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Transcriptional responses to polycyclic aromatic hydrocarbon-induced stress in Arabidopsis thaliana reveal the involvement of hormone and defense signaling pathways

机译:拟南芥对多环芳烃诱导的应激的转录反应揭示了激素和防御信号通路的参与

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摘要

BackgroundPolycyclic aromatic hydrocarbons (PAHs) are toxic, widely-distributed, environmentally persistent, and carcinogenic byproducts of carbon-based fuel combustion. Previously, plant studies have shown that PAHs induce oxidative stress, reduce growth, and cause leaf deformation as well as tissue necrosis. To understand the transcriptional changes that occur during these processes, we performed microarray experiments on Arabidopsis thaliana L. under phenanthrene treatment, and compared the results to published Arabidopsis microarray data representing a variety of stress and hormone treatments. In addition, to probe hormonal aspects of PAH stress, we assayed transgenic ethylene-inducible reporter plants as well as ethylene pathway mutants under phenanthrene treatment.
机译:背景技术多环芳烃(PAHs)是有毒的,分布广泛,对环境持久并且是基于碳的燃料燃烧的致癌副产物。以前,植物研究表明,PAHs会诱导氧化应激,减少生长并导致叶片变形以及组织坏死。为了了解在这些过程中发生的转录变化,我们在菲处理下对拟南芥进行了微阵列实验,并将结果与​​代表各种胁迫和激素治疗的拟南芥微阵列数据进行了比较。此外,为了探查PAH胁迫的激素方面,我们分析了菲处理下的转基因乙烯诱导型报道植物以及乙烯途径突变体。

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