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基于固态催化新方法的纳米孔全转录组分析与病原体监测。

Nanopore Whole Transcriptome Analysis and Pathogen Surveillance by a Novel Solid-Phase Catalysis Approach.

机构信息

New England Biolabs, Inc., Ipswich, MA, 01938, USA.

Department of Microbiology and Immunology, Cornell University, Ithaca, NY, 14853, USA.

出版信息

Adv Sci (Weinh). 2022 Jan;9(3):e2103373. doi: 10.1002/advs.202103373. Epub 2021 Nov 27.

Abstract

The requirement of a large input amount (500 ng) for Nanopore direct RNA-seq presents a major challenge for low input transcriptomic analysis and early pathogen surveillance. The high RNA input requirement is attributed to significant sample loss associated with library preparation using solid-phase reversible immobilization (SPRI) beads. A novel solid-phase catalysis strategy for RNA library preparation to circumvent the need for SPRI bead purification to remove enzymes is reported here. This new approach leverages concurrent processing of non-polyadenylated transcripts with immobilized poly(A) polymerase and T4 DNA ligase, followed by directly loading the prepared library onto a flow cell. Whole transcriptome sequencing, using a human pathogen Listeria monocytogenes as a model, demonstrates this new method displays little sample loss, takes much less time, and generates higher sequencing throughput correlated with reduced nanopore fouling compared to the current library preparation for 500 ng input. Consequently, this approach enables Nanopore low-input direct RNA-seq, improving pathogen detection and transcript identification in a microbial community standard with spike-in transcript controls. Besides, as evident in the bioinformatic analysis, the new method provides accurate RNA consensus with high fidelity and identifies higher numbers of expressed genes for both high and low input RNA amounts.

摘要

对于低输入转录组分析和早期病原体监测而言,Nanopore 直接 RNA-seq 对大量输入量(500ng)的需求是一个主要挑战。高 RNA 输入量的要求归因于使用固相可逆固定化 (SPRI) 珠进行文库制备时与显著的样品损失相关。这里报道了一种用于 RNA 文库制备的新型固相催化策略,以避免需要 SPRI 珠纯化来去除酶。这种新方法利用固定化 poly(A) 聚合酶和 T4 DNA 连接酶同时处理非多聚腺苷酸化的转录本,然后直接将制备的文库加载到流动池上。使用人类病原体李斯特菌作为模型的全转录组测序表明,与当前用于 500ng 输入的文库制备相比,这种新方法显示出很少的样品损失、需要更少的时间并且产生更高的测序通量,与减少纳米孔堵塞相关。因此,该方法实现了 Nanopore 低输入直接 RNA-seq,提高了微生物群落标准中带有外源性转录本对照物的病原体检测和转录本鉴定的灵敏度。此外,正如生物信息学分析所示,该新方法提供了具有高保真度的准确 RNA 共识,并识别出更高数量的高和低 RNA 输入量的表达基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2cf/8787394/16917dddedc1/ADVS-9-2103373-g007.jpg

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