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Single-stranded DNA library preparation from highly degraded DNA using T4 DNA ligase

机译:使用T4 DNA连接酶从高度降解的DNA制备单链DNA文库

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摘要

DNA library preparation for high-throughput sequencing of genomic DNA usually involves ligation of adapters to double-stranded DNA fragments. However, for highly degraded DNA, especially ancient DNA, library preparation has been found to be more efficient if each of the two DNA strands are converted into library molecules separately. We present a new method for single-stranded library preparation, ssDNA2.0, which is based on single-stranded DNA ligation with T4 DNA ligase utilizing a splinter oligonucleotide with a stretch of random bases hybridized to a 3' biotinylated donor oligonucleotide. A thorough evaluation of this ligation scheme shows that single-stranded DNA can be ligated to adapter oligonucleotides in higher concentration than with CircLigase (an RNA ligase that was previously chosen for end-to-end ligation in single-stranded library preparation) and that biases in ligation can be minimized when choosing splinters with 7 or 8 random nucleotides. We show that ssDNA2.0 tolerates higher quantities of input DNA than CircLigase-based library preparation, is less costly and better compatible with automation. We also provide an in-depth comparison of library preparation methods on degraded DNA from various sources. Most strikingly, we find that single-stranded library preparation increases library yields from tissues stored in formalin for many years by several orders of magnitude.
机译:用于基因组DNA的高通量测序的DNA文库制剂通常涉及将适应剂连接到双链DNA片段中。然而,对于高度降解的DNA,尤其是古代DNA,已经发现文库制剂如果两个DNA链分别转化为文库分子中的每一个更有效。我们提出了一种新方法,用于单链文库制备SSDNA2.0,其基于用T4 DNA连接酶利用分离的DNA连接酶,利用分裂寡核苷酸与杂交至3'生物素化供体寡核苷酸杂交的随机碱。对该连接方案的彻底评估表明,单链DNA可以以比圆形酶(先前选择用于单链文库制剂的端到端结扎的RNA连接酶)升高到饱和寡核苷酸,以更高的浓度连接到衔接子寡核苷酸。在选择具有7或8种随机核苷酸的碎片时可以最小化在结扎中。我们表明,SSDNA2.0耐受较高的输入DNA,而不是基于Circligase的图书馆制备,而不是自动化的昂贵且更符合。我们还提供了对来自各种来源的降解DNA的文库制备方法的深入比较。最引人注目的是,我们发现单链图书馆制剂增加了从福尔马林中储存的组织中的文库产量,多年的数量级。

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