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Characterization of Full-Length Transcriptome Sequences and Splice Variants of Lateolabrax maculatus by Single-Molecule Long-Read Sequencing and Their Involvement in Salinity Regulation

Transcriptome complexity plays crucial roles in regulating the biological functions of eukaryotes. Except for functional genes, alternative splicing and fusion transcripts produce a vast expansion of transcriptome diversity. In this study, we applied PacBio single-molecule long-read sequencing techn...

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Autores principales: Tian, Yuan, Wen, Haishen, Qi, Xin, Zhang, Xiaoyan, Liu, Shikai, Li, Bingyu, Sun, Yalong, Li, Jifang, He, Feng, Yang, Wenzhao, Li, Yun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6873903/
https://www.ncbi.nlm.nih.gov/pubmed/31803231
http://dx.doi.org/10.3389/fgene.2019.01126
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author Tian, Yuan
Wen, Haishen
Qi, Xin
Zhang, Xiaoyan
Liu, Shikai
Li, Bingyu
Sun, Yalong
Li, Jifang
He, Feng
Yang, Wenzhao
Li, Yun
author_facet Tian, Yuan
Wen, Haishen
Qi, Xin
Zhang, Xiaoyan
Liu, Shikai
Li, Bingyu
Sun, Yalong
Li, Jifang
He, Feng
Yang, Wenzhao
Li, Yun
author_sort Tian, Yuan
collection PubMed
description Transcriptome complexity plays crucial roles in regulating the biological functions of eukaryotes. Except for functional genes, alternative splicing and fusion transcripts produce a vast expansion of transcriptome diversity. In this study, we applied PacBio single-molecule long-read sequencing technology to unveil the whole transcriptome landscape of Lateolabrax maculatus. We obtained 28,809 high-quality non-redundant transcripts, including 18,280 novel isoforms covering 8,961 annotated gene loci within the current reference genome and 3,172 novel isoforms. A total of 10,249 AS events were detected, and intron retention was the predominant AS event. In addition, 1,359 alternative polyadenylation events, 3,112 lncRNAs, 29,609 SSRs, 365 fusion transcripts, and 1,194 transcription factors were identified in this study. Furthermore, we performed RNA-Seq analysis combined with Iso-Seq results to investigate salinity regulation mechanism at the transcripts level. A total of 518 transcripts were differentially expressed, which were further divided into 8 functional groups. Notably, transcripts from the same genes exhibited similar or opposite expression patterns. Our study provides a comprehensive view of the transcriptome complexity in L. maculatus, which significantly improves current gene models. Moreover, the diversity of the expression patterns of transcripts may enhance the understanding of salinity regulatory mechanism in L. maculatus and other euryhaline teleosts.
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spelling pubmed-68739032019-12-04 Characterization of Full-Length Transcriptome Sequences and Splice Variants of Lateolabrax maculatus by Single-Molecule Long-Read Sequencing and Their Involvement in Salinity Regulation Tian, Yuan Wen, Haishen Qi, Xin Zhang, Xiaoyan Liu, Shikai Li, Bingyu Sun, Yalong Li, Jifang He, Feng Yang, Wenzhao Li, Yun Front Genet Genetics Transcriptome complexity plays crucial roles in regulating the biological functions of eukaryotes. Except for functional genes, alternative splicing and fusion transcripts produce a vast expansion of transcriptome diversity. In this study, we applied PacBio single-molecule long-read sequencing technology to unveil the whole transcriptome landscape of Lateolabrax maculatus. We obtained 28,809 high-quality non-redundant transcripts, including 18,280 novel isoforms covering 8,961 annotated gene loci within the current reference genome and 3,172 novel isoforms. A total of 10,249 AS events were detected, and intron retention was the predominant AS event. In addition, 1,359 alternative polyadenylation events, 3,112 lncRNAs, 29,609 SSRs, 365 fusion transcripts, and 1,194 transcription factors were identified in this study. Furthermore, we performed RNA-Seq analysis combined with Iso-Seq results to investigate salinity regulation mechanism at the transcripts level. A total of 518 transcripts were differentially expressed, which were further divided into 8 functional groups. Notably, transcripts from the same genes exhibited similar or opposite expression patterns. Our study provides a comprehensive view of the transcriptome complexity in L. maculatus, which significantly improves current gene models. Moreover, the diversity of the expression patterns of transcripts may enhance the understanding of salinity regulatory mechanism in L. maculatus and other euryhaline teleosts. Frontiers Media S.A. 2019-11-15 /pmc/articles/PMC6873903/ /pubmed/31803231 http://dx.doi.org/10.3389/fgene.2019.01126 Text en Copyright © 2019 Tian, Wen, Qi, Zhang, Liu, Li, Sun, Li, He, Yang and Li http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Tian, Yuan
Wen, Haishen
Qi, Xin
Zhang, Xiaoyan
Liu, Shikai
Li, Bingyu
Sun, Yalong
Li, Jifang
He, Feng
Yang, Wenzhao
Li, Yun
Characterization of Full-Length Transcriptome Sequences and Splice Variants of Lateolabrax maculatus by Single-Molecule Long-Read Sequencing and Their Involvement in Salinity Regulation
title Characterization of Full-Length Transcriptome Sequences and Splice Variants of Lateolabrax maculatus by Single-Molecule Long-Read Sequencing and Their Involvement in Salinity Regulation
title_full Characterization of Full-Length Transcriptome Sequences and Splice Variants of Lateolabrax maculatus by Single-Molecule Long-Read Sequencing and Their Involvement in Salinity Regulation
title_fullStr Characterization of Full-Length Transcriptome Sequences and Splice Variants of Lateolabrax maculatus by Single-Molecule Long-Read Sequencing and Their Involvement in Salinity Regulation
title_full_unstemmed Characterization of Full-Length Transcriptome Sequences and Splice Variants of Lateolabrax maculatus by Single-Molecule Long-Read Sequencing and Their Involvement in Salinity Regulation
title_short Characterization of Full-Length Transcriptome Sequences and Splice Variants of Lateolabrax maculatus by Single-Molecule Long-Read Sequencing and Their Involvement in Salinity Regulation
title_sort characterization of full-length transcriptome sequences and splice variants of lateolabrax maculatus by single-molecule long-read sequencing and their involvement in salinity regulation
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6873903/
https://www.ncbi.nlm.nih.gov/pubmed/31803231
http://dx.doi.org/10.3389/fgene.2019.01126
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