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SAGE Analysis of Transcriptome Responses in Arabidopsis Roots Exposed to 246-Trinitrotoluene

机译:SAGE分析暴露于246-三硝基甲苯的拟南芥根中的转录组反应

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摘要

Serial analysis of gene expression was used to profile transcript levels in Arabidopsis roots and assess their responses to 2,4,6-trinitrotoluene (TNT) exposure. SAGE libraries representing control and TNT-exposed seedling root transcripts were constructed, and each was sequenced to a depth of roughly 32,000 tags. More than 19,000 unique tags were identified overall. The second most highly induced tag (27-fold increase) represented a glutathione S-transferase. Cytochrome P450 enzymes, as well as an ABC transporter and a probable nitroreductase, were highly induced by TNT exposure. Analyses also revealed an oxidative stress response upon TNT exposure. Although some increases were anticipated in light of current models for xenobiotic metabolism in plants, evidence for unsuspected conjugation pathways was also noted. Identifying transcriptome-level responses to TNT exposure will better define the metabolic pathways plants use to detoxify this xenobiotic compound, which should help improve phytoremediation strategies directed at TNT and other nitroaromatic compounds.
机译:基因表达的系列分析用于分析拟南芥根中的转录水平,并评估其对2,4,6-三硝基甲苯(TNT)暴露的反应。构建了代表对照和暴露于TNT的幼苗根转录本的SAGE文库,并对每个文库进行了约32,000个标签的测序。总共识别出超过19,000个唯一标签。第二高诱导标签(增加27倍)代表谷胱甘肽S-转移酶。 TNT暴露高度诱导了细胞色素P450酶以及ABC转运蛋白和可能的硝基还原酶。分析还显示了暴露于TNT后的氧化应激反应。尽管根据目前植物中异种生物代谢的模型预计会有所增加,但也注意到了未曾怀疑的结合途径的证据。识别转录组水平对TNT暴露的反应将更好地定义植物用来解毒这种异源化合物的代谢途径,这应有助于改善针对TNT和其他硝基芳香族化合物的植物修复策略。

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