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利用预杂交第三染料图像进行的全面质量控制可通过cDNA微阵列实现准确的基因表达测量。

Comprehensive quality control utilizing the prehybridization third-dye image leads to accurate gene expression measurements by cDNA microarrays.

作者信息

Wang Xujing, Jia Shuang, Meyer Lisa, Xiang Bixia, Chen Li-Yen, Jiang Nan, Moreno Carol, Jacob Howard J, Ghosh Soumitra, Hessner Martin J

机构信息

The Max McGee National Research Center for Juvenile Diabetes, Department of Pediatrics, The Medical College of Wisconsin and Children's Hospital of Wisconsin, 8701 Watertown Plank Road, Milwaukee, WI 53226, USA.

出版信息

BMC Bioinformatics. 2006 Aug 14;7:378. doi: 10.1186/1471-2105-7-378.

Abstract

BACKGROUND

Gene expression profiling using microarrays has become an important genetic tool. Spotted arrays prepared in academic labs have the advantage of low cost and high design and content flexibility, but are often limited by their susceptibility to quality control (QC) issues. Previously, we have reported a novel 3-color microarray technology that enabled array fabrication QC. In this report we further investigated its advantage in spot-level data QC.

RESULTS

We found that inadequate amount of bound probes available for hybridization led to significant, gene-specific compression in ratio measurements, increased data variability, and printing pin dependent heterogeneities. The impact of such problems can be captured through the definition of quality scores, and efficiently controlled through quality-dependent filtering and normalization. We compared gene expression measurements derived using our data processing pipeline with the known input ratios of spiked in control clones, and with the measurements by quantitative real time RT-PCR. In each case, highly linear relationships (R2 > 0.94) were observed, with modest compression in the microarray measurements (correction factor < 1.17).

CONCLUSION

Our microarray analytical and technical advancements enabled a better dissection of the sources of data variability and hence a more efficient QC. With that highly accurate gene expression measurements can be achieved using the cDNA microarray technology.

摘要

背景

利用微阵列进行基因表达谱分析已成为一种重要的遗传学工具。学术实验室制备的点阵微阵列具有成本低、设计和内容灵活性高的优点,但往往受限于其对质量控制(QC)问题的敏感性。此前,我们报道了一种新型的三色微阵列技术,该技术可实现阵列制备的质量控制。在本报告中,我们进一步研究了其在点水平数据质量控制方面的优势。

结果

我们发现,可用于杂交的结合探针数量不足会导致比值测量中出现显著的、基因特异性的压缩,数据变异性增加,以及与打印针相关的异质性。这些问题的影响可以通过质量分数的定义来捕捉,并通过基于质量的过滤和归一化有效地加以控制。我们将使用我们的数据处理流程得出的基因表达测量结果,与已知的对照克隆掺入比例,以及定量实时RT-PCR的测量结果进行了比较。在每种情况下,均观察到高度线性关系(R2 > 0.94),微阵列测量中有适度压缩(校正因子 < 1.17)。

结论

我们在微阵列分析和技术方面的进展,使得能够更好地剖析数据变异性的来源,从而实现更有效的质量控制。由此,使用cDNA微阵列技术可实现高度准确的基因表达测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/514e/1563483/715e24f5bc05/1471-2105-7-378-1.jpg

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