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An experimental evaluation of a loop versus a reference design for two-channel microarrays

机译:对两通道微阵列的定量环与参考设计的实验评估

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MOTIVATION: Despite theoretical arguments that so-called 'loop designs' for two-channel DNA microarray experiments are more efficient, biologists continue to use 'reference designs'. We describe two sets of microarray experiments with RNA from two different biological systems (TPA-stimulated mammalian cells and Streptomyces coelicolor). In each case, both a loop and a reference design were used with the same RNA preparations with the aim of studying their relative efficiency. RESULTS: The results of these experiments show that (1) the loop design attains a much higher precision than the reference design, (2) multiplicative spot effects are a large source of variability, and if they are not accounted for in the mathematical model, for example, by taking log-ratios or including spot effects, then the model will perform poorly. The first result is reinforced by a simulation study. Practical recommendations are given on how simple loop designs can be extended to more realistic experimental designs and how standard statistical methods allow the experimentalist to use and interpret the results from loop designs in practice. AVAILABILITY: The data and R code are available at http://exgen.ma.umist.ac.uk CONTACT: veronica.vinciotti@brunel.ac.uk.
机译:动机:尽管理论上认为两通道DNA微阵列实验的所谓“环设计”效率更高,但生物学家仍在继续使用“参考设计”。我们用来自两个不同的生物系统(TPA刺激的哺乳动物细胞和天蓝色链霉菌)的RNA描述了两组微阵列实验。在每种情况下,环和参考设计都用于相同的RNA制备物中,目的是研究它们的相对效率。结果:这些实验的结果表明:(1)环路设计的精度要比参考设计高得多;(2)乘法光斑效应是大量可变性的来源,如果在数学模型中未考虑这些因素,例如,通过采用对数比或包含点效应,模型将表现不佳。第一项结果通过仿真研究得到了加强。给出了有关如何将简单的环路设计扩展到更实际的实验设计以及标准统计方法如何允许实验人员在实践中使用和解释环路设计结果的实用建议。可用性:有关数据和R代码,请访问http://exgen.ma.umist.ac.uk。联系人:veronica.vinciotti@brunel.ac.uk。

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