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马铃薯 S 病毒三基因块的互补分析表明其能够支持重组马铃薯 X 病毒的系统感染和蚜虫传播性。

Complementation analysis of triple gene block of Potato virus S (PVS) revealed its capability to support systemic infection and aphid transmissibility of recombinant Potato virus X.

机构信息

Department of Molecular Genetics, Institute of Plant Molecular Biology Czech Academy of Sciences, Branisovská 31, 370 05 Ceské Budejovice, Czech Republic.

出版信息

Virus Res. 2009 Dec;146(1-2):81-8. doi: 10.1016/j.virusres.2009.09.003. Epub 2009 Sep 11.

Abstract

Triple gene block (TGB) sequences derived from isolates of ordinary Potato virus S (PVS-O) and Chenopodium-systemic (PVS-CS) were analyzed. Although the TGB sequences did not reveal any specific difference within the 7K protein, some specific differences within the 25K and 12K ORFs were found. In order to investigate a possible functional divergence of PVS-O and PVS-CS TGB variants, these genes were propagated in chimeric Potato virus X (PVX). Both PVS TGB variants partly complemented PVX TGB in Nicotiana benthamiana. The recombinant viruses multiplied to lower titer than the wild-type PVX in N. benthamiana showed attenuated symptoms. Whereas the recombinant PVX variants were also propagated systemically in Nicotiana glutinosa, Celosia argentea, Nicotiana occidentalis and chimeric PVX bearing TGB from PVS-O in Solanum lycopersicum, neither were propagated systemically in Chenopodium quinoa nor in Nicotiana tabacum cv. Samsun nn and the PVX-resistant Solanum tuberosum cv. Szignal. The potential for recombinant viruses to be transmitted by the aphid Myzus persicae was investigated. Aphid transmission in the recombinant virus was obtained by replacing PVX TGB by TGB from the PVS-CS isolate. These results show the potential function of Carlavirus TGB in aphid transmissibility and underlines the possible biological risks from certain recombinant virus variants.

摘要

分析了普通马铃薯 Y 病毒(PVS-O)和藜科系统病毒(PVS-CS)分离株的三基因块(TGB)序列。虽然 TGB 序列在 7K 蛋白内没有显示出任何特定差异,但在 25K 和 12K ORF 内发现了一些特定差异。为了研究 PVS-O 和 PVS-CS TGB 变体可能存在的功能分化,这些基因在嵌合马铃薯 X 病毒(PVX)中进行了繁殖。在本氏烟中,两种 PVS TGB 变体部分互补了 PVX TGB。在本氏烟中,重组病毒的增殖滴度低于野生型 PVX,表现出较弱的症状。而重组 PVX 变体也在普通烟、鸡冠花、西方烟草和番茄中系统地繁殖,在昆诺藜和烟草 cv. Samsun nn 中则不能系统地繁殖,PVX 抗性的马铃薯 cv. Szignal 也不能系统地繁殖。还研究了重组病毒通过烟粉虱传播的可能性。通过用来自 PVS-CS 分离株的 TGB 替换 PVX TGB,在重组病毒中获得了烟粉虱的传播。这些结果表明了卡尔病毒 TGB 在蚜虫传播性方面的潜在功能,并强调了某些重组病毒变体可能存在的生物风险。

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