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The Additional 15 nt of 5' UTR in a Novel Recombinant Isolate of Chilli Veinal Mottle Virus in Solanum nigrum L. Is Crucial for Infection.


ABSTRACT: An isolate of chilli veinal mottle virus (ChiVMV; genus Potyvirus) of Solanum nigrum L. from southwest China (ChiVMV-YunN/Yuxi) was identified and sequenced (GenBank: OP404087). Comparison with other ChiVMV isolates and recombination analyses suggested a recombinant origin. The most significant recombination event among all 21 complete ChiVMV isolates was an ending breakpoint at 1408-1488 for ChiVMV-YunN/Yuxi with ChiVMV-TaiW and ChiVMV-YunN/Ca operating as the respective major and minor parents. Interestingly, the 5' UTR of ChiVMV-YunN/Yuxi is 15 nucleotides ('AAAAATAAAACAACC') longer than other reported isolates. A full-length clone of ChiVMV-YunN/Yuxi was constructed and was shown to be infectious in Nicotiana benthamiana. The additional 15 nt of 5' UTR in ChiVMV-YunN/Yuxi was stable when transmitted through three generations. Experiments with modified clones showed that the additional 15 nt are essential for infection by this isolate.

SUBMITTER: Wan Q 

PROVIDER: S-EPMC10384581 | biostudies-literature | 2023 Jun

REPOSITORIES: biostudies-literature

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The Additional 15 nt of 5' UTR in a Novel Recombinant Isolate of Chilli Veinal Mottle Virus in <i>Solanum nigrum</i> L. Is Crucial for Infection.

Wan Qionglian Q   Zheng Kaiyue K   Wu Jian J   Bu Shan S   Jiao Mengting M   Zhou Huijie H   Lu Yuwen Y   Zheng Hongying H   Wu Guanwei G   Rao Shaofei S   Chen Hairu H   Yan Fei F   Peng Jiejun J  

Viruses 20230623 7


An isolate of chilli veinal mottle virus (ChiVMV; genus <i>Potyvirus</i>) of <i>Solanum nigrum</i> L. from southwest China (ChiVMV-YunN/Yuxi) was identified and sequenced (GenBank: OP404087). Comparison with other ChiVMV isolates and recombination analyses suggested a recombinant origin. The most significant recombination event among all 21 complete ChiVMV isolates was an ending breakpoint at 1408-1488 for ChiVMV-YunN/Yuxi with ChiVMV-TaiW and ChiVMV-YunN/Ca operating as the respective major and  ...[more]

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