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方案:在 96 孔格式下从拟南芥幼苗中高通量硅基纯化 RNA。

Protocol: high throughput silica-based purification of RNA from Arabidopsis seedlings in a 96-well format.

机构信息

The Centre for Systems Biology at Edinburgh (CSBE), the University of Edinburgh, CH Waddington Building, King's Buildings, Mayfield Road, Edinburgh EH9 3JD, UK.

出版信息

Plant Methods. 2011 Dec 2;7(1):40. doi: 10.1186/1746-4811-7-40.

Abstract

The increasing popularity of systems-based approaches to plant research has resulted in a demand for high throughput (HTP) methods to be developed. RNA extraction from multiple samples in an experiment is a significant bottleneck in performing systems-level genomic studies. Therefore we have established a high throughput method of RNA extraction from Arabidopsis thaliana to facilitate gene expression studies in this widely used plant model. We present optimised manual and automated protocols for the extraction of total RNA from 9-day-old Arabidopsis seedlings in a 96 well plate format using silica membrane-based methodology. Consistent and reproducible yields of high quality RNA are isolated averaging 8.9 μg total RNA per sample (~20 mg plant tissue). The purified RNA is suitable for subsequent qPCR analysis of the expression of over 500 genes in triplicate from each sample. Using the automated procedure, 192 samples (2 × 96 well plates) can easily be fully processed (samples homogenised, RNA purified and quantified) in less than half a day. Additionally we demonstrate that plant samples can be stored in RNAlater at -20°C (but not 4°C) for 10 months prior to extraction with no significant effect on RNA yield or quality. Additionally, disrupted samples can be stored in the lysis buffer at -20°C for at least 6 months prior to completion of the extraction procedure providing a flexible sampling and storage scheme to facilitate complex time series experiments.

摘要

基于系统的植物研究方法日益普及,因此需要开发高通量(HTP)方法。在进行系统水平的基因组研究中,从实验中的多个样本中提取 RNA 是一个重大瓶颈。因此,我们建立了一种从拟南芥中提取 RNA 的高通量方法,以促进该广泛使用的植物模型中的基因表达研究。我们提出了优化的手动和自动化方案,用于使用基于硅膜的方法从 9 天大的拟南芥幼苗中提取 96 孔板格式的总 RNA。每个样品平均可分离出 8.9μg 高质量 RNA,产量一致且可重复,每个样品约 20mg 植物组织。纯化的 RNA 适用于随后对每个样品中的 500 多个基因进行三倍重复的 qPCR 分析。使用自动化程序,可在不到半天的时间内轻松处理 192 个样品(2×96 孔板)(样品匀浆,RNA 纯化和定量)。此外,我们证明可以将植物样品储存在 -20°C 的 RNAlater 中长达 10 个月,然后再进行提取,而不会对 RNA 产量或质量产生重大影响。此外,破碎的样品可以在 -20°C 的裂解缓冲液中储存至少 6 个月,然后再完成提取程序,从而提供了灵活的采样和存储方案,以促进复杂的时间序列实验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d58/3305896/71bd2cb65ce6/1746-4811-7-40-1.jpg

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