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从斑马鱼胚胎中分离RNA并合成cDNA用于基因表达分析。

RNA isolation from embryonic zebrafish and cDNA synthesis for gene expression analysis.

作者信息

Peterson Samuel M, Freeman Jennifer L

机构信息

School of Health Sciences, Purdue University.

出版信息

J Vis Exp. 2009 Aug 7(30):1470. doi: 10.3791/1470.

DOI:10.3791/1470
PMID:19684565
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3152201/
Abstract

Many important and complex laboratory procedures require an input of high quality, intact RNA. A degraded sample or the presence of impurities can lead to disastrous results in downstream experimental applications. It is therefore, of utmost importance to use solid techniques with numerous safeguards and quality control checks to ensure a superior sample. Herein, we detail a protocol to isolate total RNA from whole zebrafish embryos using a commercially available chemical denaturant and subsequent cleanup to remove traces of DNA and impurities using a commercial RNA isolation kit. As RNA is relatively unstable and easily prone to cleavage by RNAses, most protocols assay gene expression using a cDNA product that is directly synthesized from an RNA template. We detail a procedure to convert RNA into the more stable cDNA product using a commercially available kit. Throughout these procedures there are numerous quality control checks to ensure that the sample is not degraded or contaminated. The end product of these protocols is cDNA that is suitable for microarray analysis, RT-PCR or long-term storage.

摘要

许多重要且复杂的实验室操作都需要高质量、完整的RNA作为输入。样本降解或存在杂质会在下游实验应用中导致灾难性后果。因此,使用具备众多保障措施和质量控制检查的可靠技术以确保获得优质样本至关重要。在此,我们详细介绍一种方案,即使用市售化学变性剂从完整的斑马鱼胚胎中分离总RNA,随后使用商业RNA分离试剂盒进行纯化以去除痕量DNA和杂质。由于RNA相对不稳定且容易被RNA酶切割,大多数方案通过直接从RNA模板合成的cDNA产物来检测基因表达。我们详细介绍一种使用市售试剂盒将RNA转化为更稳定的cDNA产物的方法。在整个这些操作过程中,有众多质量控制检查以确保样本未降解或未被污染。这些方案的最终产物是适用于微阵列分析、逆转录聚合酶链反应(RT-PCR)或长期储存的cDNA。