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Genome-Wide Duplication of Allotetraploid Brassica napus Produces Novel Characteristics and Extensive Ploidy Variation in Self-Pollinated Progeny
Whole genome duplications (WGDs) have played a major role in angiosperm species evolution. Polyploid plants have undergone multiple cycles of ancient WGD events during their evolutionary history. However, little attention has been paid to the additional WGD of the existing allopolyploids. In this st...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Genetics Society of America
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7534442/ https://www.ncbi.nlm.nih.gov/pubmed/32753368 http://dx.doi.org/10.1534/g3.120.401493 |
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author | Yin, Liqin Zhu, Zhendong Luo, Xuan Huang, Liangjun Li, Yu Mason, Annaliese S. Yang, Jin Ge, Xianhong Long, Yan Wang, Jisheng Zou, Qiong Tao, Lanrong Kang, Zeming Tang, Rong Wang, Maolin Fu, Shaohong |
author_facet | Yin, Liqin Zhu, Zhendong Luo, Xuan Huang, Liangjun Li, Yu Mason, Annaliese S. Yang, Jin Ge, Xianhong Long, Yan Wang, Jisheng Zou, Qiong Tao, Lanrong Kang, Zeming Tang, Rong Wang, Maolin Fu, Shaohong |
author_sort | Yin, Liqin |
collection | PubMed |
description | Whole genome duplications (WGDs) have played a major role in angiosperm species evolution. Polyploid plants have undergone multiple cycles of ancient WGD events during their evolutionary history. However, little attention has been paid to the additional WGD of the existing allopolyploids. In this study, we explored the influences of additional WGD on the allopolyploid Brassica napus. Compared to tetraploid B. napus, octoploid B. napus (AAAACCCC, 2n = 8x =76) showed significant differences in phenotype, reproductive ability and the ploidy of self-pollinated progeny. Genome duplication also altered a key reproductive organ feature in B. napus, that is, increased the number of pollen apertures. Unlike autopolyploids produced from the diploid Brassica species, the octoploid B. napus produced from allotetraploid B. napus had a relatively stable meiotic process, high pollen viability and moderate fertility under self-pollination conditions, indicating that sub-genomic interactions may be important for the successful establishment of higher-order polyploids. Doubling the genome of B. napus provided us with an opportunity to gain insight into the flexibility of the Brassica genomes. The genome size of self-pollinated progeny of octoploid B. napus varied greatly, and was accompanied by extensive genomic instability, such as aneuploidy, mixed-ploidy and mitotic abnormality. The octoploid B. napus could go through any of genome reduction, equilibrium or expansion in the short-term, thus providing a novel karyotype library for the Brassica genus. Our results reveal the short-term evolutionary consequences of recurrent polyploidization events, and help to deepen our understanding of polyploid plant evolution. |
format | Online Article Text |
id | pubmed-7534442 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Genetics Society of America |
record_format | MEDLINE/PubMed |
spelling | pubmed-75344422020-10-13 Genome-Wide Duplication of Allotetraploid Brassica napus Produces Novel Characteristics and Extensive Ploidy Variation in Self-Pollinated Progeny Yin, Liqin Zhu, Zhendong Luo, Xuan Huang, Liangjun Li, Yu Mason, Annaliese S. Yang, Jin Ge, Xianhong Long, Yan Wang, Jisheng Zou, Qiong Tao, Lanrong Kang, Zeming Tang, Rong Wang, Maolin Fu, Shaohong G3 (Bethesda) Investigations Whole genome duplications (WGDs) have played a major role in angiosperm species evolution. Polyploid plants have undergone multiple cycles of ancient WGD events during their evolutionary history. However, little attention has been paid to the additional WGD of the existing allopolyploids. In this study, we explored the influences of additional WGD on the allopolyploid Brassica napus. Compared to tetraploid B. napus, octoploid B. napus (AAAACCCC, 2n = 8x =76) showed significant differences in phenotype, reproductive ability and the ploidy of self-pollinated progeny. Genome duplication also altered a key reproductive organ feature in B. napus, that is, increased the number of pollen apertures. Unlike autopolyploids produced from the diploid Brassica species, the octoploid B. napus produced from allotetraploid B. napus had a relatively stable meiotic process, high pollen viability and moderate fertility under self-pollination conditions, indicating that sub-genomic interactions may be important for the successful establishment of higher-order polyploids. Doubling the genome of B. napus provided us with an opportunity to gain insight into the flexibility of the Brassica genomes. The genome size of self-pollinated progeny of octoploid B. napus varied greatly, and was accompanied by extensive genomic instability, such as aneuploidy, mixed-ploidy and mitotic abnormality. The octoploid B. napus could go through any of genome reduction, equilibrium or expansion in the short-term, thus providing a novel karyotype library for the Brassica genus. Our results reveal the short-term evolutionary consequences of recurrent polyploidization events, and help to deepen our understanding of polyploid plant evolution. Genetics Society of America 2020-08-08 /pmc/articles/PMC7534442/ /pubmed/32753368 http://dx.doi.org/10.1534/g3.120.401493 Text en Copyright © 2020 Yin et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Investigations Yin, Liqin Zhu, Zhendong Luo, Xuan Huang, Liangjun Li, Yu Mason, Annaliese S. Yang, Jin Ge, Xianhong Long, Yan Wang, Jisheng Zou, Qiong Tao, Lanrong Kang, Zeming Tang, Rong Wang, Maolin Fu, Shaohong Genome-Wide Duplication of Allotetraploid Brassica napus Produces Novel Characteristics and Extensive Ploidy Variation in Self-Pollinated Progeny |
title | Genome-Wide Duplication of Allotetraploid Brassica napus Produces Novel Characteristics and Extensive Ploidy Variation in Self-Pollinated Progeny |
title_full | Genome-Wide Duplication of Allotetraploid Brassica napus Produces Novel Characteristics and Extensive Ploidy Variation in Self-Pollinated Progeny |
title_fullStr | Genome-Wide Duplication of Allotetraploid Brassica napus Produces Novel Characteristics and Extensive Ploidy Variation in Self-Pollinated Progeny |
title_full_unstemmed | Genome-Wide Duplication of Allotetraploid Brassica napus Produces Novel Characteristics and Extensive Ploidy Variation in Self-Pollinated Progeny |
title_short | Genome-Wide Duplication of Allotetraploid Brassica napus Produces Novel Characteristics and Extensive Ploidy Variation in Self-Pollinated Progeny |
title_sort | genome-wide duplication of allotetraploid brassica napus produces novel characteristics and extensive ploidy variation in self-pollinated progeny |
topic | Investigations |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7534442/ https://www.ncbi.nlm.nih.gov/pubmed/32753368 http://dx.doi.org/10.1534/g3.120.401493 |
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