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首页> 外文期刊>BMC Genomics >Novel design and controls for focused DNA microarrays: applications in quality assurance/control and normalization for the Health Canada ToxArray?
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Novel design and controls for focused DNA microarrays: applications in quality assurance/control and normalization for the Health Canada ToxArray?

机译:聚焦DNA微阵列的新颖设计和控制:加拿大卫生部ToxArray在质量保证/控制和标准化中的应用?

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Background Microarray normalizations typically apply methods that assume absence of global transcript shifts, or absence of changes in internal control features such as housekeeping genes. These normalization approaches are not appropriate for focused arrays with small sets of genes where a large portion may be expected to change. Furthermore, many microarrays lack control features that can be used for quality assurance (QA). Here, we describe a novel external control series integrated with a design feature that addresses the above issues. Results An EC dilution series that involves spike-in of a single concentration of the A. thaliana chlorophyll synthase gene to hybridize against spotted dilutions (0.000015 to 100 μM) of a single complimentary oligonucleotide representing the gene was developed. The EC series is printed in duplicate within each subgrid of the microarray and covers the full range of signal intensities from background to saturation. The design and placement of the series allows for QA examination of frequently encountered problems in hybridization (e.g., uneven hybridizations) and printing (e.g., cross-spot contamination). Additionally, we demonstrate that the series can be integrated with a LOWESS normalization to improve the detection of differential gene expression (improved sensitivity and predictivity) over LOWESS normalization on its own. Conclusion The quality of microarray experiments and the normalization methods used affect the ability to measure accurate changes in gene expression. Novel methods are required for normalization of small focused microarrays, and for incorporating measures of performance and quality. We demonstrate that dilution of oligonucleotides on the microarray itself provides an innovative approach allowing the full dynamic range of the scanner to be covered with a single gene spike-in. The dilution series can be used in a composite normalization to improve detection of differential gene expression and to provide quality control measures.
机译:背景技术微阵列标准化通常采用假定不存在全局转录物移位或内部控制特征(例如管家基因)变化的方法。这些归一化方法不适用于可能会有很大一部分变化的具有少量基因的聚焦阵列。此外,许多微阵列缺乏可用于质量保证(QA)的控制功能。在这里,我们描述了一种新颖的外部控制系列,该系列集成了解决上述问题的设计功能。结果开发了一种EC稀释系列,其中涉及单一浓度的拟南芥叶绿素合酶基因的掺入,以与代表该基因的单个互补寡核苷酸的斑点稀释液(0.000015至100μM)杂交。 EC系列打印在微阵列的每个子网格中,重复两次,覆盖从背景到饱和的信号强度的整个范围。该系列的设计和位置允许对杂交(例如,不均匀杂交)和印刷(例如,跨斑点污染)中经常遇到的问题进行质量检查。此外,我们证明了该系列可以与LOWESS归一化集成,从而比单独的LOWESS归一化改善差异基因表达的检测(提高的敏感性和可预测性)。结论微阵列实验的质量和所使用的归一化方法会影响测量基因表达准确变化的能力。小型聚焦微阵列的标准化以及结合性能和质量的测量方法需要新颖的方法。我们证明寡核苷酸在微阵列上的稀释本身提供了一种创新的方法,使扫描仪的整个动态范围都可以覆盖单个基因。稀释系列可用于复合归一化,以改善对差异基因表达的检测并提供质量控制措施。

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