Transcriptome Profiling Using Single-Molecule Direct RNA Sequencing Approach for In-depth Understanding of Genes in Secondary Metabolism Pathways of Camellia sinensis
Characteristic secondary metabolites, including flavonoids, theanine and caffeine, are important components of Camellia sinensis, and their biosynthesis has attracted widespread interest. Previous studies on the biosynthesis of these major secondary metabolites using next-generation sequencing techn...
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doaj-25545e23bcb94eb88e6b27fd0f58ffca2020-11-25T00:57:38ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2017-07-01810.3389/fpls.2017.01205249475Transcriptome Profiling Using Single-Molecule Direct RNA Sequencing Approach for In-depth Understanding of Genes in Secondary Metabolism Pathways of Camellia sinensisQingshan XuJunyan ZhuShiqi ZhaoYan HouFangdong LiYuling TaiXiaochun WanChaoLing WeiCharacteristic secondary metabolites, including flavonoids, theanine and caffeine, are important components of Camellia sinensis, and their biosynthesis has attracted widespread interest. Previous studies on the biosynthesis of these major secondary metabolites using next-generation sequencing technologies limited the accurately prediction of full-length (FL) splice isoforms. Herein, we applied single-molecule sequencing to pooled tea plant tissues, to provide a more complete transcriptome of C. sinensis. Moreover, we identified 94 FL transcripts and four alternative splicing events for enzyme-coding genes involved in the biosynthesis of flavonoids, theanine and caffeine. According to the comparison between long-read isoforms and assemble transcripts, we improved the quality and accuracy of genes sequenced by short-read next-generation sequencing technology. The resulting FL transcripts, together with the improved assembled transcripts and identified alternative splicing events, enhance our understanding of genes involved in the biosynthesis of characteristic secondary metabolites in C. sinensis.http://journal.frontiersin.org/article/10.3389/fpls.2017.01205/fullCamellia sinensissingle-molecule sequencingfull-length transcriptalternative splicingcharacteristic secondary metabolite |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Qingshan Xu Junyan Zhu Shiqi Zhao Yan Hou Fangdong Li Yuling Tai Xiaochun Wan ChaoLing Wei |
spellingShingle |
Qingshan Xu Junyan Zhu Shiqi Zhao Yan Hou Fangdong Li Yuling Tai Xiaochun Wan ChaoLing Wei Transcriptome Profiling Using Single-Molecule Direct RNA Sequencing Approach for In-depth Understanding of Genes in Secondary Metabolism Pathways of Camellia sinensis Frontiers in Plant Science Camellia sinensis single-molecule sequencing full-length transcript alternative splicing characteristic secondary metabolite |
author_facet |
Qingshan Xu Junyan Zhu Shiqi Zhao Yan Hou Fangdong Li Yuling Tai Xiaochun Wan ChaoLing Wei |
author_sort |
Qingshan Xu |
title |
Transcriptome Profiling Using Single-Molecule Direct RNA Sequencing Approach for In-depth Understanding of Genes in Secondary Metabolism Pathways of Camellia sinensis |
title_short |
Transcriptome Profiling Using Single-Molecule Direct RNA Sequencing Approach for In-depth Understanding of Genes in Secondary Metabolism Pathways of Camellia sinensis |
title_full |
Transcriptome Profiling Using Single-Molecule Direct RNA Sequencing Approach for In-depth Understanding of Genes in Secondary Metabolism Pathways of Camellia sinensis |
title_fullStr |
Transcriptome Profiling Using Single-Molecule Direct RNA Sequencing Approach for In-depth Understanding of Genes in Secondary Metabolism Pathways of Camellia sinensis |
title_full_unstemmed |
Transcriptome Profiling Using Single-Molecule Direct RNA Sequencing Approach for In-depth Understanding of Genes in Secondary Metabolism Pathways of Camellia sinensis |
title_sort |
transcriptome profiling using single-molecule direct rna sequencing approach for in-depth understanding of genes in secondary metabolism pathways of camellia sinensis |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Plant Science |
issn |
1664-462X |
publishDate |
2017-07-01 |
description |
Characteristic secondary metabolites, including flavonoids, theanine and caffeine, are important components of Camellia sinensis, and their biosynthesis has attracted widespread interest. Previous studies on the biosynthesis of these major secondary metabolites using next-generation sequencing technologies limited the accurately prediction of full-length (FL) splice isoforms. Herein, we applied single-molecule sequencing to pooled tea plant tissues, to provide a more complete transcriptome of C. sinensis. Moreover, we identified 94 FL transcripts and four alternative splicing events for enzyme-coding genes involved in the biosynthesis of flavonoids, theanine and caffeine. According to the comparison between long-read isoforms and assemble transcripts, we improved the quality and accuracy of genes sequenced by short-read next-generation sequencing technology. The resulting FL transcripts, together with the improved assembled transcripts and identified alternative splicing events, enhance our understanding of genes involved in the biosynthesis of characteristic secondary metabolites in C. sinensis. |
topic |
Camellia sinensis single-molecule sequencing full-length transcript alternative splicing characteristic secondary metabolite |
url |
http://journal.frontiersin.org/article/10.3389/fpls.2017.01205/full |
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