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水杨酸决定了两种芜菁花叶病毒株导致的差异性衰老,涉及活性氧和早期转录组变化。

Salicylic acid determines differential senescence produced by two Turnip mosaic virus strains involving reactive oxygen species and early transcriptomic changes.

出版信息

Mol Plant Microbe Interact. 2013 Dec;26(12):1486-98. doi: 10.1094/MPMI-07-13-0190-R.

DOI:10.1094/MPMI-07-13-0190-R
PMID:23945002
Abstract

Losses produced by virus diseases depend mostly on symptom severity. Turnip mosaic virus (TuMV) is one of the most damaging and widespread potyvirus infecting members of the family Brassicaceae, including Arabidopsis thaliana. We used JPN1 and UK1 TuMV strains to characterize viral infections regarding symptom development, senescence progression, antioxidant response, reactive oxygen species (ROS) accumulation, and transcriptional profiling. Both isolates, despite accumulating similar viral titers, induced different symptomatology and strong differences in oxidative status. Early differences in several senescence-associated genes linked to the ORE1 and ORS1 regulatory networks as well as persistent divergence in key ROS production and scavenging systems of the plant were detected. However, at a later stage, both strains induced nutrient competition, indicating that senescence rates are influenced by different mechanisms upon viral infections. Analyses of ORE1 and ORS1 levels in infected Brassica juncea plants showed a similar pattern, suggesting a conserved differential response to both strains in Brassicaceae spp. Transcriptional analysis of the ORE1 and ORS1 regulons showed similarities between salicylic acid (SA) response and the early induction triggered by UK1, the most severe strain. By means of SA-defective NahG transgenic plants, we found that differential senescence progression and ROS accumulation between strains rely on an intact SA pathway.

摘要

病毒病造成的损失主要取决于症状的严重程度。芜菁花叶病毒(TuMV)是侵染十字花科植物的最具破坏性和分布最广的马铃薯 Y 病毒属病毒之一,包括拟南芥。我们使用 JPN1 和 UK1 TuMV 株系来描述病毒感染与症状发展、衰老进程、抗氧化反应、活性氧(ROS)积累和转录谱之间的关系。尽管两种分离株积累了相似的病毒滴度,但它们诱导了不同的症状,并在氧化状态方面存在强烈差异。我们检测到与 ORE1 和 ORS1 调控网络相关的几个衰老相关基因的早期差异,以及植物中关键 ROS 产生和清除系统的持续差异。然而,在后期,两种菌株都诱导了营养竞争,这表明衰老速率受到病毒感染后不同机制的影响。对感染芸薹属植物的 ORE1 和 ORS1 水平的分析表明,这两种菌株在芸薹属植物中表现出相似的模式,表明它们对两种菌株的反应具有保守的差异。对 ORE1 和 ORS1 调控子的转录分析表明,SA 反应与 UK1(最严重的菌株)早期诱导之间存在相似性。通过使用水杨酸缺陷型 NahG 转基因植物,我们发现菌株间衰老进程和 ROS 积累的差异依赖于完整的 SA 途径。

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