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对年轻转基因烟草植株中表达的传染性烟草花叶病毒基因组的抑制。

Suppression of infectious TMV genomes expressed in young transgenic tobacco plants.

作者信息

Siddiqui S A, Sarmiento C, Valkonen S, Truve E, Lehto K

机构信息

Laboratory of Plant Physiology and Molecular Biology, University of Turku, Finland.

出版信息

Mol Plant Microbe Interact. 2007 Dec;20(12):1489-94. doi: 10.1094/MPMI-20-12-1489.

Abstract

Full-length cDNAs of the wild-type (wt) Tobacco mosaic virus (TMV) and of the coat protein gene-deleted (DeltaCP) derivative of wt-TMV, under control of the 35S promoter and downstream ribozyme sequence to produce accurate viral transcripts, were transformed to tobacco plants to analyze plant-virus interactions through different stages of plant development. Surprisingly, young wt-TMV transgenics accumulated only very low levels of viral RNA, remained free of symptoms, and were moderately resistant against exogenous inoculations. This early resistance caused significant stress to the plants, as indicated by reduced growth. Approximately 7 to 8 weeks after germination, the resistance was broken and plants developed typical wt-TMV symptoms, with high accumulation of the viral RNAs and proteins. The DeltaCP-TMV plants likewise were initially resistant to the endogenous inoculum and were stunted, although to a lesser extent than the wt-TMV plants. The resistance was broken at the same time as in the wt-TMV plants, but the mutant replicated to much lower levels and produced much milder symptoms than the wt virus. TMV-specific small interfering RNAs as well as increased transgene methylation were detected in the plants only after the resistance break, indicating that the resistance in the young plants was not due to RNA silencing.

摘要

将野生型(wt)烟草花叶病毒(TMV)以及wt-TMV的外壳蛋白基因缺失(ΔCP)衍生物的全长cDNA,在35S启动子和下游核酶序列的控制下以产生精确的病毒转录本,转化到烟草植株中,以分析植物在不同发育阶段与病毒的相互作用。令人惊讶的是,年轻的wt-TMV转基因植株仅积累非常低水平的病毒RNA,没有症状,并且对外源接种具有中等抗性。这种早期抗性给植株造成了显著的压力,表现为生长减缓。发芽后约7至8周,抗性被打破,植株出现典型的wt-TMV症状,病毒RNA和蛋白质大量积累。ΔCP-TMV植株同样最初对内源接种物具有抗性且生长受阻,尽管程度比wt-TMV植株轻。抗性与wt-TMV植株同时被打破,但该突变体的复制水平要低得多,产生的症状也比wt病毒轻得多。仅在抗性被打破后才在植株中检测到TMV特异性小干扰RNA以及转基因甲基化增加,这表明年轻植株中的抗性不是由于RNA沉默。

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