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Full-Length Transcriptome Sequencing Reveals Alternative Splicing and lncRNA Regulation during Nodule Development in Glycine max

Alternative splicing (AS) is a ubiquitous phenomenon among eukaryotic intron-containing genes, which greatly contributes to transcriptome and proteome diversity. Here we performed the isoform sequencing (Iso-Seq) of soybean underground tissues inoculated and uninoculated with Rhizobium and obtained...

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Autores principales: Liu, Jing, Chen, Shengcai, Liu, Min, Chen, Yimian, Fan, Wei, Lee, Seunghee, Xiao, Han, Kudrna, Dave, Li, Zixin, Chen, Xu, Peng, Yaqi, Tian, Kewei, Zhang, Bao, Wing, Rod A., Zhang, Jianwei, Wang, Xuelu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9266934/
https://www.ncbi.nlm.nih.gov/pubmed/35806374
http://dx.doi.org/10.3390/ijms23137371
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author Liu, Jing
Chen, Shengcai
Liu, Min
Chen, Yimian
Fan, Wei
Lee, Seunghee
Xiao, Han
Kudrna, Dave
Li, Zixin
Chen, Xu
Peng, Yaqi
Tian, Kewei
Zhang, Bao
Wing, Rod A.
Zhang, Jianwei
Wang, Xuelu
author_facet Liu, Jing
Chen, Shengcai
Liu, Min
Chen, Yimian
Fan, Wei
Lee, Seunghee
Xiao, Han
Kudrna, Dave
Li, Zixin
Chen, Xu
Peng, Yaqi
Tian, Kewei
Zhang, Bao
Wing, Rod A.
Zhang, Jianwei
Wang, Xuelu
author_sort Liu, Jing
collection PubMed
description Alternative splicing (AS) is a ubiquitous phenomenon among eukaryotic intron-containing genes, which greatly contributes to transcriptome and proteome diversity. Here we performed the isoform sequencing (Iso-Seq) of soybean underground tissues inoculated and uninoculated with Rhizobium and obtained 200,681 full-length transcripts covering 26,183 gene loci. It was found that 80.78% of the multi-exon loci produced more than one splicing variant. Comprehensive analysis of these identified 7874 differentially splicing events with highly diverse splicing patterns during nodule development, especially in defense and transport-related processes. We further profiled genes with differential isoform usage and revealed that 2008 multi-isoform loci underwent stage-specific or simultaneous major isoform switches after Rhizobium inoculation, indicating that AS is a vital way to regulate nodule development. Moreover, we took the lead in identifying 1563 high-confidence long non-coding RNAs (lncRNAs) in soybean, and 157 of them are differentially expressed during nodule development. Therefore, our study uncovers the landscape of AS during the soybean-Rhizobium interaction and provides systematic transcriptomic data for future study of multiple novel directions in soybean.
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spelling pubmed-92669342022-07-09 Full-Length Transcriptome Sequencing Reveals Alternative Splicing and lncRNA Regulation during Nodule Development in Glycine max Liu, Jing Chen, Shengcai Liu, Min Chen, Yimian Fan, Wei Lee, Seunghee Xiao, Han Kudrna, Dave Li, Zixin Chen, Xu Peng, Yaqi Tian, Kewei Zhang, Bao Wing, Rod A. Zhang, Jianwei Wang, Xuelu Int J Mol Sci Article Alternative splicing (AS) is a ubiquitous phenomenon among eukaryotic intron-containing genes, which greatly contributes to transcriptome and proteome diversity. Here we performed the isoform sequencing (Iso-Seq) of soybean underground tissues inoculated and uninoculated with Rhizobium and obtained 200,681 full-length transcripts covering 26,183 gene loci. It was found that 80.78% of the multi-exon loci produced more than one splicing variant. Comprehensive analysis of these identified 7874 differentially splicing events with highly diverse splicing patterns during nodule development, especially in defense and transport-related processes. We further profiled genes with differential isoform usage and revealed that 2008 multi-isoform loci underwent stage-specific or simultaneous major isoform switches after Rhizobium inoculation, indicating that AS is a vital way to regulate nodule development. Moreover, we took the lead in identifying 1563 high-confidence long non-coding RNAs (lncRNAs) in soybean, and 157 of them are differentially expressed during nodule development. Therefore, our study uncovers the landscape of AS during the soybean-Rhizobium interaction and provides systematic transcriptomic data for future study of multiple novel directions in soybean. MDPI 2022-07-01 /pmc/articles/PMC9266934/ /pubmed/35806374 http://dx.doi.org/10.3390/ijms23137371 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Jing
Chen, Shengcai
Liu, Min
Chen, Yimian
Fan, Wei
Lee, Seunghee
Xiao, Han
Kudrna, Dave
Li, Zixin
Chen, Xu
Peng, Yaqi
Tian, Kewei
Zhang, Bao
Wing, Rod A.
Zhang, Jianwei
Wang, Xuelu
Full-Length Transcriptome Sequencing Reveals Alternative Splicing and lncRNA Regulation during Nodule Development in Glycine max
title Full-Length Transcriptome Sequencing Reveals Alternative Splicing and lncRNA Regulation during Nodule Development in Glycine max
title_full Full-Length Transcriptome Sequencing Reveals Alternative Splicing and lncRNA Regulation during Nodule Development in Glycine max
title_fullStr Full-Length Transcriptome Sequencing Reveals Alternative Splicing and lncRNA Regulation during Nodule Development in Glycine max
title_full_unstemmed Full-Length Transcriptome Sequencing Reveals Alternative Splicing and lncRNA Regulation during Nodule Development in Glycine max
title_short Full-Length Transcriptome Sequencing Reveals Alternative Splicing and lncRNA Regulation during Nodule Development in Glycine max
title_sort full-length transcriptome sequencing reveals alternative splicing and lncrna regulation during nodule development in glycine max
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9266934/
https://www.ncbi.nlm.nih.gov/pubmed/35806374
http://dx.doi.org/10.3390/ijms23137371
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