Institut de Biologie Moléculaire des Plantes du CNRS, UPR 2357, Université de Strasbourg, 67084 Strasbourg, France.
J Proteome Res. 2013 Jun 7;12(6):2491-503. doi: 10.1021/pr3010698. Epub 2013 May 2.
Plants are continuously exposed to changing environmental conditions and must, as sessile organisms, possess sophisticated acclimative mechanisms. To gain insight into systemic responses to local virus infection or wounding, we performed comparative LC-MS/MS protein profiling of distal, virus-free leaves four and five days after local inoculation of Arabidopsis thaliana plants with either Oilseed rape mosaic virus (ORMV) or inoculation buffer alone. Our study revealed biomarkers for systemic signaling in response to wounding and compatible virus infection in Arabidopsis, which should prove useful in further addressing the trigger-specific systemic response network and the elusive systemic signals. We observed responses common to ORMV and mock treatment as well as protein profile changes that are specific to local virus infection or mechanical wounding (mock treatment) alone, which provides evidence for the existence of more than one systemic signal to induce these distinct changes. Comparison of the systemic responses between time points indicated that the responses build up over time. Our data indicate stress-specific changes in proteins involved in jasmonic and abscisic acid signaling, intracellular transport, compartmentalization of enzyme activities, protein folding and synthesis, and energy and carbohydrate metabolism. In addition, a virus-triggered systemic signal appears to suppress antiviral host defense.
植物不断地暴露在不断变化的环境条件下,作为固定不动的生物,它们必须拥有复杂的适应性机制。为了深入了解局部病毒感染或损伤引起的系统反应,我们对拟南芥植株进行局部接种油菜 mosaic 病毒(ORMV)或接种缓冲液 4 天后和 5 天后的远端、无病毒叶片进行了比较 LC-MS/MS 蛋白质谱分析。我们的研究揭示了拟南芥对损伤和相容性病毒感染的系统信号生物标志物,这应该有助于进一步解决特定触发的系统反应网络和难以捉摸的系统信号。我们观察到了 ORMV 和模拟处理的共同反应,以及单独的局部病毒感染或机械损伤(模拟处理)特有的蛋白质图谱变化,这证明了存在一种以上的系统信号来诱导这些不同的变化。对不同时间点之间的系统反应进行比较表明,反应随着时间的推移而逐渐增强。我们的数据表明,与应激相关的蛋白质在茉莉酸和脱落酸信号转导、细胞内运输、酶活性的区室化、蛋白质折叠和合成以及能量和碳水化合物代谢方面发生了特定的变化。此外,病毒触发的系统信号似乎抑制了抗病毒的宿主防御。