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Immediate Genetic and Epigenetic Changes in F1 Hybrids Parented by Species with Divergent Genomes in the Rice Genus (Oryza)

BACKGROUND: Inter-specific hybridization occurs frequently in higher plants, and represents a driving force of evolution and speciation. Inter-specific hybridization often induces genetic and epigenetic instabilities in the resultant homoploid hybrids or allopolyploids, a phenomenon known as genome...

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Autores principales: Wu, Ying, Sun, Yue, Shen, Kun, Sun, Shuai, Wang, Jie, Jiang, Tingting, Cao, Shuai, Josiah, Samuel Manthi, Pang, Jinsong, Lin, Xiuyun, Liu, Bao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4514751/
https://www.ncbi.nlm.nih.gov/pubmed/26208215
http://dx.doi.org/10.1371/journal.pone.0132911
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author Wu, Ying
Sun, Yue
Shen, Kun
Sun, Shuai
Wang, Jie
Jiang, Tingting
Cao, Shuai
Josiah, Samuel Manthi
Pang, Jinsong
Lin, Xiuyun
Liu, Bao
author_facet Wu, Ying
Sun, Yue
Shen, Kun
Sun, Shuai
Wang, Jie
Jiang, Tingting
Cao, Shuai
Josiah, Samuel Manthi
Pang, Jinsong
Lin, Xiuyun
Liu, Bao
author_sort Wu, Ying
collection PubMed
description BACKGROUND: Inter-specific hybridization occurs frequently in higher plants, and represents a driving force of evolution and speciation. Inter-specific hybridization often induces genetic and epigenetic instabilities in the resultant homoploid hybrids or allopolyploids, a phenomenon known as genome shock. Although genetic and epigenetic consequences of hybridizations between rice subspecies (e.g., japonica and indica) and closely related species sharing the same AA genome have been extensively investigated, those of inter-specific hybridizations between more remote species with different genomes in the rice genus, Oryza, remain largely unknown. METHODOLOGY/PRINCIPAL FINDINGS: We investigated the immediate chromosomal and molecular genetic/epigenetic instability of three triploid F1 hybrids produced by inter-specific crossing between species with divergent genomes of Oryza by genomic in situ hybridization (GISH) and molecular marker analysis. Transcriptional and transpositional activity of several transposable elements (TEs) and methylation stability of their flanking regions were also assessed. We made the following principle findings: (i) all three triploid hybrids are stable in both chromosome number and gross structure; (ii) stochastic changes in both DNA sequence and methylation occurred in individual plants of all three triploid hybrids, but in general methylation changes occurred at lower frequencies than genetic changes; (iii) alteration in DNA methylation occurred to a greater extent in genomic loci flanking potentially active TEs than in randomly sampled loci; (iv) transcriptional activation of several TEs commonly occurred in all three hybrids but transpositional events were detected in a genetic context-dependent manner. CONCLUSIONS/SIGNIFICANCE: Artificially constructed inter-specific hybrids of remotely related species with divergent genomes in genus Oryza are chromosomally stable but show immediate and highly stochastic genetic and epigenetic instabilities at the molecular level. These novel hybrids might provide a rich resource of genetic and epigenetic diversities for potential utilization in rice genetic improvements.
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spelling pubmed-45147512015-07-29 Immediate Genetic and Epigenetic Changes in F1 Hybrids Parented by Species with Divergent Genomes in the Rice Genus (Oryza) Wu, Ying Sun, Yue Shen, Kun Sun, Shuai Wang, Jie Jiang, Tingting Cao, Shuai Josiah, Samuel Manthi Pang, Jinsong Lin, Xiuyun Liu, Bao PLoS One Research Article BACKGROUND: Inter-specific hybridization occurs frequently in higher plants, and represents a driving force of evolution and speciation. Inter-specific hybridization often induces genetic and epigenetic instabilities in the resultant homoploid hybrids or allopolyploids, a phenomenon known as genome shock. Although genetic and epigenetic consequences of hybridizations between rice subspecies (e.g., japonica and indica) and closely related species sharing the same AA genome have been extensively investigated, those of inter-specific hybridizations between more remote species with different genomes in the rice genus, Oryza, remain largely unknown. METHODOLOGY/PRINCIPAL FINDINGS: We investigated the immediate chromosomal and molecular genetic/epigenetic instability of three triploid F1 hybrids produced by inter-specific crossing between species with divergent genomes of Oryza by genomic in situ hybridization (GISH) and molecular marker analysis. Transcriptional and transpositional activity of several transposable elements (TEs) and methylation stability of their flanking regions were also assessed. We made the following principle findings: (i) all three triploid hybrids are stable in both chromosome number and gross structure; (ii) stochastic changes in both DNA sequence and methylation occurred in individual plants of all three triploid hybrids, but in general methylation changes occurred at lower frequencies than genetic changes; (iii) alteration in DNA methylation occurred to a greater extent in genomic loci flanking potentially active TEs than in randomly sampled loci; (iv) transcriptional activation of several TEs commonly occurred in all three hybrids but transpositional events were detected in a genetic context-dependent manner. CONCLUSIONS/SIGNIFICANCE: Artificially constructed inter-specific hybrids of remotely related species with divergent genomes in genus Oryza are chromosomally stable but show immediate and highly stochastic genetic and epigenetic instabilities at the molecular level. These novel hybrids might provide a rich resource of genetic and epigenetic diversities for potential utilization in rice genetic improvements. Public Library of Science 2015-07-24 /pmc/articles/PMC4514751/ /pubmed/26208215 http://dx.doi.org/10.1371/journal.pone.0132911 Text en © 2015 Wu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wu, Ying
Sun, Yue
Shen, Kun
Sun, Shuai
Wang, Jie
Jiang, Tingting
Cao, Shuai
Josiah, Samuel Manthi
Pang, Jinsong
Lin, Xiuyun
Liu, Bao
Immediate Genetic and Epigenetic Changes in F1 Hybrids Parented by Species with Divergent Genomes in the Rice Genus (Oryza)
title Immediate Genetic and Epigenetic Changes in F1 Hybrids Parented by Species with Divergent Genomes in the Rice Genus (Oryza)
title_full Immediate Genetic and Epigenetic Changes in F1 Hybrids Parented by Species with Divergent Genomes in the Rice Genus (Oryza)
title_fullStr Immediate Genetic and Epigenetic Changes in F1 Hybrids Parented by Species with Divergent Genomes in the Rice Genus (Oryza)
title_full_unstemmed Immediate Genetic and Epigenetic Changes in F1 Hybrids Parented by Species with Divergent Genomes in the Rice Genus (Oryza)
title_short Immediate Genetic and Epigenetic Changes in F1 Hybrids Parented by Species with Divergent Genomes in the Rice Genus (Oryza)
title_sort immediate genetic and epigenetic changes in f1 hybrids parented by species with divergent genomes in the rice genus (oryza)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4514751/
https://www.ncbi.nlm.nih.gov/pubmed/26208215
http://dx.doi.org/10.1371/journal.pone.0132911
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