单核苷酸分辨率条形码识别的寡核苷酸亚群选择

IF 15.7 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Woojin Kim, Mingweon Chon, Yoonhae Koh, Hansol Choi, Eunjin Choi, Hyewon Park, Yushin Jung, Taehoon Ryu, Sunghoon Kwon, Yeongjae Choi
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引用次数: 0

摘要

从复杂的寡核苷酸文库中进行有效的亚群选择对基因组学、合成生物学和DNA数据存储至关重要。扩增目标亚群的基础聚合酶链反应受到引物设计和特异性长度的限制,这限制了寡核苷酸文库的可扩展性,增加了引物的合成负担。我们介绍了寡核苷酸子集选择方法,利用序列特异性环核苷酸合成和阻断模板寡核苷酸。这种方法消除了对选择性杂交引物的需要,并且能够编码和选择条形码长度小于5个核苷酸的数百个子集。此外,循环选择在oligo库中实现了分层数据结构,增强了可编程性。这一进步为处理复杂的oligo库提供了可扩展且经济高效的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Oligonucleotide subsets selection by single nucleotide resolution barcode identification

Oligonucleotide subsets selection by single nucleotide resolution barcode identification

Effective subset selection from complex oligonucleotide libraries is crucial for genomics, synthetic biology, and DNA data storage. The polymerase chain reaction, foundational for amplifying target subsets is limited by primer design and length for specificity, which constrains the scalability of oligo libraries and increases the synthesis burden for primers. We introduce an oligo subset selection methodology that utilizes sequence-specific cyclic nucleotide synthesis and blocking of the template oligos. This approach eliminates the need for primers for selective hybridization and enables the encoding and selection of hundreds of subsets with barcode lengths of fewer than five nucleotides. Moreover, cyclic selection enables a hierarchical data structure in the oligo library, enhancing the programmability. This advancement offers a scalable and cost-effective solution for handling complex oligo libraries.

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来源期刊
Nature Communications
Nature Communications Biological Science Disciplines-
CiteScore
24.90
自引率
2.40%
发文量
6928
审稿时长
3.7 months
期刊介绍: Nature Communications, an open-access journal, publishes high-quality research spanning all areas of the natural sciences. Papers featured in the journal showcase significant advances relevant to specialists in each respective field. With a 2-year impact factor of 16.6 (2022) and a median time of 8 days from submission to the first editorial decision, Nature Communications is committed to rapid dissemination of research findings. As a multidisciplinary journal, it welcomes contributions from biological, health, physical, chemical, Earth, social, mathematical, applied, and engineering sciences, aiming to highlight important breakthroughs within each domain.
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