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大规模多重分析可实现对来自单个纳米孔流动槽的32种牛组织进行全长转录组注释。

Large-Scale Multiplexing Permits Full-Length Transcriptome Annotation of 32 Bovine Tissues From a Single Nanopore Flow Cell.

作者信息

Halstead Michelle M, Islas-Trejo Alma, Goszczynski Daniel E, Medrano Juan F, Zhou Huaijun, Ross Pablo J

机构信息

Department of Animal Science, University of California, Davis, Davis, CA, United States.

出版信息

Front Genet. 2021 May 20;12:664260. doi: 10.3389/fgene.2021.664260. eCollection 2021.

Abstract

A comprehensive annotation of transcript isoforms in domesticated species is lacking. Especially considering that transcriptome complexity and splicing patterns are not well-conserved between species, this presents a substantial obstacle to genomic selection programs that seek to improve production, disease resistance, and reproduction. Recent advances in long-read sequencing technology have made it possible to directly extrapolate the structure of full-length transcripts without the need for transcript reconstruction. In this study, we demonstrate the power of long-read sequencing for transcriptome annotation by coupling Oxford Nanopore Technology (ONT) with large-scale multiplexing of 93 samples, comprising 32 tissues collected from adult male and female Hereford cattle. More than 30 million uniquely mapping full-length reads were obtained from a single ONT flow cell, and used to identify and characterize the expression dynamics of 99,044 transcript isoforms at 31,824 loci. Of these predicted transcripts, 21% exactly matched a reference transcript, and 61% were novel isoforms of reference genes, substantially increasing the ratio of transcript variants per gene, and suggesting that the complexity of the bovine transcriptome is comparable to that in humans. Over 7,000 transcript isoforms were extremely tissue-specific, and 61% of these were attributed to testis, which exhibited the most complex transcriptome of all interrogated tissues. Despite profiling over 30 tissues, transcription was only detected at about 60% of reference loci. Consequently, additional studies will be necessary to continue characterizing the bovine transcriptome in additional cell types, developmental stages, and physiological conditions. However, by here demonstrating the power of ONT sequencing coupled with large-scale multiplexing, the task of exhaustively annotating the bovine transcriptome - or any mammalian transcriptome - appears significantly more feasible.

摘要

目前尚缺乏对驯化物种转录本异构体的全面注释。尤其考虑到转录组复杂性和剪接模式在物种间并非保守不变,这给旨在提高生产性能、抗病性和繁殖能力的基因组选择计划带来了重大障碍。长读长测序技术的最新进展使得无需转录本重建就能直接推断全长转录本的结构。在本研究中,我们通过将牛津纳米孔技术(ONT)与93个样本的大规模多重分析相结合,展示了长读长测序在转录组注释方面的强大功能,这些样本包括从成年雄性和雌性海福特牛采集的32种组织。从单个ONT流动槽中获得了超过3000万个唯一映射的全长 reads,并用于识别和表征31824个位点上99044个转录本异构体的表达动态。在这些预测的转录本中,21%与参考转录本完全匹配,61%是参考基因的新异构体,显著增加了每个基因的转录变体比例,这表明牛转录组的复杂性与人类相当。超过7000个转录本异构体具有极强的组织特异性,其中61%归因于睾丸,睾丸在所有检测组织中表现出最复杂的转录组。尽管对30多种组织进行了分析,但仅在约60%的参考位点检测到转录。因此,有必要开展更多研究,继续在其他细胞类型、发育阶段和生理条件下对牛转录组进行表征。然而,通过本研究展示ONT测序与大规模多重分析相结合的强大功能,详尽注释牛转录组——或任何哺乳动物转录组——的任务似乎变得明显更可行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c6e/8173071/62ed0c53d963/fgene-12-664260-g001.jpg

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