Torres Tatiana Teixeira, Metta Muralidhar, Ottenwälder Birgit, Schlötterer Christian
Institut für Tierzucht und Genetik, Veterinärmedizinische Universität Wien, 1210 Vienna, Austria.
Genome Res. 2008 Jan;18(1):172-7. doi: 10.1101/gr.6984908. Epub 2007 Nov 21.
Massively parallel sequencing holds great promise for expression profiling, as it combines the high throughput of SAGE with the accuracy of EST sequencing. Nevertheless, until now only very limited information had been available on the suitability of the current technology to meet the requirements. Here, we evaluate the potential of 454 sequencing technology for expression profiling using Drosophila melanogaster. We show that short (< approximately 80 bp) and long (> approximately 300-400 bp) cDNA fragments are under-represented in 454 sequence reads. Nevertheless, sequencing of 3' cDNA fragments generated by nebulization could be used to overcome the length bias of the 454 sequencing technology. Gene expression measurements generated by restriction analysis and nebulization for fragments within the 80- to 300-bp range showed correlations similar to those reported for replicated microarray experiments (0.83-0.91); 97% of the cDNA fragments could be unambiguously mapped to the genomic DNA, demonstrating the advantage of longer sequence reads. Our analyses suggest that the 454 technology has a large potential for expression profiling, and the high mapping accuracy indicates that it should be possible to compare expression profiles across species.
大规模平行测序技术在表达谱分析方面具有巨大潜力,因为它将基因表达序列标签(SAGE)的高通量与表达序列标签(EST)测序的准确性结合在一起。然而,到目前为止,关于现有技术是否适合满足需求的信息非常有限。在这里,我们使用黑腹果蝇评估了454测序技术在表达谱分析方面的潜力。我们发现短(<约80bp)和长(>约300 - 400bp)的cDNA片段在454序列读数中代表性不足。然而,通过雾化产生的3' cDNA片段测序可用于克服454测序技术的长度偏差。通过限制性分析和雾化对80至300bp范围内的片段进行基因表达测量,显示出与重复微阵列实验报道的相关性相似(0.83 - 0.91);97%的cDNA片段可以明确地定位到基因组DNA上,这证明了较长序列读数的优势。我们的分析表明,454技术在表达谱分析方面具有很大潜力,并且高定位准确性表明应该能够比较不同物种的表达谱。