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A chromosome-level genome assembly of rugged rose (Rosa rugosa) provides insights into its evolution, ecology, and floral characteristics

Rosa rugosa, commonly known as rugged rose, is a perennial ornamental shrub. It produces beautiful flowers with a mild fragrance and colorful seed pods. Unlike many other cultivated roses, R. rugosa adapts to a wide range of habitat types and harsh environmental conditions such as salinity, alkaline...

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Autores principales: Chen, Fei, Su, Liyao, Hu, Shuaiya, Xue, Jia-Yu, Liu, Hui, Liu, Guanhua, Jiang, Yifan, Du, Jianke, Qiao, Yushan, Fan, Yannan, Liu, Huan, Yang, Qi, Lu, Wenjie, Shao, Zhu-Qing, Zhang, Jian, Zhang, Liangsheng, Chen, Feng, Cheng, Zong-Ming (Max)
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8213826/
https://www.ncbi.nlm.nih.gov/pubmed/34145222
http://dx.doi.org/10.1038/s41438-021-00594-z
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author Chen, Fei
Su, Liyao
Hu, Shuaiya
Xue, Jia-Yu
Liu, Hui
Liu, Guanhua
Jiang, Yifan
Du, Jianke
Qiao, Yushan
Fan, Yannan
Liu, Huan
Yang, Qi
Lu, Wenjie
Shao, Zhu-Qing
Zhang, Jian
Zhang, Liangsheng
Chen, Feng
Cheng, Zong-Ming (Max)
author_facet Chen, Fei
Su, Liyao
Hu, Shuaiya
Xue, Jia-Yu
Liu, Hui
Liu, Guanhua
Jiang, Yifan
Du, Jianke
Qiao, Yushan
Fan, Yannan
Liu, Huan
Yang, Qi
Lu, Wenjie
Shao, Zhu-Qing
Zhang, Jian
Zhang, Liangsheng
Chen, Feng
Cheng, Zong-Ming (Max)
author_sort Chen, Fei
collection PubMed
description Rosa rugosa, commonly known as rugged rose, is a perennial ornamental shrub. It produces beautiful flowers with a mild fragrance and colorful seed pods. Unlike many other cultivated roses, R. rugosa adapts to a wide range of habitat types and harsh environmental conditions such as salinity, alkaline, shade, drought, high humidity, and frigid temperatures. Here, we produced and analyzed a high-quality genome sequence for R. rugosa to understand its ecology, floral characteristics and evolution. PacBio HiFi reads were initially used to construct the draft genome of R. rugosa, and then Hi-C sequencing was applied to assemble the contigs into 7 chromosomes. We obtained a 382.6 Mb genome encoding 39,704 protein-coding genes. The genome of R. rugosa appears to be conserved with no additional whole-genome duplication after the gamma whole-genome triplication (WGT), which occurred ~100 million years ago in the ancestor of core eudicots. Based on a comparative analysis of the high-quality genome assembly of R. rugosa and other high-quality Rosaceae genomes, we found a unique large inverted segment in the Chinese rose R. chinensis and a retroposition in strawberry caused by post-WGT events. We also found that floral development- and stress response signaling-related gene modules were retained after the WGT. Two MADS-box genes involved in floral development and the stress-related transcription factors DREB2A-INTERACTING PROTEIN 2 (DRIP2) and PEPTIDE TRANSPORTER 3 (PTR3) were found to be positively selected in evolution, which may have contributed to the unique ability of this plant to adapt to harsh environments. In summary, the high-quality genome sequence of R. rugosa provides a map for genetic studies and molecular breeding of this plant and enables comparative genomic studies of Rosa in the near future.
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spelling pubmed-82138262021-07-01 A chromosome-level genome assembly of rugged rose (Rosa rugosa) provides insights into its evolution, ecology, and floral characteristics Chen, Fei Su, Liyao Hu, Shuaiya Xue, Jia-Yu Liu, Hui Liu, Guanhua Jiang, Yifan Du, Jianke Qiao, Yushan Fan, Yannan Liu, Huan Yang, Qi Lu, Wenjie Shao, Zhu-Qing Zhang, Jian Zhang, Liangsheng Chen, Feng Cheng, Zong-Ming (Max) Hortic Res Article Rosa rugosa, commonly known as rugged rose, is a perennial ornamental shrub. It produces beautiful flowers with a mild fragrance and colorful seed pods. Unlike many other cultivated roses, R. rugosa adapts to a wide range of habitat types and harsh environmental conditions such as salinity, alkaline, shade, drought, high humidity, and frigid temperatures. Here, we produced and analyzed a high-quality genome sequence for R. rugosa to understand its ecology, floral characteristics and evolution. PacBio HiFi reads were initially used to construct the draft genome of R. rugosa, and then Hi-C sequencing was applied to assemble the contigs into 7 chromosomes. We obtained a 382.6 Mb genome encoding 39,704 protein-coding genes. The genome of R. rugosa appears to be conserved with no additional whole-genome duplication after the gamma whole-genome triplication (WGT), which occurred ~100 million years ago in the ancestor of core eudicots. Based on a comparative analysis of the high-quality genome assembly of R. rugosa and other high-quality Rosaceae genomes, we found a unique large inverted segment in the Chinese rose R. chinensis and a retroposition in strawberry caused by post-WGT events. We also found that floral development- and stress response signaling-related gene modules were retained after the WGT. Two MADS-box genes involved in floral development and the stress-related transcription factors DREB2A-INTERACTING PROTEIN 2 (DRIP2) and PEPTIDE TRANSPORTER 3 (PTR3) were found to be positively selected in evolution, which may have contributed to the unique ability of this plant to adapt to harsh environments. In summary, the high-quality genome sequence of R. rugosa provides a map for genetic studies and molecular breeding of this plant and enables comparative genomic studies of Rosa in the near future. Nature Publishing Group UK 2021-06-18 /pmc/articles/PMC8213826/ /pubmed/34145222 http://dx.doi.org/10.1038/s41438-021-00594-z Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Chen, Fei
Su, Liyao
Hu, Shuaiya
Xue, Jia-Yu
Liu, Hui
Liu, Guanhua
Jiang, Yifan
Du, Jianke
Qiao, Yushan
Fan, Yannan
Liu, Huan
Yang, Qi
Lu, Wenjie
Shao, Zhu-Qing
Zhang, Jian
Zhang, Liangsheng
Chen, Feng
Cheng, Zong-Ming (Max)
A chromosome-level genome assembly of rugged rose (Rosa rugosa) provides insights into its evolution, ecology, and floral characteristics
title A chromosome-level genome assembly of rugged rose (Rosa rugosa) provides insights into its evolution, ecology, and floral characteristics
title_full A chromosome-level genome assembly of rugged rose (Rosa rugosa) provides insights into its evolution, ecology, and floral characteristics
title_fullStr A chromosome-level genome assembly of rugged rose (Rosa rugosa) provides insights into its evolution, ecology, and floral characteristics
title_full_unstemmed A chromosome-level genome assembly of rugged rose (Rosa rugosa) provides insights into its evolution, ecology, and floral characteristics
title_short A chromosome-level genome assembly of rugged rose (Rosa rugosa) provides insights into its evolution, ecology, and floral characteristics
title_sort chromosome-level genome assembly of rugged rose (rosa rugosa) provides insights into its evolution, ecology, and floral characteristics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8213826/
https://www.ncbi.nlm.nih.gov/pubmed/34145222
http://dx.doi.org/10.1038/s41438-021-00594-z
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