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Genome sequence of Gossypium anomalum facilitates interspecific introgression breeding

Crop wild relatives are an important reservoir of natural biodiversity. However, incorporating wild genetic diversity into breeding programs is often hampered by reproductive barriers and a lack of accurate genomic information. We assembled a high-quality, accurately centromere-anchored genome of Go...

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Autores principales: Xu, Zhenzhen, Chen, Jiedan, Meng, Shan, Xu, Peng, Zhai, Caijiao, Huang, Fang, Guo, Qi, Zhao, Liang, Quan, Yonggang, Shangguan, Yixin, Meng, Zhuang, Wen, Tian, Zhang, Ya, Zhang, Xianggui, Zhao, Jun, Xu, Jianwen, Liu, Jianguang, Gao, Jin, Ni, Wanchao, Chen, Xianglong, Ji, Wei, Wang, Nanyi, Lu, Xiaoxi, Wang, Shihong, Wang, Kai, Zhang, Tianzhen, Shen, Xinlian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9483115/
https://www.ncbi.nlm.nih.gov/pubmed/35733334
http://dx.doi.org/10.1016/j.xplc.2022.100350
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author Xu, Zhenzhen
Chen, Jiedan
Meng, Shan
Xu, Peng
Zhai, Caijiao
Huang, Fang
Guo, Qi
Zhao, Liang
Quan, Yonggang
Shangguan, Yixin
Meng, Zhuang
Wen, Tian
Zhang, Ya
Zhang, Xianggui
Zhao, Jun
Xu, Jianwen
Liu, Jianguang
Gao, Jin
Ni, Wanchao
Chen, Xianglong
Ji, Wei
Wang, Nanyi
Lu, Xiaoxi
Wang, Shihong
Wang, Kai
Zhang, Tianzhen
Shen, Xinlian
author_facet Xu, Zhenzhen
Chen, Jiedan
Meng, Shan
Xu, Peng
Zhai, Caijiao
Huang, Fang
Guo, Qi
Zhao, Liang
Quan, Yonggang
Shangguan, Yixin
Meng, Zhuang
Wen, Tian
Zhang, Ya
Zhang, Xianggui
Zhao, Jun
Xu, Jianwen
Liu, Jianguang
Gao, Jin
Ni, Wanchao
Chen, Xianglong
Ji, Wei
Wang, Nanyi
Lu, Xiaoxi
Wang, Shihong
Wang, Kai
Zhang, Tianzhen
Shen, Xinlian
author_sort Xu, Zhenzhen
collection PubMed
description Crop wild relatives are an important reservoir of natural biodiversity. However, incorporating wild genetic diversity into breeding programs is often hampered by reproductive barriers and a lack of accurate genomic information. We assembled a high-quality, accurately centromere-anchored genome of Gossypium anomalum, a stress-tolerant wild cotton species. We provided a strategy to discover and transfer agronomically valuable genes from wild diploid species to tetraploid cotton cultivars. With a (Gossypium hirsutum × G. anomalum)(2) hexaploid as a bridge parent, we developed a set of 74 diploid chromosome segment substitution lines (CSSLs) of the wild cotton species G. anomalum in the G. hirsutum background. This set of CSSLs included 70 homozygous substitutions and four heterozygous substitutions, and it collectively contained about 72.22% of the G. anomalum genome. Twenty-four quantitative trait loci associated with plant height, yield, and fiber qualities were detected on 15 substitution segments. Integrating the reference genome with agronomic trait evaluation of the CSSLs enabled location and cloning of two G. anomalum genes that encode peroxiredoxin and putative callose synthase 8, respectively, conferring drought tolerance and improving fiber strength. We have demonstrated the power of a high-quality wild-species reference genome for identifying agronomically valuable alleles to facilitate interspecific introgression breeding in crops.
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spelling pubmed-94831152022-09-20 Genome sequence of Gossypium anomalum facilitates interspecific introgression breeding Xu, Zhenzhen Chen, Jiedan Meng, Shan Xu, Peng Zhai, Caijiao Huang, Fang Guo, Qi Zhao, Liang Quan, Yonggang Shangguan, Yixin Meng, Zhuang Wen, Tian Zhang, Ya Zhang, Xianggui Zhao, Jun Xu, Jianwen Liu, Jianguang Gao, Jin Ni, Wanchao Chen, Xianglong Ji, Wei Wang, Nanyi Lu, Xiaoxi Wang, Shihong Wang, Kai Zhang, Tianzhen Shen, Xinlian Plant Commun Research Article Crop wild relatives are an important reservoir of natural biodiversity. However, incorporating wild genetic diversity into breeding programs is often hampered by reproductive barriers and a lack of accurate genomic information. We assembled a high-quality, accurately centromere-anchored genome of Gossypium anomalum, a stress-tolerant wild cotton species. We provided a strategy to discover and transfer agronomically valuable genes from wild diploid species to tetraploid cotton cultivars. With a (Gossypium hirsutum × G. anomalum)(2) hexaploid as a bridge parent, we developed a set of 74 diploid chromosome segment substitution lines (CSSLs) of the wild cotton species G. anomalum in the G. hirsutum background. This set of CSSLs included 70 homozygous substitutions and four heterozygous substitutions, and it collectively contained about 72.22% of the G. anomalum genome. Twenty-four quantitative trait loci associated with plant height, yield, and fiber qualities were detected on 15 substitution segments. Integrating the reference genome with agronomic trait evaluation of the CSSLs enabled location and cloning of two G. anomalum genes that encode peroxiredoxin and putative callose synthase 8, respectively, conferring drought tolerance and improving fiber strength. We have demonstrated the power of a high-quality wild-species reference genome for identifying agronomically valuable alleles to facilitate interspecific introgression breeding in crops. Elsevier 2022-06-22 /pmc/articles/PMC9483115/ /pubmed/35733334 http://dx.doi.org/10.1016/j.xplc.2022.100350 Text en © 2022 The Authors 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
Xu, Zhenzhen
Chen, Jiedan
Meng, Shan
Xu, Peng
Zhai, Caijiao
Huang, Fang
Guo, Qi
Zhao, Liang
Quan, Yonggang
Shangguan, Yixin
Meng, Zhuang
Wen, Tian
Zhang, Ya
Zhang, Xianggui
Zhao, Jun
Xu, Jianwen
Liu, Jianguang
Gao, Jin
Ni, Wanchao
Chen, Xianglong
Ji, Wei
Wang, Nanyi
Lu, Xiaoxi
Wang, Shihong
Wang, Kai
Zhang, Tianzhen
Shen, Xinlian
Genome sequence of Gossypium anomalum facilitates interspecific introgression breeding
title Genome sequence of Gossypium anomalum facilitates interspecific introgression breeding
title_full Genome sequence of Gossypium anomalum facilitates interspecific introgression breeding
title_fullStr Genome sequence of Gossypium anomalum facilitates interspecific introgression breeding
title_full_unstemmed Genome sequence of Gossypium anomalum facilitates interspecific introgression breeding
title_short Genome sequence of Gossypium anomalum facilitates interspecific introgression breeding
title_sort genome sequence of gossypium anomalum facilitates interspecific introgression breeding
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9483115/
https://www.ncbi.nlm.nih.gov/pubmed/35733334
http://dx.doi.org/10.1016/j.xplc.2022.100350
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