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Transcript expression patterns illuminate the mechanistic background of hormesis in Caenorhabditis Elegans Maupas

机译:转录本表达模式阐明了秀丽隐杆线虫Maupas的兴奋作用机理背景

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The animal model Caenorhabditis eleganswas employed to study polyphenol- and humic substances-induced hormetic changes in lifespan. A detailed insight into the underlying mechanism of hormesis was uncovered by applying whole genome DNA microarray experimentation over a range of quercetin (Q), tannic acid (TA), and humic substances (HuminFeed?, HF) concentrations. The transcriptional response to all exposures followed a non-linear mode which highlighted differential signaling and metabolic pathways. While low Q concentrations regulated processes improving the health of the nematodes, higher concentrations extended lifespan and modulated substantially the global transcriptional response. Over-represented transcripts were notably part of the biotransformation process: enhanced catabolism of toxic intermediates possibly contributes to the lifespan extension. The regulation of transcription, Dauer entry, and nucleosome suggests the presence of distinct exposure dependent differences in transcription and signaling pathways. TA- and HF-mediated transcript expression patterns were overall similar to each other, but changed across the concentration range indicating that their transcriptional dynamics are complex and cannot be attributed to a simple adaptive response. In contrast, Q-mediated hormesis was well aligned to fit the definition of an adaptive response. Simple molecules are more likely to induce an adaptive response than more complex molecules.
机译:使用秀丽隐杆线虫的动物模型研究多酚和腐殖质引起的寿命变化。通过对整个槲皮素(Q),单宁酸(TA)和腐殖质(HuminFeed ?, HF)浓度进行全基因组DNA微阵列实验,发现了对兴奋作用的潜在机制的详细了解。对所有暴露的转录反应遵循非线性模式,该模式突出了差异信号和代谢途径。低浓度的Q调节过程可以改善线虫的健康,而较高的浓度可以延长寿命,并可以调节总体转录反应。过度表达的转录物明显是生物转化过程的一部分:毒性中间体的分解代谢增强可能有助于寿命的延长。转录,Dauer进入和核小体的调节表明转录和信号传导途径中存在明显的暴露依赖性差异。 TA和HF介导的转录表达模式总体上彼此相似,但是在整个浓度范围内变化,表明它们的转录动力学很复杂,不能归因于简单的适应性反应。相反,Q介导的兴奋作用被很好地调整以适应自适应反应的定义。与更复杂的分子相比,简单的分子更有可能诱发适应性反应。

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