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首页> 外文期刊>BioTechniques >CDNA library construction from a small amount of RNA: adaptor-ligation approach for two-round cRNA amplification using T7 and SP6 RNA polymerases
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CDNA library construction from a small amount of RNA: adaptor-ligation approach for two-round cRNA amplification using T7 and SP6 RNA polymerases

机译:使用少量RNA构建CDNA库:使用T7和SP6 RNA聚合酶进行两轮cRNA扩增的衔接子连接方法

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摘要

In this study, we developed a method that allows cDNA library construction from a small amount of RNA without causing serious size bias in the resulting cDNA population. For this purpose, we adopted two-round cRNA amplification by T7 and SP6 RNA polymerases. The first-round cDNAs, flanked by the promoter sequences of T7 and SP6 RNA polymerases, were synthesized from 1 microg total RNA and then subjected to two rounds of cRNA amplification. Comparison of the sizes of the first-round and the second-round cRNAs indicated that the size-bias effect of the second-round cRNA synthesis was not serious. The resultant double-stranded cDNAs were cloned into a plasmid by in vitro lambda phage recombination with an efficiency of 1.2 x 10(11) colony-forming unit/microgram of starting total RNA. Characterization of the resultant cDNA library in terms of the insert size, clone redundancy, and integrity of 3' ends of cDNAs indicated that the amplified library was comparable to a library constructed by a conventional method, although large cDNAs tend to be slightly truncated in the amplified library. This method enables the construction of a library from a small amount of RNA, and calculations suggest that the strategy would be efficient enough to use even a single cell as starting material.
机译:在这项研究中,我们开发了一种方法,该方法可以从少量RNA中构建cDNA文库,而不会在所得cDNA群体中造成严重的尺寸偏差。为此,我们采用了T7和SP6 RNA聚合酶进行的两轮cRNA扩增。从1微克总RNA合成侧翼为T7和SP6 RNA聚合酶启动子序列的第一轮cDNA,然后进行两轮cRNA扩增。比较第一轮和第二轮cRNA的大小表明,第二轮cRNA合成的大小偏向效应并不严重。通过体外λ噬菌体重组,以1.2×10(11)菌落形成单位/微克起始总RNA的效率,将所得的双链cDNA克隆到质粒中。根据插入片段的大小,克隆的冗余度和cDNA 3'末端的完整性对所得cDNA文库进行表征,表明扩增的文库与通过常规方法构建的文库相当,尽管大的cDNA倾向于在cDNA中被略微截短。扩增文库。这种方法可以从少量RNA构建文库,计算表明该策略足够有效,甚至可以使用单个细胞作为起始材料。

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