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小麦线条花叶病毒外壳蛋白的 N 端区域是一个宿主和株系特异性的长距离运输因子。

The N-terminal region of wheat streak mosaic virus coat protein is a host- and strain-specific long-distance transport factor.

机构信息

United States Department of Agriculture-Agricultural Research Service and Department of Plant Pathology, University of Nebraska-Lincoln, Nebraska 68583, USA.

出版信息

J Virol. 2011 Feb;85(4):1718-31. doi: 10.1128/JVI.02044-10. Epub 2010 Dec 8.

Abstract

Understanding the genetics underlying host range differences among plant virus strains can provide valuable insights into viral gene functions and virus-host interactions. In this study, we examined viral determinants and mechanisms of differential infection of Zea mays inbred line SDp2 by Wheat streak mosaic virus (WSMV) isolates. WSMV isolates Sidney 81 (WSMV-S81) and Type (WSMV-T) share 98.7% polyprotein sequence identity but differentially infect SDp2: WSMV-S81 induces a systemic infection, but WSMV-T does not. Coinoculation and sequential inoculation of SDp2 with WSMV-T and/or WSMV-S81 did not affect systemic infection by WSMV-S81, suggesting that WSMV-T does not induce a restrictive defense response but that virus-encoded proteins may be involved in differential infection of SDp2. The viral determinant responsible for strain-specific host range was mapped to the N terminus of coat protein (CP) by systematic exchanges of WSMV-S81 sequences with those of WSMV-T and by reciprocal exchanges of CP or CP codons 1 to 74. Green fluorescent protein (GFP)-tagged WSMV-S81 with CP or CP residues 1 to 74 from WSMV-T produced similar numbers of infection foci and genomic RNAs and formed virions in inoculated leaves as those produced with WSMV-S81, indicating that failure to infect SDp2 systemically is not due to defects in replication, cell-to-cell movement, or virion assembly. However, these GFP-tagged hybrids showed profound defects in long-distance transport of virus through the phloem. Furthermore, we found that four of the five differing amino acids in the N terminus of CP between the WSMV-S81 and WSMV-T isolates were collectively involved in systemic infection of SDp2. Taken together, these results demonstrate that the N-terminal region of tritimoviral CP functions in host- and strain-specific long-distance movement.

摘要

了解植物病毒株间宿主范围差异的遗传基础,可以为病毒基因功能和病毒-宿主相互作用提供有价值的见解。在这项研究中,我们研究了小麦条纹花叶病毒(WSMV)分离物对玉米自交系 SDp2 不同感染的病毒决定因素和机制。WSMV 分离物 Sidney 81(WSMV-S81)和 Type(WSMV-T)的多蛋白序列同一性为 98.7%,但对 SDp2 的感染程度不同:WSMV-S81 诱导系统性感染,而 WSMV-T 则不会。SDp2 同时接种 WSMV-T 和/或 WSMV-S81 以及先后接种这两种病毒均不会影响 WSMV-S81 的系统性感染,这表明 WSMV-T 不会诱导限制性防御反应,但病毒编码蛋白可能参与 SDp2 的差异感染。通过系统交换 WSMV-S81 与 WSMV-T 的序列以及 CP 或 CP 密码子 1 到 74 的相互交换,将导致株系特异性宿主范围的病毒决定因素定位到衣壳蛋白(CP)的 N 端。带有 WSMV-S81 CP 或 CP 残基 1 到 74 的 GFP 标记 WSMV-S81 在接种叶片中产生与 WSMV-S81 相似数量的感染焦点和基因组 RNA,并形成病毒粒子,表明不能系统感染 SDp2 不是由于复制、细胞间运动或病毒粒子组装的缺陷。然而,这些 GFP 标记的杂种在韧皮部中的病毒长距离运输中表现出严重缺陷。此外,我们发现,在 WSMV-S81 和 WSMV-T 分离株之间 CP 的 N 端的五个不同氨基酸中的四个共同参与 SDp2 的系统性感染。综上所述,这些结果表明,三叶草病毒 CP 的 N 端区域在宿主和株系特异性的长距离运动中起作用。

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