首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Normalizing for biology: Accounting for technical and biological variation in levels of reference gene and insulin-like growth factor 1 (igf1) transcripts in fish livers
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Normalizing for biology: Accounting for technical and biological variation in levels of reference gene and insulin-like growth factor 1 (igf1) transcripts in fish livers

机译:生物学标准化:考虑鱼肝中参考基因和胰岛素样生长因子1(igf1)转录本水平的技术和生物学差异

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Feeding, fasting and re-feeding is a common experimental paradigm for studying growth endocrinology. Herein we demonstrate dynamic changes in the livers of coho salmon under these conditions and how changes in liver composition can influence quantification and interpretation of liver gene expression data. A three-week fast resulted in decreases in hepatosomatic index (liver size), liver glycogen content, and liver DNA concentration. In addition, significant differences were found in liver transcript levels from fed and fasted fish for the reference genes, arp and ef1a, when these were normalized to total RNA. We took the additional step of normalizing reference gene transcript levels to the liver homogenate RNA/DNA ratio to account for differences in RNA yield/cell and the number of cells sampled, normalizing to transcript number per cell rather than transcript number per unit RNA. After this additional step no significant differences in liver transcript levels of reference genes were found. The significance of these results was illustrated by normalizing liver transcript levels of insulin- like growth factor 1 (igf1) to ef1a transcript levels or ef1a transcript levels by RNA/DNA. The different normalization strategies resulted in differing patterns of change in igf1 transcript levels between fed and fasted fish. The novelty of this work rests in a two-step normalization process, attempting to account for both 1) technical errors in reverse transcription and qPCR reactions, and 2) biological variance in liver samples.
机译:进食,禁食和再进食是研究生长内分泌学的常见实验范式。本文中,我们证明了在这些条件下银鲑鱼肝脏的动态变化,以及肝脏成分的变化如何影响肝脏基因表达数据的定量和解释。禁食三周会导致肝体指数(肝脏大小),肝糖原含量和肝DNA浓度降低。此外,当将参考基因arp和ef1a相对于总RNA标准化后,在喂食和禁食鱼的肝脏转录水平中发现了显着差异。我们采取了将参考基因转录水平相对于肝脏匀浆RNA / DNA比进行标准化的附加步骤,以考虑RNA产量/细胞和采样细胞数的差异,将其标准化为每个细胞的转录数而不是每个单位RNA的转录数。在该附加步骤之后,未发现参考基因的肝转录水平有显着差异。通过用RNA / DNA将胰岛素样生长因子1(igf1)的肝转录水平标准化为ef1a转录水平或ef1a转录水平,可以说明这些结果的重要性。不同的归一化策略导致饲喂和禁食鱼的igf1转录水平发生变化。这项工作的新颖性在于两步归一化过程,试图说明1)逆转录和qPCR反应中的技术错误,以及2)肝样品中的生物学差异。

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