首页> 外文期刊>Acta Virologica: International Journal >Yellow mosaic symptom caused by the nuclear shuttle protein gene of mungbean yellow mosaic virus is associated with single-stranded DNA accumulation and mesophyll spread of the virus
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Yellow mosaic symptom caused by the nuclear shuttle protein gene of mungbean yellow mosaic virus is associated with single-stranded DNA accumulation and mesophyll spread of the virus

机译:绿豆黄花叶病毒核穿梭蛋白基因引起的黄花叶症状与病毒的单链DNA积累和叶肉传播有关

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Mungbean yellow mosaic virus-[India:Vigna] (MYMV-[IN:Vig]), a blackgram isolate of MYMV, causes yellow mosaic disease in blackgram and mungbean. Two variable DNA-B components, KA22 and KA27, cause distinct symptoms in blackgram [V mungo (L.) Hepper] with the same DNA-A component. KA22 + DNA-A-agroinoculated blackgram plants displayed yellow mosaic symptom and accumulated high levels of viral single-stranded (ss) DNA. KA27 + DNA-A-agroinoculated blackgram plants displayed severe stunting symptom and accumulated very low levels of viral ssDNA. However, in mungbean [V radiata (L.) Wilczek], KA27 + DNA-A caused yellow mosaic symptom and a high level of viral ssDNA accumulated. Swapping of KA27 DNA-B with the nuclear shuttle protein gene (NSP) of KA22 DNA-B (KA27xKA22 NSP) caused yellow mosaic symptom in blackgram, suggesting that KA22 NSP is the determinant of yellow mosaic symptom. Interestingly, KA27xKA22 NSP-infected blackgram plants accumulated high levels of viral ssDNA, comparable to that of KA22 DNA-B infection, suggesting that the KA22 NSP is responsible for accumulation of high levels of viral ssDNA. MYMV distribution was studied in blackgram and mungbean plants by leaf tissue hybridization, which showed mesophyll spread of the virus in KA22-infected blackgram leaflets and in KA27-infected mungbean leaflets, both of which displayed yellow mosaic symptom. However, the virus did not accumulate in the mesophyll in the case of KA27-infected blackgram leaflets. Interestingly, the swapped KA27xKA22 NSP-infected blackgram leaflets showed mesophyll accumulation of the virus, suggesting that KA22 NSP determines its mesophyll spread.
机译:绿豆黄色花叶病毒-[印度:Vigna](MYMV- [IN:Vig]),MYMV的黑克分离株,在黑豆和绿豆中引起黄色花叶病。两种可变的DNA-B成分KA22和KA27在具有相同DNA-A成分的黑字[V mungo(L.)Hepper]中引起明显的症状。 KA22 + DNA-A-农杆菌接种的黑gram植物表现出黄色的花叶症状,并积累了高水平的病毒单链(ss)DNA。 KA27 + DNA-A-农杆菌接种的blackgram植物表现出严重的发育迟缓症状,并积累了非常低水平的病毒ssDNA。然而,在绿豆[V radiata(L.)Wilczek]中,KA27 + DNA-A引起黄色花叶症状,并且高水平的病毒ssDNA积累。用KA22 DNA-B的核穿梭蛋白基因(NSP)交换KA27 DNA-B(KA27xKA22 NSP)会在黑图中显示黄色马赛克症状,这表明KA22 NSP是黄色马赛克症状的决定因素。有趣的是,与KA22 DNA-B感染相比,感染KA27xKA22 NSP的黑gram植物积累了高水平的病毒ssDNA,这表明KA22 NSP负责了高水平的病毒ssDNA的积累。通过叶片组织杂交研究了黑麦和绿豆植物中MYMV的分布,结果表明病毒在叶绿素的传播中感染了KA22的黑克林小叶和感染了KA27的绿豆,两者均显示出黄色的花叶症状。但是,在感染KA27的黑革兰小叶的情况下,病毒不会在叶肉中积聚。有趣的是,交换的被KA27xKA22 NSP感染的黑gram传单显示了该病毒的叶肉积累,表明KA22 NSP决定了其叶肉传播。

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