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烟草花叶病毒属病毒的系统移动需要宿主细胞果胶甲酯酶。

Systemic movement of a tobamovirus requires host cell pectin methylesterase.

作者信息

Chen Min-Huei, Citovsky Vitaly

机构信息

Department of Biochemistry and Cell Biology, State University of New York, Stony Brook, NY 11794-5215, USA.

出版信息

Plant J. 2003 Aug;35(3):386-92. doi: 10.1046/j.1365-313x.2003.01818.x.

Abstract

Systemic movement of plant viruses through the host vasculature, one of the central events of the infection process, is essential for maximal viral accumulation and development of disease symptoms. The host plant proteins involved in this transport, however, remain unknown. Here, we examined whether or not pectin methylesterase (PME), one of the few cellular proteins known to be involved in local, cell-to-cell movement of tobacco mosaic virus (TMV), is also required for the systemic spread of viral infection through the plant vascular system. In a reverse genetics approach, PME levels were reduced in tobacco plants using antisense suppression. The resulting PME antisense plants displayed a significant degree of PME suppression in their vascular tissues but retained the wild-type pattern of phloem loading and unloading of a fluorescent solute. Systemic transport of TMV in these plants, however, was substantially delayed as compared to the wild-type tobacco, suggesting a role for PME in TMV systemic infection. Our analysis of virus distribution in the PME antisense plants suggested that TMV systemic movement may be a polar process in which the virions enter and exit the vascular system by two different mechanisms, and it is the viral exit out of the vascular system that involves PME.

摘要

植物病毒通过宿主脉管系统的系统移动是感染过程的核心事件之一,对于病毒的最大积累和病害症状的发展至关重要。然而,参与这种运输的宿主植物蛋白仍然未知。在这里,我们研究了果胶甲酯酶(PME),一种已知参与烟草花叶病毒(TMV)局部细胞间移动的少数细胞蛋白之一,是否也是病毒感染通过植物维管系统进行系统传播所必需的。在一种反向遗传学方法中,利用反义抑制降低烟草植株中的PME水平。所得的PME反义植株在其维管组织中表现出显著程度的PME抑制,但保留了荧光溶质韧皮部装载和卸载的野生型模式。然而,与野生型烟草相比,TMV在这些植株中的系统运输被显著延迟,这表明PME在TMV系统感染中起作用。我们对PME反义植株中病毒分布的分析表明,TMV系统移动可能是一个极性过程,其中病毒粒子通过两种不同机制进入和离开脉管系统,并且正是病毒从脉管系统中出来涉及PME。

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