Wang Qi, Boenigk Sven, Boehm Volker, Gehring Niels H, Altmueller Janine, Dieterich Christoph
Klaus Tschira Institute for Integrative Computational Cardiology, University Hospital Heidelberg.
Institute for Genetics, University of Cologne.
RNA. 2021 Apr 27;27(7):763-70. doi: 10.1261/rna.078154.120.
The current ecosystem of single cell RNA-seq platforms is rapidly expanding, but robust solutions for single cell and single molecule full- length RNA sequencing are virtually absent. A high-throughput solution that covers all aspects is necessary to study the complex life of mRNA on the single cell level. The Nanopore platform offers long read sequencing and can be integrated with the popular single cell sequencing method on the 10x Chromium platform. However, the high error-rate of Nanopore reads poses a challenge in downstream processing (e.g. for cell barcode assignment). We propose a solution to this particular problem by using a hybrid sequencing approach on Nanopore and Illumina platforms. Our software ScNapBar enables cell barcode assignment with high accuracy, especially if sequencing satura- tion is low. ScNapBar uses unique molecular identifier (UMI) or Naıve Bayes probabilistic approaches in the barcode assignment, depending on the available Illumina sequencing depth. We have benchmarked the two approaches on simulated and real Nanopore datasets. We further applied ScNapBar to pools of cells with an active or a silenced non-sense mediated RNA decay pathway. Our Nanopore read assignment distinguishes the respective cell populations and reveals characteristic nonsense-mediated mRNA decay events depending on cell status.
当前单细胞RNA测序平台的生态系统正在迅速扩展,但针对单细胞和单分子全长RNA测序的强大解决方案实际上并不存在。要在单细胞水平上研究mRNA的复杂生命历程,需要一个涵盖所有方面的高通量解决方案。纳米孔平台提供长读长测序,并且可以与10x Chromium平台上流行的单细胞测序方法相结合。然而,纳米孔读数的高错误率在下游处理(例如细胞条形码分配)中构成了挑战。我们通过在纳米孔和Illumina平台上使用混合测序方法,提出了针对这个特定问题的解决方案。我们的软件ScNapBar能够高精度地进行细胞条形码分配,特别是在测序饱和度较低的情况下。ScNapBar在条形码分配中使用独特分子标识符(UMI)或朴素贝叶斯概率方法,具体取决于可用的Illumina测序深度。我们在模拟和真实的纳米孔数据集上对这两种方法进行了基准测试。我们进一步将ScNapBar应用于具有活跃或沉默的无义介导RNA衰变途径的细胞池。我们的纳米孔读数分配能够区分各自的细胞群体,并根据细胞状态揭示无义介导的mRNA衰变的特征事件。