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番茄曲叶病毒两个序列变异体的 3' 基因间区和 V2 蛋白的差异在烟草原生质体中的致病病理学中发挥着重要作用。

Differences in the 3' intergenic region and the V2 protein of two sequence variants of tomato curly stunt virus play an important role in disease pathology in Nicotiana benthamiana.

机构信息

School of Molecular and Cell Biology, University of the Witwatersrand, Johannesburg, South Africa.

出版信息

PLoS One. 2023 May 23;18(5):e0286149. doi: 10.1371/journal.pone.0286149. eCollection 2023.

Abstract

Tomato production in South Africa is threatened by the emergence of tomato curly stunt virus (ToCSV), a monopartite Begomovirus transmitted by the whitefly vector Bemisia tabaci (Genn.). We investigated the role of sequence differences present in the 3' intergenic region (IR) and the V2 coding region on the differing infectivity of ToCSV sequence variant isolates V30 and V22 in the model host Nicotiana benthamiana. Using virus mutant chimeras, we determined that the development of the upward leaf roll symptom phenotype is mediated by sequence differences present in the 3' IR containing the TATA-associated composite element. Sequence differences present in the V2 coding region are responsible for modulating disease severity and symptom recovery in V22-infected plants. Serine substitution of V22 V2 Val27 resulted in a significant increase in disease severity with reduced recovery, the first study to demonstrate the importance of this V2 residue in disease development. Two putative ORFs, C5 and C6, were identified using in silico analysis and detection of an RNA transcript spanning their coding region suggests that these ORFs may be transcribed during infection. Additional virus-derived RNA transcripts spanning multiple ORFs and crossing the boundaries of recognised polycistronic transcripts, as well as the origin of replication within the IR, were detected in ToCSV-infected plants providing evidence of bidirectional readthrough transcription. From our results, we conclude that the diverse responses of the model host to ToCSV infection is influenced by select sequence differences and our findings provide several avenues for further investigation into the mechanisms behind these responses to infection.

摘要

南非的番茄生产受到番茄曲叶病毒(ToCSV)的威胁,该病毒是一种单分体伴随病毒,由粉虱介体烟粉虱(Bemisia tabaci)(Genn.)传播。我们研究了 3' 内含子区(IR)和 V2 编码区中存在的序列差异在模式宿主本氏烟中对 ToCSV 序列变异分离株 V30 和 V22 不同感染力的作用。使用病毒突变嵌合体,我们确定了向上叶卷症状表型的发展是由 3'IR 中存在的 TATA 相关复合元件的序列差异介导的。V2 编码区中存在的序列差异负责调节 V22 感染植物的严重程度和症状恢复。V22 V2 缬氨酸 27 处丝氨酸取代导致严重程度显著增加,恢复减少,这是首次证明该 V2 残基在疾病发展中的重要性的研究。通过计算机分析鉴定了两个推定的 ORF(C5 和 C6),并检测到跨越其编码区的 RNA 转录本表明这些 ORF 可能在感染过程中被转录。在 ToCSV 感染的植物中还检测到跨越多个 ORF 并跨越公认的多顺反子转录本边界以及 IR 内复制起点的额外病毒衍生 RNA 转录本,为双向通读转录提供了证据。根据我们的结果,我们得出结论,模式宿主对 ToCSV 感染的不同反应受特定序列差异的影响,我们的发现为进一步研究这些感染反应背后的机制提供了几个途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a08/10205009/e2045c95443c/pone.0286149.g001.jpg

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