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Mutagenic Effect of Three Ion Beams on Rice and Identification of Heritable Mutations by Whole Genome Sequencing

High-energy ion beams are known to be an effective and unique type of physical mutagen in plants. However, no study on the mutagenic effect of argon (Ar) ion beam radiation on rice has been reported. Genome-wide studies on induced mutations are important to comprehend their characteristics for estab...

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Autores principales: Zheng, Yunchao, Li, Shan, Huang, Jianzhong, Fu, Haowei, Zhou, Libin, Furusawa, Yoshiya, Shu, Qingyao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7284785/
https://www.ncbi.nlm.nih.gov/pubmed/32357388
http://dx.doi.org/10.3390/plants9050551
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author Zheng, Yunchao
Li, Shan
Huang, Jianzhong
Fu, Haowei
Zhou, Libin
Furusawa, Yoshiya
Shu, Qingyao
author_facet Zheng, Yunchao
Li, Shan
Huang, Jianzhong
Fu, Haowei
Zhou, Libin
Furusawa, Yoshiya
Shu, Qingyao
author_sort Zheng, Yunchao
collection PubMed
description High-energy ion beams are known to be an effective and unique type of physical mutagen in plants. However, no study on the mutagenic effect of argon (Ar) ion beam radiation on rice has been reported. Genome-wide studies on induced mutations are important to comprehend their characteristics for establishing knowledge-based protocols for mutation induction and breeding, which are still very limited in rice. The present study aimed to investigate the mutagenic effect of three ion beams, i.e., Ar, carbon (C) and neon (Ne) on rice and identify and characterize heritable induced mutations by the whole genome sequencing of six M(4) plants. Dose-dependent damage effects were observed on M(1) plants, which were developed from ion beam irradiated dry seeds of two indica (LH15, T23) and two japonica (DS551, DS48) rice lines. High frequencies of chlorophyll-deficient seedlings and male-sterile plants were observed in all M(2) populations (up to ~30% on M(1) plant basis); plants from the seeds of different panicles of a common M(1) plant appeared to have different mutations; the whole genome-sequencing demonstrated that there were 236–453 mutations in each of the six M(4) plants, including single base substitutions (SBSs) and small insertion/deletions (InDels), with the number of SBSs ~ 4–8 times greater than that of InDels; SBS and InDel mutations were distributed across different genomic regions of all 12 chromosomes, however, only a small number of mutations (0–6) were present in exonic regions that might have an impact on gene function. In summary, the present study demonstrates that Ar, C and Ne ion beam radiation are all effective for mutation induction in rice and has revealed at the genome level the characteristics of the mutations induced by the three ion beams. The findings are of importance to the efficient use of ion beam radiation for the generation and utilization of mutants in rice.
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spelling pubmed-72847852020-06-15 Mutagenic Effect of Three Ion Beams on Rice and Identification of Heritable Mutations by Whole Genome Sequencing Zheng, Yunchao Li, Shan Huang, Jianzhong Fu, Haowei Zhou, Libin Furusawa, Yoshiya Shu, Qingyao Plants (Basel) Article High-energy ion beams are known to be an effective and unique type of physical mutagen in plants. However, no study on the mutagenic effect of argon (Ar) ion beam radiation on rice has been reported. Genome-wide studies on induced mutations are important to comprehend their characteristics for establishing knowledge-based protocols for mutation induction and breeding, which are still very limited in rice. The present study aimed to investigate the mutagenic effect of three ion beams, i.e., Ar, carbon (C) and neon (Ne) on rice and identify and characterize heritable induced mutations by the whole genome sequencing of six M(4) plants. Dose-dependent damage effects were observed on M(1) plants, which were developed from ion beam irradiated dry seeds of two indica (LH15, T23) and two japonica (DS551, DS48) rice lines. High frequencies of chlorophyll-deficient seedlings and male-sterile plants were observed in all M(2) populations (up to ~30% on M(1) plant basis); plants from the seeds of different panicles of a common M(1) plant appeared to have different mutations; the whole genome-sequencing demonstrated that there were 236–453 mutations in each of the six M(4) plants, including single base substitutions (SBSs) and small insertion/deletions (InDels), with the number of SBSs ~ 4–8 times greater than that of InDels; SBS and InDel mutations were distributed across different genomic regions of all 12 chromosomes, however, only a small number of mutations (0–6) were present in exonic regions that might have an impact on gene function. In summary, the present study demonstrates that Ar, C and Ne ion beam radiation are all effective for mutation induction in rice and has revealed at the genome level the characteristics of the mutations induced by the three ion beams. The findings are of importance to the efficient use of ion beam radiation for the generation and utilization of mutants in rice. MDPI 2020-04-26 /pmc/articles/PMC7284785/ /pubmed/32357388 http://dx.doi.org/10.3390/plants9050551 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zheng, Yunchao
Li, Shan
Huang, Jianzhong
Fu, Haowei
Zhou, Libin
Furusawa, Yoshiya
Shu, Qingyao
Mutagenic Effect of Three Ion Beams on Rice and Identification of Heritable Mutations by Whole Genome Sequencing
title Mutagenic Effect of Three Ion Beams on Rice and Identification of Heritable Mutations by Whole Genome Sequencing
title_full Mutagenic Effect of Three Ion Beams on Rice and Identification of Heritable Mutations by Whole Genome Sequencing
title_fullStr Mutagenic Effect of Three Ion Beams on Rice and Identification of Heritable Mutations by Whole Genome Sequencing
title_full_unstemmed Mutagenic Effect of Three Ion Beams on Rice and Identification of Heritable Mutations by Whole Genome Sequencing
title_short Mutagenic Effect of Three Ion Beams on Rice and Identification of Heritable Mutations by Whole Genome Sequencing
title_sort mutagenic effect of three ion beams on rice and identification of heritable mutations by whole genome sequencing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7284785/
https://www.ncbi.nlm.nih.gov/pubmed/32357388
http://dx.doi.org/10.3390/plants9050551
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