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使用lr-kallisto进行长读长测序转录组定量分析。

Long-read sequencing transcriptome quantification with lr-kallisto.

作者信息

Loving Rebekah K, Sullivan Delaney K, Booeshagi A Sina, Reese Fairlie, Rebboah Elisabeth, Sakr Jasmine, Rezaie Narges, Liang Heidi Y, Filimban Ghassan, Kawauchi Shimako, Oakes Conrad, Trout Diane, Williams Brian A, MacGregor Grant, Wold Barbara J, Mortazavi Ali, Pachter Lior

机构信息

Division of Biology and Biological Engineering, California Institute of Technology, USA.

UCLA-Caltech Medical Scientist Training Program, David Geffen School of Medicine, University of California, Los Angeles, Los Angeles, CA, 90095, USA.

出版信息

bioRxiv. 2025 Jan 29:2024.07.19.604364. doi: 10.1101/2024.07.19.604364.

Abstract

RNA abundance quantification has become routine and affordable thanks to high-throughput "short-read" technologies that provide accurate molecule counts at the gene level. Similarly accurate and affordable quantification of definitive full-length, transcript isoforms has remained a stubborn challenge, despite its obvious biological significance across a wide range of problems. "Long-read" sequencing platforms now produce data-types that can, in principle, drive routine definitive isoform quantification. However some particulars of contemporary long-read datatypes, together with isoform complexity and genetic variation, present bioinformatic challenges. We show here, using ONT data, that fast and accurate quantification of long-read data is possible and that it is improved by exome capture. To perform quantifications we developed lr-kallisto, which adapts the kallisto bulk and single-cell RNA-seq quantification methods for long-read technologies.

摘要

由于高通量“短读长”技术能够在基因水平提供准确的分子计数,RNA丰度定量已变得常规且经济实惠。同样,尽管确定的全长转录本异构体定量在广泛问题中具有明显的生物学意义,但准确且经济实惠的定量仍然是一个棘手的挑战。“长读长”测序平台现在产生的数据类型原则上可以推动常规的确定异构体定量。然而,当代长读长数据类型的一些细节,以及异构体复杂性和基因变异,带来了生物信息学挑战。我们在此使用ONT数据表明,长读长数据的快速准确量化是可能的,并且外显子捕获可以改进这种量化。为了进行定量,我们开发了lr-kallisto,它将kallisto批量和单细胞RNA-seq定量方法应用于长读长技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2211/11789567/d7a38ea090a4/nihpp-2024.07.19.604364v4-f0001.jpg

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