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A universal and independent synthetic DNA ladder for the quantitative measurement of genomic features

机译:一种通用和独立的合成DNA梯,用于定量测量基因组特征

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摘要

Standard units of measurement are required for the quantitative description of nature; however, few standard units have been established for genomics to date. Here, we have developed a synthetic DNA ladder that defines a quantitative standard unit that can measure DNA sequence abundance within a next-generation sequencing library. The ladder can be spiked into a DNA sample, and act as an internal scale that measures quantitative genetics features. Unlike previous spike-ins, the ladder is encoded within a single molecule, and can be equivalently and independently synthesized by different laboratories. We show how the ladder can measure diverse quantitative features, including human genetic variation and microbial abundance, and also estimate uncertainty due to technical variation and improve normalization between libraries. This ladder provides an independent quantitative unit that can be used with any organism, application or technology, thereby providing a common metric by which genomes can be measured.
机译:性质的定量描述需要标准测量单位;但是,迄今为止,还有很少的标准单位为基因组学建立。这里,我们开发了一种合成的DNA梯子,其定义了可以测量下一代测序库内的DNA序列丰度的定量标准单元。梯子可以掺入DNA样品中,并充当测量定量遗传学特征的内部等级。与以前的尖峰不同,梯子在单个分子内编码,并且可以等同地并独立地由不同的实验室合成。我们展示了梯子如何测量不同的定量特征,包括人类遗传变异和微生物丰度,以及由于技术变异而估计不确定性,并改善文库之间的归一化。该梯形图提供了一种独立的定量单元,其可以与任何生物,应用或技术一起使用,从而提供一种公共度量,通过该公式可以测量基因组。

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