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首页> 外文期刊>Virus Research: An International Journal of Molecular and Cellular Virology >Nitric oxide associated protein 1 is associated with chloroplast perturbation and disease symptoms in Nicotiana benthamiana infected with South African cassava mosaic virus
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Nitric oxide associated protein 1 is associated with chloroplast perturbation and disease symptoms in Nicotiana benthamiana infected with South African cassava mosaic virus

机译:一氧化氮相关的蛋白1与尼古利亚纳·斯坦姆亚洲人感染南非木薯病毒感染的叶绿体扰动和疾病症状有关

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摘要

Nitric oxide associated 1 (NOA1) in plants is a cyclic GTPase involved in protein translation in the chloroplast and has been indirectly linked to nitric oxide (NO) accumulation and response to biotic stress. The association between NOA1 and NO accumulation in Arabidopsis noal mutants has been linked to the inability of noal mutants to accumulate carbon reserves such as fumarate, leading to chloroplast dysfunction and a pale green leaf phenotype. To understand the role played by NOA1 in response to South African cassava mosaic virus infection in Nicotiana benthamiana, the expression of NbNOA1 and the accumulation of NO in leaf samples was compared between south african cassava mosaic (SACMV)-infected and mock-infected plants at 14 and 28 dpi. Real-time qPCR was used to measure SACMV viral load which increased significantly by 20% from 14 to 28 dpi as chlorosis and symptom severity progressed. At 14 and 28 dpi, NbNOA1 expression was significantly lower than mock inoculated plants (2-fold lower at 14 dpi, p-value = 0.01 and 5-fold lower at 28, p-value = 0.00). At 14 dpi, NO accumulation remained unchanged in infected leaf tissue compared to mock inoculated, while at 28 dpi, NO accumulation was 40% lower (p-value = 0.01). At 28 dpi, the decrease in NbNOA1 expression and NO accumulation wad accompanied by chloroplast dysfunction, evident from the significant reduction in chlorophylls a and b and carotenoids in SACMV-infected leaves. Furthermore, the expression of chloroplast translation factors (chloroplast RNA binding, chloroplast elongation factor G, translation elongation factor Tu, translation initiation factor 3-2, plastid-specific ribosomal protein 6 and plastid ribosome recycling factor) were found to be repressed in infected N. benthamiana. GC MS analysis showed a decrease in fumarate and an increase in glucose in SACMV-infected N. benthamiana in comparison to mock samples suggesting a decrease in carbon stores. Collectively,. these results provide evidence that in response to SACMV infection, a decrease in photopigments and carbon stores, accompanied by an increase in glucose and decrease in fumarate, leads to a decline in NbNOA1 expression and NO levels. This is manifested by suppressed translation factors and disruption of chloroplast function, thereby contributing to chlorotic disease symptoms.
机译:植物中的一氧化氮相关1(NOA1)是叶绿体中蛋白质翻译的环状GTP酶,并且已经间接地与一氧化氮(NO)积累和对生物应激的反应连接。 NOA1之间的关联与拟南芥Noal突变体的积累已经与Noal突变体的无法形成,以积累碳储备,例如富马酸盐,导致叶绿体功能障碍和淡绿色叶片表型。要了解NOA1在南非Cassava MOSAIC病毒感染的南非南非南部南非南亚亚洲人的作用,在南非木薯马赛克(SACMV) - 摄染植物之间比较了NBNOA1的表达和叶样品中的NO in叶样品的积累14和28 dpi。实时QPCR用于测量SacMV病毒载量,从14至28 dPi增加20%,因为萎黄和症状严重程度都会得到20%。在14和28dpi下,NbnOa1表达显着低于拟集植物(在14dpi的14dpi下降2倍,p值= 0.01和5倍,p值= 0.00)。在14 dpi下,与嘲笑的叶片接种相比,在感染的叶片组织中没有保持累积不变,而在28 dpi下,没有累积为40%(p值= 0.01)。在28 dpi下,Nbnoa1表达的减少和伴有叶绿素功能障碍的累积次数,从Sacmv感染叶片中的叶绿素A和B和类胡萝卜素的显着降低明显明显。此外,发现叶绿体平移因子(叶绿体RNA结合,叶绿体伸长因子G,翻译延伸因子Tu,翻译引发因子3-2,体积特异性核糖体蛋白6和塑性核糖体回收因子)被发现在感染N中被抑制。Benthamiana。 GC MS分析表明,与模拟样品相比,SacMV感染的N型Nenthamiana中葡萄糖的增加和葡萄糖的增加。集体,。这些结果提供了证据,响应于SacMV感染,伴有葡萄糖和富马酸盐的增加伴随着葡萄糖和碳储存的证据,导致NbnoA1表达和没有水平的下降。这表明抑制了翻译因子和破坏叶绿体功能的破坏,从而有助于褪绿疾病症状。

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