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葡萄黄化脉斑驳病恢复过程中过氧化氢的积累和转录变化。

Hydrogen peroxide accumulation and transcriptional changes in grapevines recovered from flavescence dorée disease.

机构信息

National Research Council, , Grugliasco, Italy.

出版信息

Phytopathology. 2013 Aug;103(8):776-84. doi: 10.1094/PHYTO-11-12-0309-R.

Abstract

Flavescence dorée (FD) is considered one of the most severe phytoplasma diseases affecting grapevine. The spontaneous, complete, and stable remission of the symptoms of FD (recovery) is a phenomenon that may occur in infected grapevines. The molecular bases of this phenomenon are still unclear, although some works suggest that recovery could be linked to the accumulation of hydrogen peroxide (H2O2). Several genes coding for enzymes involved in H2O2 metabolism, in the ascorbate-glutathione cycle, defense responses, and the biosynthesis of hormones were identified. The H2O2 content was biochemically determined and the expression levels of 44 genes were analyzed through quantitative real-time reverse-transcription polymerase chain reaction in healthy (H), infected by FD-associated phytoplasma (I), and 2-years-recovered (R) plants of Vitis vinifera 'Barbera'. In tissues of R plants, large amounts of H2O2 were detected, essentially linked to an upregulation of genes involved in the production of H2O2 (germin-like protein and glycolate oxidase); whereas, in I grapevines, the overexpression of some scavenging genes reduced the quantity of H2O2. The recovery state was characterized by the activation of ethylene biosynthesis and of defense genes not linked to salicylic acid (SA) signaling, such as the WRKY2 transcription factor. Conversely, I plants reacted to phytoplasma with SA-mediated signaling, even though this response does not appear to be effective against the pathogen.

摘要

黄化脉明病(FD)被认为是影响葡萄的最严重植原体病害之一。FD 症状的自发、完全和稳定缓解(恢复)是受感染葡萄藤可能出现的一种现象。尽管一些研究工作表明,恢复可能与过氧化氢(H2O2)的积累有关,但这一现象的分子基础仍不清楚。已鉴定出一些编码与 H2O2 代谢、抗坏血酸-谷胱甘肽循环、防御反应和激素生物合成相关的酶的基因。通过生物化学方法测定 H2O2 含量,并通过定量实时逆转录聚合酶链式反应分析了 44 个基因在健康(H)、感染 FD 相关植原体(I)和 2 年恢复(R)的 Vitis vinifera 'Barbera' 植物中的表达水平。在 R 植物的组织中,检测到大量的 H2O2,主要与参与 H2O2 产生的基因(germin-like 蛋白和甘醇酸氧化酶)的上调有关;而在 I 葡萄藤中,一些清除基因的过表达降低了 H2O2 的数量。恢复状态的特征是乙烯生物合成和与水杨酸(SA)信号不相关的防御基因的激活,如 WRKY2 转录因子。相反,I 植物对植原体的反应是通过 SA 介导的信号转导,尽管这种反应似乎对病原体无效。

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