McDonald Anna L, Boddicker Andrew M, Savenkova Marina I, Brabb Ian M, Qi Xiaodong, Moré Daniela D, Cunha Cristina W, Zhao Junhua, Duttke Sascha H
School of Molecular Biosciences, College of Veterinary Medicine, Washington State University, Pullman, WA, USA.
Element Biosciences, San Diego, CA, USA.
bioRxiv. 2024 May 31:2024.05.28.596343. doi: 10.1101/2024.05.28.596343.
Next-Generation Sequencing (NGS) catalyzed breakthroughs across various scientific domains. Illumina's sequencing by synthesis method has long been essential for NGS but emerging technologies like Element Biosciences' sequencing by avidity (AVITI) represent a novel approach. It has been reported that AVITI offers improved signal-to-noise ratios and cost reductions. However, the method relies on rolling circle amplification which can be impacted by polymer size, raising questions about its efficacy sequencing small RNAs (sRNA) molecules including microRNAs (miRNAs), piwi-interacting RNAs (piRNAs), and others that are crucial regulators of gene expression and involved in various biological processes. In addition, capturing capped small RNAs (csRNA-seq) has emerged as a powerful method to map active or "nascent" RNA polymerase II transcription initiation in tissues and clinical samples. Here, we report a new protocol for seamlessly sequencing short DNA fragments on the AVITI and demonstrate that AVITI and Illumina sequencing technologies equivalently capture human, cattle () and the bison () sRNA or csRNA sequencing libraries, augmenting the confidence in both approaches. Additionally, analysis of generated nascent transcription start sites (TSSs) data for cattle and bison revealed inaccuracies in their current genome annotations and highlighted the possibility and need to translate small RNA sequencing methodologies to livestock. Our accelerated and optimized protocol therefore bridges the advantages of AVITI sequencing and critical methods that rely on sequencing short DNA fragments.
下一代测序(NGS)在各个科学领域催化了突破。Illumina的合成测序方法长期以来一直是NGS的关键,但像Element Biosciences的亲和力测序(AVITI)等新兴技术代表了一种新方法。据报道,AVITI提供了更高的信噪比并降低了成本。然而,该方法依赖于滚环扩增,这可能会受到聚合物大小的影响,这就引发了关于其对包括微小RNA(miRNA)、piwi相互作用RNA(piRNA)等小RNA(sRNA)分子测序功效的问题,这些小RNA是基因表达的关键调节因子,参与各种生物学过程。此外,捕获带帽小RNA(csRNA-seq)已成为一种强大的方法,用于绘制组织和临床样本中活跃的或“新生的”RNA聚合酶II转录起始位点。在这里,我们报告了一种在AVITI上无缝测序短DNA片段的新方案,并证明AVITI和Illumina测序技术等效地捕获人类、牛()和野牛()的sRNA或csRNA测序文库,增强了对这两种方法的信心。此外,对牛和野牛生成的新生转录起始位点(TSS)数据的分析揭示了它们当前基因组注释中的不准确之处,并突出了将小RNA测序方法应用于家畜的可能性和必要性。因此,我们加速和优化的方案弥合了AVITI测序的优势与依赖短DNA片段测序的关键方法之间的差距。