因组转录物(GTs)以及比较蛋白质组2D-DIGE / MS研究来评估它们对本氏烟草感染的影响。当比较感染了PSV-P基因组转录物的蛋白质组(不存在satRNA)和模拟接种的植物时,发现了29种差异调节的蛋白质。当比较存在或不存在satRNA的情况下感染PSV-P-GT的植物,以及模拟感染的植物和被satRNA相关的PSV-P-GT感染的植物时,分别有40和60种这样的蛋白。找到了。 satRNA的存在主要减少了受影响宿主蛋白的量。在所有比较中,与光合作用和碳水化合物代谢有关的蛋白质,例如铁氧还蛋白-NADP-还原酶和苹果酸脱氢酶,都是已鉴定出的受影响蛋白质。参与蛋白质合成和降解的蛋白质也受到影响。此类蛋白质包括伴侣蛋白60β(其蛋白质的丰度在所有比较中均已更改)以及氨基肽酶(satRNA-或PSV-P-GT / satRNA响应蛋白)。另外,在与PSV-P-GT-和PSV-P-GT / satRNA感染的植物中,与胁迫相关的蛋白质超氧化物歧化酶和酸性内切几丁质酶Q的水平增加。这项研究似乎是关于病毒感染过程中对satRNA的反应所致植物蛋白质组变化的第一份报告,因此,这可能为以后有关satRNA在病毒感染过程中的影响的研究提供参考。

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