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Genome sequencing of Sitopsis species provides insights into their contribution to the B subgenome of bread wheat

Wheat (Triticum aestivum, BBAADD) is an allohexaploid species that originated from two polyploidization events. The progenitors of the A and D subgenomes have been identified as Triticum urartu and Aegilops tauschii, respectively. Current research suggests that Aegilops speltoides is the closest but...

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Autores principales: Yang, Yuxin, Cui, Licao, Lu, Zefu, Li, Guangrong, Yang, Zujun, Zhao, Guangyao, Kong, Chuizheng, Li, Danping, Chen, Yaoyu, Xie, Zhencheng, Chen, Zhongxu, Zhang, Lichao, Xia, Chuan, Liu, Xu, Jia, Jizeng, Kong, Xiuying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10363506/
https://www.ncbi.nlm.nih.gov/pubmed/36855304
http://dx.doi.org/10.1016/j.xplc.2023.100567
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author Yang, Yuxin
Cui, Licao
Lu, Zefu
Li, Guangrong
Yang, Zujun
Zhao, Guangyao
Kong, Chuizheng
Li, Danping
Chen, Yaoyu
Xie, Zhencheng
Chen, Zhongxu
Zhang, Lichao
Xia, Chuan
Liu, Xu
Jia, Jizeng
Kong, Xiuying
author_facet Yang, Yuxin
Cui, Licao
Lu, Zefu
Li, Guangrong
Yang, Zujun
Zhao, Guangyao
Kong, Chuizheng
Li, Danping
Chen, Yaoyu
Xie, Zhencheng
Chen, Zhongxu
Zhang, Lichao
Xia, Chuan
Liu, Xu
Jia, Jizeng
Kong, Xiuying
author_sort Yang, Yuxin
collection PubMed
description Wheat (Triticum aestivum, BBAADD) is an allohexaploid species that originated from two polyploidization events. The progenitors of the A and D subgenomes have been identified as Triticum urartu and Aegilops tauschii, respectively. Current research suggests that Aegilops speltoides is the closest but not the direct ancestor of the B subgenome. However, whether Ae. speltoides has contributed genomically to the wheat B subgenome and which chromosome regions are conserved between Ae. speltoides and the B subgenome remain unclear. Here, we assembled a high-quality reference genome for Ae. speltoides, resequenced 53 accessions from seven species (Aegilops bicornis, Aegilops longissima, Aegilops searsii, Aegilops sharonensis, Ae. speltoides, Aegilops mutica [syn. Amblyopyrum muticum], and Triticum dicoccoides) and revealed their genomic contributions to the wheat B subgenome. Our results showed that centromeric regions were particularly conserved between Aegilops and Triticum and revealed 0.17 Gb of conserved blocks between Ae. speltoides and the B subgenome. We classified five groups of conserved and non-conserved genes between Aegilops and Triticum, revealing their biological characteristics, differentiation in gene expression patterns, and collinear relationships between Ae. speltoides and the wheat B subgenome. We also identified gene families that expanded in Ae. speltoides during its evolution and 789 genes specific to Ae. speltoides. These genes can serve as genetic resources for improvement of adaptability to biotic and abiotic stress. The newly constructed reference genome and large-scale resequencing data for Sitopsis species will provide a valuable genomic resource for wheat genetic improvement and genomic studies.
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spelling pubmed-103635062023-07-25 Genome sequencing of Sitopsis species provides insights into their contribution to the B subgenome of bread wheat Yang, Yuxin Cui, Licao Lu, Zefu Li, Guangrong Yang, Zujun Zhao, Guangyao Kong, Chuizheng Li, Danping Chen, Yaoyu Xie, Zhencheng Chen, Zhongxu Zhang, Lichao Xia, Chuan Liu, Xu Jia, Jizeng Kong, Xiuying Plant Commun Research Article Wheat (Triticum aestivum, BBAADD) is an allohexaploid species that originated from two polyploidization events. The progenitors of the A and D subgenomes have been identified as Triticum urartu and Aegilops tauschii, respectively. Current research suggests that Aegilops speltoides is the closest but not the direct ancestor of the B subgenome. However, whether Ae. speltoides has contributed genomically to the wheat B subgenome and which chromosome regions are conserved between Ae. speltoides and the B subgenome remain unclear. Here, we assembled a high-quality reference genome for Ae. speltoides, resequenced 53 accessions from seven species (Aegilops bicornis, Aegilops longissima, Aegilops searsii, Aegilops sharonensis, Ae. speltoides, Aegilops mutica [syn. Amblyopyrum muticum], and Triticum dicoccoides) and revealed their genomic contributions to the wheat B subgenome. Our results showed that centromeric regions were particularly conserved between Aegilops and Triticum and revealed 0.17 Gb of conserved blocks between Ae. speltoides and the B subgenome. We classified five groups of conserved and non-conserved genes between Aegilops and Triticum, revealing their biological characteristics, differentiation in gene expression patterns, and collinear relationships between Ae. speltoides and the wheat B subgenome. We also identified gene families that expanded in Ae. speltoides during its evolution and 789 genes specific to Ae. speltoides. These genes can serve as genetic resources for improvement of adaptability to biotic and abiotic stress. The newly constructed reference genome and large-scale resequencing data for Sitopsis species will provide a valuable genomic resource for wheat genetic improvement and genomic studies. Elsevier 2023-02-28 /pmc/articles/PMC10363506/ /pubmed/36855304 http://dx.doi.org/10.1016/j.xplc.2023.100567 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Yang, Yuxin
Cui, Licao
Lu, Zefu
Li, Guangrong
Yang, Zujun
Zhao, Guangyao
Kong, Chuizheng
Li, Danping
Chen, Yaoyu
Xie, Zhencheng
Chen, Zhongxu
Zhang, Lichao
Xia, Chuan
Liu, Xu
Jia, Jizeng
Kong, Xiuying
Genome sequencing of Sitopsis species provides insights into their contribution to the B subgenome of bread wheat
title Genome sequencing of Sitopsis species provides insights into their contribution to the B subgenome of bread wheat
title_full Genome sequencing of Sitopsis species provides insights into their contribution to the B subgenome of bread wheat
title_fullStr Genome sequencing of Sitopsis species provides insights into their contribution to the B subgenome of bread wheat
title_full_unstemmed Genome sequencing of Sitopsis species provides insights into their contribution to the B subgenome of bread wheat
title_short Genome sequencing of Sitopsis species provides insights into their contribution to the B subgenome of bread wheat
title_sort genome sequencing of sitopsis species provides insights into their contribution to the b subgenome of bread wheat
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10363506/
https://www.ncbi.nlm.nih.gov/pubmed/36855304
http://dx.doi.org/10.1016/j.xplc.2023.100567
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