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描述剑尾鱼皮肤、大脑和肝脏中昼夜节律下基础基因表达趋势的特征。

Characterization of basal gene expression trends over a diurnal cycle in Xiphophorus maculatus skin, brain and liver.

机构信息

The Xiphophorus Genetic Stock Center, Department of Chemistry and Biochemistry, 419 Centennial Hall, Texas State University, San Marcos, TX, USA.

The Xiphophorus Genetic Stock Center, Department of Chemistry and Biochemistry, 419 Centennial Hall, Texas State University, San Marcos, TX, USA.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2018 Jun;208:2-11. doi: 10.1016/j.cbpc.2017.11.013. Epub 2017 Dec 5.

Abstract

Evolutionarily conserved diurnal circadian mechanisms maintain oscillating patterns of gene expression based on the day-night cycle. Xiphophorus fish have been used to evaluate transcriptional responses after exposure to various light sources and it was determined that each source incites distinct genetic responses in skin tissue. However, basal expression levels of genes that show oscillating expression patterns in day-night cycle, may affect the outcomes of such experiments, since basal gene expression levels at each point in the circadian path may influence the profile of identified light responsive genes. Lack of knowledge regarding diurnal fluctuations in basal gene expression patterns may confound the understanding of genetic responses to external stimuli (e.g., light) since the dynamic nature of gene expression implies animals subjected to stimuli at different times may be at very different stages within the continuum of genetic homeostasis. We assessed basal gene expression changes over a 24-hour period in 200 select Xiphophorus gene targets known to transcriptionally respond to various types of light exposure. We identified 22 genes in skin, 36 genes in brain and 28 genes in liver that exhibit basal oscillation of expression patterns. These genes, including known circadian regulators, produced the expected expression patterns over a 24-hour cycle when compared to circadian regulatory genes identified in other species, especially human and other vertebrate animal models. Our results suggest the regulatory network governing diurnal oscillating gene expression is similar between Xiphophorus and other vertebrates for the three Xiphophorus organs tested. In addition, we were able to categorize light responsive gene sets in Xiphophorus that do, and do not, exhibit circadian based oscillating expression patterns.

摘要

进化保守的昼夜节律机制基于昼夜周期维持基因表达的振荡模式。剑尾鱼已被用于评估暴露于各种光源后的转录反应,结果确定每种光源都会在皮肤组织中引起独特的遗传反应。然而,在昼夜周期中表现出振荡表达模式的基因的基础表达水平可能会影响此类实验的结果,因为在昼夜节律路径的每个点处的基础基因表达水平可能会影响鉴定出的对光反应基因的谱。由于基因表达的动态性质意味着在不同时间接受刺激的动物可能处于遗传动态平衡连续体的非常不同的阶段,因此缺乏关于基础基因表达模式昼夜波动的知识可能会混淆对外部刺激(例如光)的遗传反应的理解。我们评估了 200 个选定的剑尾鱼基因靶标在 24 小时内的基础基因表达变化,这些基因已知对各种类型的光照暴露有转录反应。我们在皮肤中鉴定出 22 个基因,在大脑中鉴定出 36 个基因,在肝脏中鉴定出 28 个基因,这些基因表现出基础表达模式的振荡。与在其他物种(特别是人类和其他脊椎动物模型)中鉴定出的昼夜节律调节基因相比,这些基因(包括已知的昼夜节律调节因子)在 24 小时周期中产生了预期的表达模式。我们的结果表明,在三种测试的剑尾鱼器官中,昼夜节律调节基因表达的调控网络在剑尾鱼和其他脊椎动物之间是相似的。此外,我们能够对在 Xiphophorus 中表现出昼夜节律基础振荡表达模式的和不表现出昼夜节律基础振荡表达模式的光反应基因集进行分类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/587a/5936649/67baab48ab42/nihms929820f1.jpg

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