Improved high-quality reference genome of red drum facilitates the processes of resistance-related gene exploration

Sciaenops ocellatus is among the most important artificially introduced farmed fish across 11 countries and regions. However, the frequent occurrence of extreme weather events and breeding escapes have placed great pressure on local marine biodiversity and ecosystems. We reported the de novo assembl...

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Published in:Scientific Data
Main Authors: Xiao, Yongshuang, Liu, Jing, Wei, Jiehong, Xiao, Zhizhong, Li, Jun, Ma, Yuting
Format: Report
Language:English
Published: NATURE PORTFOLIO 2023
Subjects:
Online Access:http://ir.qdio.ac.cn/handle/337002/184003
https://doi.org/10.1038/s41597-023-02699-7
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record_format openpolar
spelling ftchinacasciocas:oai:ir.qdio.ac.cn:337002/184003 2024-04-28T08:37:02+00:00 Improved high-quality reference genome of red drum facilitates the processes of resistance-related gene exploration Xiao, Yongshuang Liu, Jing Wei, Jiehong Xiao, Zhizhong Li, Jun Ma, Yuting 2023-11-07 http://ir.qdio.ac.cn/handle/337002/184003 https://doi.org/10.1038/s41597-023-02699-7 英语 eng NATURE PORTFOLIO SCIENTIFIC DATA http://ir.qdio.ac.cn/handle/337002/184003 doi:10.1038/s41597-023-02699-7 Science & Technology - Other Topics Multidisciplinary Sciences DE-NOVO IDENTIFICATION SCIAENOPS-OCELLATUS READ ALIGNMENT TRANSCRIPTOME DATABASE PROGRAM GROWTH OSMOREGULATION EXPRESSION STRINGTIE 期刊论文 2023 ftchinacasciocas https://doi.org/10.1038/s41597-023-02699-7 2024-04-08T00:16:49Z Sciaenops ocellatus is among the most important artificially introduced farmed fish across 11 countries and regions. However, the frequent occurrence of extreme weather events and breeding escapes have placed great pressure on local marine biodiversity and ecosystems. We reported the de novo assembly and annotation with a contig N50 of 28.30 Mb using PacBio HiFi sequencing and Hi-C technologies, which resulted in a 283-fold increase in contig N50 length and improvement in continuity and quality in complex repetitive region for S. ocellatus compared to the previous version. In total, 257.36 Mb of repetitive sequences accounted for 35.48% of the genome, and 22,845 protein-coding genes associated with a BUSCO value of 98.32%, were identified by genome annotation. Moreover, 54 hub genes rapidly responding to hypoosmotic stress were identified by WGCNA. The high-quality chromosome-scale S. ocellatus genome and candidate resistance-related gene sets will not only provide a genomic basis for genetic improvement via molecular breeding, but will also lay an important foundation for investigating the molecular regulation of rapid responses to stress. Report Red drum Sciaenops ocellatus Institute of Oceanology, Chinese Academy of Sciences: IOCAS-IR Scientific Data 10 1
institution Open Polar
collection Institute of Oceanology, Chinese Academy of Sciences: IOCAS-IR
op_collection_id ftchinacasciocas
language English
topic Science & Technology - Other Topics
Multidisciplinary Sciences
DE-NOVO IDENTIFICATION
SCIAENOPS-OCELLATUS
READ ALIGNMENT
TRANSCRIPTOME
DATABASE
PROGRAM
GROWTH
OSMOREGULATION
EXPRESSION
STRINGTIE
spellingShingle Science & Technology - Other Topics
Multidisciplinary Sciences
DE-NOVO IDENTIFICATION
SCIAENOPS-OCELLATUS
READ ALIGNMENT
TRANSCRIPTOME
DATABASE
PROGRAM
GROWTH
OSMOREGULATION
EXPRESSION
STRINGTIE
Xiao, Yongshuang
Liu, Jing
Wei, Jiehong
Xiao, Zhizhong
Li, Jun
Ma, Yuting
Improved high-quality reference genome of red drum facilitates the processes of resistance-related gene exploration
topic_facet Science & Technology - Other Topics
Multidisciplinary Sciences
DE-NOVO IDENTIFICATION
SCIAENOPS-OCELLATUS
READ ALIGNMENT
TRANSCRIPTOME
DATABASE
PROGRAM
GROWTH
OSMOREGULATION
EXPRESSION
STRINGTIE
description Sciaenops ocellatus is among the most important artificially introduced farmed fish across 11 countries and regions. However, the frequent occurrence of extreme weather events and breeding escapes have placed great pressure on local marine biodiversity and ecosystems. We reported the de novo assembly and annotation with a contig N50 of 28.30 Mb using PacBio HiFi sequencing and Hi-C technologies, which resulted in a 283-fold increase in contig N50 length and improvement in continuity and quality in complex repetitive region for S. ocellatus compared to the previous version. In total, 257.36 Mb of repetitive sequences accounted for 35.48% of the genome, and 22,845 protein-coding genes associated with a BUSCO value of 98.32%, were identified by genome annotation. Moreover, 54 hub genes rapidly responding to hypoosmotic stress were identified by WGCNA. The high-quality chromosome-scale S. ocellatus genome and candidate resistance-related gene sets will not only provide a genomic basis for genetic improvement via molecular breeding, but will also lay an important foundation for investigating the molecular regulation of rapid responses to stress.
format Report
author Xiao, Yongshuang
Liu, Jing
Wei, Jiehong
Xiao, Zhizhong
Li, Jun
Ma, Yuting
author_facet Xiao, Yongshuang
Liu, Jing
Wei, Jiehong
Xiao, Zhizhong
Li, Jun
Ma, Yuting
author_sort Xiao, Yongshuang
title Improved high-quality reference genome of red drum facilitates the processes of resistance-related gene exploration
title_short Improved high-quality reference genome of red drum facilitates the processes of resistance-related gene exploration
title_full Improved high-quality reference genome of red drum facilitates the processes of resistance-related gene exploration
title_fullStr Improved high-quality reference genome of red drum facilitates the processes of resistance-related gene exploration
title_full_unstemmed Improved high-quality reference genome of red drum facilitates the processes of resistance-related gene exploration
title_sort improved high-quality reference genome of red drum facilitates the processes of resistance-related gene exploration
publisher NATURE PORTFOLIO
publishDate 2023
url http://ir.qdio.ac.cn/handle/337002/184003
https://doi.org/10.1038/s41597-023-02699-7
genre Red drum
Sciaenops ocellatus
genre_facet Red drum
Sciaenops ocellatus
op_relation SCIENTIFIC DATA
http://ir.qdio.ac.cn/handle/337002/184003
doi:10.1038/s41597-023-02699-7
op_doi https://doi.org/10.1038/s41597-023-02699-7
container_title Scientific Data
container_volume 10
container_issue 1
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