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Construction of sized eukaryotic cDNA libraries using low input of total environmental metatranscriptomic RNA

机译:低投入的总环境转录组RNA的构建大小的真核cDNA文库

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Background Construction of high quality cDNA libraries from the usually low amounts of eukaryotic mRNA extracted from environmental samples is essential in functional metatranscriptomics for the selection of functional, full-length genes encoding proteins of interest. Many of the inserts in libraries constructed by standard methods are represented by truncated cDNAs due to premature stoppage of reverse transcriptase activity and preferential cloning of short cDNAs. Results We report here a simple and cost effective technique for preparation of sized eukaryotic cDNA libraries from as low as three microgram of total soil RNA dominated by ribosomal and bacterial RNA. cDNAs synthesized by a template switching approach were size-fractionated by two dimensional agarose gel electrophoresis prior to PCR amplification and cloning. Effective size selection was demonstrated by PCR amplification of conserved gene families specific of each size class. Libraries of more than one million independent inserts whose sizes ranged between one and four kb were thus produced. Up to 80% of the insert sequences were homologous to eukaryotic gene sequences present in public databases. Conclusions A simple and cost effective technique has been developed to construct sized eukaryotic cDNA libraries from environmental samples. This technique will facilitate expression cloning of environmental eukaryotic genes and contribute to a better understanding of basic biological and/or ecological processes carried out by eukaryotic microbial communities.
机译:背景技术从环境样品中提取的通常少量的真核mRNA构建高质量的cDNA文库,对于功能性转录组学对于选择编码目的蛋白的功能性全长基因至关重要。由于逆转录酶活性的过早终止和短cDNA的优先克隆,通过标准方法构建的文库中的许多插入物均以截短的cDNA表示。结果我们在这里报告了一种简单且经济高效的技术,可从低至3微克的核糖体和细菌RNA占主导的总土壤RNA中制备大小的真核cDNA文库。在PCR扩增和克隆之前,通过二维琼脂糖凝胶电泳对通过模板转换方法合成的cDNA进行大小分级。通过PCR扩增每个大小类别特异性的保守基因家族证明了有效的大小选择。这样就产生了超过一百万个独立插入物的库,其大小在1-4 kb之间。多达80%的插入序列与公共数据库中存在的真核基因序列同源。结论已开发出一种简单且经济高效的技术,可从环境样品中构建大小合适的真核cDNA文库。该技术将促进环境真核基因的表达克隆,并有助于更好地理解由真核微生物群落进行的基本生物学和/或生态过程。

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