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首页> 外文期刊>Virus Genes >Capsid protein gene and the type of host plant differentially modulate cell-to-cell movement of cowpea chlorotic mottle virus.
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Capsid protein gene and the type of host plant differentially modulate cell-to-cell movement of cowpea chlorotic mottle virus.

机译:衣壳蛋白基因和寄主植物的类型差异地调节cow豆绿斑驳病毒的细胞间运动。

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A study was undertaken to measure the rate of coat protein (CP) independent cell-to-cell movement of cowpea chlorotic mottle bromovirus (CCMV) in three different host plants. A CCMV RNA3 variant in which the CP gene was substituted with enhanced green fluorescent protein (C3/DeltaCP-EGFP) was coinoculated to three different host plants with transcripts of wild type RNAs 1 and 2. Comparative analysis of cell-to-cell movement monitored by the EGFP expression at various days post inoculation revealed that the rate of spread varied with the type of host species inoculated: fastest movement was observed in Nicotiana benthamiana while the rate spread was significantly slower in the natural host cowpea. When CP was expressed as EGFP fusion (C3/CP:EGFP) the rate of spread in N. benthamiana and C. quinoa was slower than that was observed in the absence of CP and remained subliminal in cowpea. Analysis of infection foci by confocal laser scanning microscope revealed that localization of CP:EGFP fusion was distinct in N. benthamiana and C.quinoa and accumulated as fluorescent inclusions at the cell periphery. Additional experiments involving coinoculation of either C3/DeltaCP-EGFP or C3/CP:EGFP with heterologous brome mosaic bromovirus (BMV) genomic RNAs 1 and 2 revealed that, in addition to movement protein and CP, viral replicase also influences cell-to-cell spread. The significance of these results in relation to the mechanism of bromovirus movement is discussed.
机译:进行了一项研究,以测量在三种不同寄主植物中豆绿斑驳视细叶病毒(CCMV)与外壳蛋白(CP)无关的细胞间移动速率。将其中CP基因被增强的绿色荧光蛋白(C3 / DeltaCP-EGFP)取代的CCMV RNA3变体共接种到三种具有野生型RNA 1和2转录本的宿主植物中。监测细胞间运动的比较分析接种后各天的EGFP表达结果表明,传播速度随所接种宿主物种的类型而异:在本氏烟草中观察到运动最快,而在天然寄主cow豆中传播速度明显慢。当CP表示为EGFP融合蛋白(C3 / CP:EGFP)时,本塞姆氏烟草和藜麦的扩散速度比没有CP时观察到的慢,而在cow豆中仍保持阈下。共聚焦激光扫描显微镜对感染灶的分析表明,CP:EGFP融合蛋白在本氏烟草和藜麦中的定位不同,并在细胞周围积累为荧光包裹体。涉及将C3 / DeltaCP-EGFP或C3 / CP:EGFP与异源溴化花叶病毒(BMV)基因组RNA 1和2共接种的其他实验表明,除了运动蛋白和CP外,病毒复制酶还影响细胞间传播。讨论了这些结果与溴病毒移动机制有关的意义。

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