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The creation of autotetraploid provides insights into critical features of DNA methylome changes after genome doubling in water spinach (Ipomoea aquatica Forsk)

Water spinach (Ipomoea aquatica Forsk) is an essential green leafy vegetable in Asia. In this study, we induced autotetraploid water spinach by colchicine. Furthermore, DNA methylation and transcriptome of tetraploid and diploid were compared using Whole Genome Bisulfite Sequencing (WGBS) and RNA-se...

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Autores principales: Hao, Yuanyuan, Su, Xiao, Li, Wen, Li, Lin, Zhang, Yu, Mumtaz, Muhammad Ali, Shu, Huangying, Cheng, Shanhan, Zhu, Guopeng, Wang, Zhiwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10140364/
https://www.ncbi.nlm.nih.gov/pubmed/37123819
http://dx.doi.org/10.3389/fpls.2023.1155531
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author Hao, Yuanyuan
Su, Xiao
Li, Wen
Li, Lin
Zhang, Yu
Mumtaz, Muhammad Ali
Shu, Huangying
Cheng, Shanhan
Zhu, Guopeng
Wang, Zhiwei
author_facet Hao, Yuanyuan
Su, Xiao
Li, Wen
Li, Lin
Zhang, Yu
Mumtaz, Muhammad Ali
Shu, Huangying
Cheng, Shanhan
Zhu, Guopeng
Wang, Zhiwei
author_sort Hao, Yuanyuan
collection PubMed
description Water spinach (Ipomoea aquatica Forsk) is an essential green leafy vegetable in Asia. In this study, we induced autotetraploid water spinach by colchicine. Furthermore, DNA methylation and transcriptome of tetraploid and diploid were compared using Whole Genome Bisulfite Sequencing (WGBS) and RNA-sequencing techniques. Autotetraploid water spinach was created for the first time. Compared with the diploid parent, autotetraploid water spinach had wider leaves, thicker petioles and stems, thicker and shorter adventitious roots, longer stomas, and larger parenchyma cells. The whole genome methylation level of the autotetraploid was slightly higher than that of the diploid. Compared with the diploid, 12281 Differentially Methylated Regions (DMRs)were found in the autotetraploid, including 2356 hypermethylated and 1310 hypomethylated genes, mainly enriched in ‘Arginine and Proline metabolism’, ‘beta − Alanine metabolism’, ‘Plant homone signal translation’, ‘Ribome’, and ‘Plant − pathgen interaction’ pathways. Correlation analysis of transcriptome and DNA methylation data showed that 121 differentially expressed genes undergone differential methylation, related to four pathways ‘Other types of O-glycan biosynthesis’, ‘Terpenoid backbone biosynthesis’, ‘Biosynthesis of secondary metabolites’, and ‘Metabolic paths’. This work obtained important autotetraploid resources of water spinach and revealed the genomic DNA methylation changes after genome doubling, being helpful for further studying the molecular mechanism of variations caused by polyploids of the Ipomoea genus.
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spelling pubmed-101403642023-04-29 The creation of autotetraploid provides insights into critical features of DNA methylome changes after genome doubling in water spinach (Ipomoea aquatica Forsk) Hao, Yuanyuan Su, Xiao Li, Wen Li, Lin Zhang, Yu Mumtaz, Muhammad Ali Shu, Huangying Cheng, Shanhan Zhu, Guopeng Wang, Zhiwei Front Plant Sci Plant Science Water spinach (Ipomoea aquatica Forsk) is an essential green leafy vegetable in Asia. In this study, we induced autotetraploid water spinach by colchicine. Furthermore, DNA methylation and transcriptome of tetraploid and diploid were compared using Whole Genome Bisulfite Sequencing (WGBS) and RNA-sequencing techniques. Autotetraploid water spinach was created for the first time. Compared with the diploid parent, autotetraploid water spinach had wider leaves, thicker petioles and stems, thicker and shorter adventitious roots, longer stomas, and larger parenchyma cells. The whole genome methylation level of the autotetraploid was slightly higher than that of the diploid. Compared with the diploid, 12281 Differentially Methylated Regions (DMRs)were found in the autotetraploid, including 2356 hypermethylated and 1310 hypomethylated genes, mainly enriched in ‘Arginine and Proline metabolism’, ‘beta − Alanine metabolism’, ‘Plant homone signal translation’, ‘Ribome’, and ‘Plant − pathgen interaction’ pathways. Correlation analysis of transcriptome and DNA methylation data showed that 121 differentially expressed genes undergone differential methylation, related to four pathways ‘Other types of O-glycan biosynthesis’, ‘Terpenoid backbone biosynthesis’, ‘Biosynthesis of secondary metabolites’, and ‘Metabolic paths’. This work obtained important autotetraploid resources of water spinach and revealed the genomic DNA methylation changes after genome doubling, being helpful for further studying the molecular mechanism of variations caused by polyploids of the Ipomoea genus. Frontiers Media S.A. 2023-04-14 /pmc/articles/PMC10140364/ /pubmed/37123819 http://dx.doi.org/10.3389/fpls.2023.1155531 Text en Copyright © 2023 Hao, Su, Li, Li, Zhang, Mumtaz, Shu, Cheng, Zhu and Wang https://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 Plant Science
Hao, Yuanyuan
Su, Xiao
Li, Wen
Li, Lin
Zhang, Yu
Mumtaz, Muhammad Ali
Shu, Huangying
Cheng, Shanhan
Zhu, Guopeng
Wang, Zhiwei
The creation of autotetraploid provides insights into critical features of DNA methylome changes after genome doubling in water spinach (Ipomoea aquatica Forsk)
title The creation of autotetraploid provides insights into critical features of DNA methylome changes after genome doubling in water spinach (Ipomoea aquatica Forsk)
title_full The creation of autotetraploid provides insights into critical features of DNA methylome changes after genome doubling in water spinach (Ipomoea aquatica Forsk)
title_fullStr The creation of autotetraploid provides insights into critical features of DNA methylome changes after genome doubling in water spinach (Ipomoea aquatica Forsk)
title_full_unstemmed The creation of autotetraploid provides insights into critical features of DNA methylome changes after genome doubling in water spinach (Ipomoea aquatica Forsk)
title_short The creation of autotetraploid provides insights into critical features of DNA methylome changes after genome doubling in water spinach (Ipomoea aquatica Forsk)
title_sort creation of autotetraploid provides insights into critical features of dna methylome changes after genome doubling in water spinach (ipomoea aquatica forsk)
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10140364/
https://www.ncbi.nlm.nih.gov/pubmed/37123819
http://dx.doi.org/10.3389/fpls.2023.1155531
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