The High-Quality Genome Sequencing and Analysis of Red Raspberry (Rubus idaeus L.)

Red raspberry (Rubus idaeus L.), which is an important nutritional source for human health, belongs to fruit crops of the Rosaceae family. Here, we used Pacific Biosciences single-molecule real-time (SMRT) sequencing and high-throughput chromosome conformation capture (Hi-C) sequencing technologies...

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Main Authors: Haopeng Zhang, Weihua Li, Guodong Li, Jiaren Liu, Hongsheng Chen, Chunpeng Zhang, Jinlu Zhao, Zhicheng Zhang, Qiang Lv, Yan Zhang, Guohui Yang, Ming Liu
Format: Article
Language:English
Published: Wiley 2024-01-01
Series:International Journal of Genomics
Online Access:http://dx.doi.org/10.1155/2024/9271183
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author Haopeng Zhang
Weihua Li
Guodong Li
Jiaren Liu
Hongsheng Chen
Chunpeng Zhang
Jinlu Zhao
Zhicheng Zhang
Qiang Lv
Yan Zhang
Guohui Yang
Ming Liu
author_facet Haopeng Zhang
Weihua Li
Guodong Li
Jiaren Liu
Hongsheng Chen
Chunpeng Zhang
Jinlu Zhao
Zhicheng Zhang
Qiang Lv
Yan Zhang
Guohui Yang
Ming Liu
author_sort Haopeng Zhang
collection DOAJ
description Red raspberry (Rubus idaeus L.), which is an important nutritional source for human health, belongs to fruit crops of the Rosaceae family. Here, we used Pacific Biosciences single-molecule real-time (SMRT) sequencing and high-throughput chromosome conformation capture (Hi-C) sequencing technologies to assemble genomes and reported a high-quality Rubus idaeus L. (DNS-1) genome with 321.29 Mb assembled into seven chromosomes. The LAI score of the DNS-1 genome assembly was 21.32, belonging to gold quality. Approximately 52.3% of the assembly sequences were annotated as repetitive sequences, and 24.15% were composed of long terminal repeat elements. A total of 29,814 protein-coding genes and 2474 pseudogenes were predicted in DNS-1. We characterized the complete genomes of DNS-1 and compared them to those of seven other species. We found that 652 gene families were unique to DNS-1 and they were shaped from an ancestor. There were 1000 and 5193 gene families that expanded and contracted in the DNS-1 genome. The Rubus idaeus L. genome can be used to understand the structure and evolution of Rosaceae genomes and can be developed to identify genes controlling important traits and improve breeding work.
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spelling doaj-art-9c4cbc53ee3249038294cee9287301c42025-08-20T02:51:27ZengWileyInternational Journal of Genomics2314-43782024-01-01202410.1155/2024/9271183The High-Quality Genome Sequencing and Analysis of Red Raspberry (Rubus idaeus L.)Haopeng Zhang0Weihua Li1Guodong Li2Jiaren Liu3Hongsheng Chen4Chunpeng Zhang5Jinlu Zhao6Zhicheng Zhang7Qiang Lv8Yan Zhang9Guohui Yang10Ming Liu11Department of Oncological SurgeryDepartment of Medical ImagingDepartment of General Surgery & Bio-Bank of General SurgeryDepartment of Clinical LaboratoryDepartment of General Surgery & Bio-Bank of General SurgeryDepartment of General Surgery & Bio-Bank of General SurgeryDepartment of General Surgery & Bio-Bank of General SurgeryDepartment of General Surgery & Bio-Bank of General SurgeryDepartment of General Surgery & Bio-Bank of General SurgeryComputational Biology Research CenterCollege of Horticulture and LandscapeDepartment of General Surgery & Bio-Bank of General SurgeryRed raspberry (Rubus idaeus L.), which is an important nutritional source for human health, belongs to fruit crops of the Rosaceae family. Here, we used Pacific Biosciences single-molecule real-time (SMRT) sequencing and high-throughput chromosome conformation capture (Hi-C) sequencing technologies to assemble genomes and reported a high-quality Rubus idaeus L. (DNS-1) genome with 321.29 Mb assembled into seven chromosomes. The LAI score of the DNS-1 genome assembly was 21.32, belonging to gold quality. Approximately 52.3% of the assembly sequences were annotated as repetitive sequences, and 24.15% were composed of long terminal repeat elements. A total of 29,814 protein-coding genes and 2474 pseudogenes were predicted in DNS-1. We characterized the complete genomes of DNS-1 and compared them to those of seven other species. We found that 652 gene families were unique to DNS-1 and they were shaped from an ancestor. There were 1000 and 5193 gene families that expanded and contracted in the DNS-1 genome. The Rubus idaeus L. genome can be used to understand the structure and evolution of Rosaceae genomes and can be developed to identify genes controlling important traits and improve breeding work.http://dx.doi.org/10.1155/2024/9271183
spellingShingle Haopeng Zhang
Weihua Li
Guodong Li
Jiaren Liu
Hongsheng Chen
Chunpeng Zhang
Jinlu Zhao
Zhicheng Zhang
Qiang Lv
Yan Zhang
Guohui Yang
Ming Liu
The High-Quality Genome Sequencing and Analysis of Red Raspberry (Rubus idaeus L.)
International Journal of Genomics
title The High-Quality Genome Sequencing and Analysis of Red Raspberry (Rubus idaeus L.)
title_full The High-Quality Genome Sequencing and Analysis of Red Raspberry (Rubus idaeus L.)
title_fullStr The High-Quality Genome Sequencing and Analysis of Red Raspberry (Rubus idaeus L.)
title_full_unstemmed The High-Quality Genome Sequencing and Analysis of Red Raspberry (Rubus idaeus L.)
title_short The High-Quality Genome Sequencing and Analysis of Red Raspberry (Rubus idaeus L.)
title_sort high quality genome sequencing and analysis of red raspberry rubus idaeus l
url http://dx.doi.org/10.1155/2024/9271183
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