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一个单一的氨基酸替换运动蛋白使双生病毒的机械传播。

A single amino acid substitution in the movement protein enables the mechanical transmission of a geminivirus.

机构信息

Ph.D. Program in Microbial Genomics, National Chung Hsing University and Academia Sinica, Taichung, Taipei, Taiwan.

Department of Plant Pathology, National Chung Hsing University, Taichung, Taiwan.

出版信息

Mol Plant Pathol. 2020 Apr;21(4):571-588. doi: 10.1111/mpp.12917. Epub 2020 Feb 20.

Abstract

Begomoviruses of the Geminiviridae are usually transmitted by whiteflies and rarely by mechanical inoculation. We used tomato leaf curl New Delhi virus (ToLCNDV), a bipartite begomovirus, to address this issue. Most ToLCNDV isolates are not mechanically transmissible to their natural hosts. The ToLCNDV-OM isolate, originally identified from a diseased oriental melon plant, is mechanically transmissible, while the ToLCNDV-CB isolate, from a diseased cucumber plant, is not. Genetic swapping and pathological tests were performed to identify the molecular determinants involved in mechanical transmission. Various viral infectious clones were constructed and successfully introduced into Nicotiana benthamiana, oriental melon, and cucumber plants by Agrobacterium-mediated inoculation. Mechanical transmissibility was assessed via direct rub inoculation with sap prepared from infected N. benthamiana. The presence or absence of viral DNA in plants was validated by PCR, Southern blotting, and in situ hybridization. The results reveal that mechanical transmissibility is associated with the movement protein (MP) of viral DNA-B in ToLCNDV-OM. However, the nuclear shuttle protein of DNA-B plays no role in mechanical transmission. Analyses of infectious clones carrying a single amino acid substitution reveal that the glutamate at amino acid position 19 of MP in ToLCNDV-OM is critical for mechanical transmissibility. The substitution of glutamate with glycine at this position in the MP of ToLCNDV-OM abolishes mechanical transmissibility. In contrast, the substitution of glycine with glutamate at the 19th amino acid position in the MP of ToLCNDV-CB enables mechanical transmission. This is the first time that a specific geminiviral movement protein has been identified as a determinant of mechanical transmissibility.

摘要

双生病毒科的 Begomoviruses 通常通过粉虱传播,很少通过机械接种传播。我们使用番茄黄曲叶病毒(ToLCNDV),一种二分体 Begomovirus,来解决这个问题。大多数 ToLCNDV 分离株不能机械地传播到其自然宿主。最初从患病的东方甜瓜植物中鉴定出的 ToLCNDV-OM 分离株是可机械传播的,而来自患病黄瓜植物的 ToLCNDV-CB 分离株则不是。进行了基因交换和病理学测试,以确定参与机械传播的分子决定因素。构建了各种病毒传染性克隆,并通过农杆菌介导的接种成功引入到 Nicotiana benthamiana、东方甜瓜和黄瓜植物中。通过直接用从感染的 N. benthamiana 制备的汁液进行摩擦接种来评估机械传播性。通过 PCR、Southern 印迹和原位杂交验证植物中病毒 DNA 的存在或不存在。结果表明,机械传播性与 ToLCNDV-OM 中的病毒 DNA-B 的运动蛋白(MP)有关。然而,DNA-B 的核穿梭蛋白在机械传播中不起作用。携带单个氨基酸取代的传染性克隆分析表明,ToLCNDV-OM 中 MP 的第 19 位氨基酸的谷氨酸对于机械传播性至关重要。在 ToLCNDV-OM 的 MP 中,第 19 位氨基酸的谷氨酸被甘氨酸取代会导致机械传播性丧失。相比之下,在 ToLCNDV-CB 的 MP 中,第 19 位氨基酸的甘氨酸被谷氨酸取代可以实现机械传播。这是首次鉴定出特定的双生病毒运动蛋白是机械传播性的决定因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58c6/7060137/5a48de24cdc5/MPP-21-571-g001.jpg

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