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估计拷贝数比例:桑格测序的回归。

Estimating Copy-Number Proportions: The Comeback of Sanger Sequencing.

机构信息

Institute of Animal Science, Agricultural Research Organization (ARO), HaMaccabim Road, P.O.B 15159, Rishon LeTsiyon 7528809, Israel.

出版信息

Genes (Basel). 2021 Feb 17;12(2):283. doi: 10.3390/genes12020283.

Abstract

Determination of the relative copy numbers of mixed molecular species in nucleic acid samples is often the objective of biological experiments, including Single-Nucleotide Polymorphism (SNP), indel and gene copy-number characterization, and quantification of CRISPR-Cas9 base editing, cytosine methylation, and RNA editing. Standard dye-terminator chromatograms are a widely accessible, cost-effective information source from which copy-number proportions can be inferred. However, the rate of incorporation of dye terminators is dependent on the dye type, the adjacent sequence string, and the secondary structure of the sequenced strand. These variable rates complicate inferences and have driven scientists to resort to complex and costly quantification methods. Because these complex methods introduce their own biases, researchers are rethinking whether rectifying distortions in sequencing trace files and using direct sequencing for quantification will enable comparable accurate assessment. Indeed, recent developments in software tools (e.g., TIDE, ICE, EditR, BEEP and BEAT) indicate that quantification based on direct Sanger sequencing is gaining in scientific acceptance. This commentary reviews the common obstacles in quantification and the latest insights and developments relevant to estimating copy-number proportions based on direct Sanger sequencing, concluding that bidirectional sequencing and sophisticated base calling are the keys to identifying and avoiding sequence distortions.

摘要

确定核酸样品中混合分子物种的相对拷贝数通常是生物实验的目标,包括单核苷酸多态性 (SNP)、插入缺失和基因拷贝数特征、CRISPR-Cas9 碱基编辑、胞嘧啶甲基化和 RNA 编辑的定量。标准的染料终止剂色谱图是一种广泛可用且具有成本效益的信息源,可以从中推断出拷贝数比例。然而,染料终止剂的掺入率取决于染料类型、相邻序列字符串和测序链的二级结构。这些可变的速率使推断变得复杂,并促使科学家求助于复杂且昂贵的定量方法。由于这些复杂的方法会引入自身的偏差,研究人员正在重新思考是否纠正测序迹线文件中的扭曲并使用直接测序进行定量,这是否能够实现可比的准确评估。事实上,软件工具(例如 TIDE、ICE、EditR、BEEP 和 BEAT)的最新发展表明,基于直接 Sanger 测序的定量在科学上越来越被接受。本评论回顾了定量中常见的障碍以及与基于直接 Sanger 测序估计拷贝数比例相关的最新见解和进展,得出的结论是,双向测序和复杂的碱基调用是识别和避免序列扭曲的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f22b/7922598/ac3566ab3471/genes-12-00283-g001.jpg

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