Main menu

One year of SARS-CoV-2: genomic characterization of a COVID-19 outbreak in Qatar


Long-read sequencing technologies motivate the development of DNA amplification methods capable of producing specific amplicons larger than those achievable by PCR. Here, we investigate isothermal strand-displacement amplification reactions using the T7 replisome, a macromolecular complex of a helicase, a single-stranded DNA binding protein, and a DNA polymerase. Sequence analysis revealed chimeric DNA molecules corresponding to long inverted repeats, which in some cases accounted for the bulk of amplified DNA. These chimeric reads originate from template switching at short, inverted repeat sequences within the amplicon. Nanopore sequencing revealed that template switching occurs in part through an intermolecular mechanism via a cruciform intermediate and highlighted a role for polymerase exonuclease activity in promoting template switching. These findings demonstrate challenges to targeted isothermal DNA amplification and guide development of novel amplification methods for long-read sequencing.

Download the PDF

入門

MinION Starter Packを購入 ナノポア製品の販売 シークエンスサービスプロバイダー グローバルディストリビューター

ナノポア技術

ナノポアの最新ニュースを購読 リソースと発表文献 Nanopore Communityとは

Oxford Nanoporeについて

ニュース 会社沿革 持続可能性 経営陣 メディアリソース & お問い合わせ先 投資家向け パートナー向け Oxford Nanopore社で働く 現在の募集状況 営業上の情報 BSI 27001 accreditationBSI 90001 accreditationBSI mark of trust
Japanese flag