Cargando…

Long-read genome assemblies reveal a cis-regulatory landscape associated with phenotypic divergence in two sister Siniperca fish species

Due to the difficulty in accurately identifying structural variants (SVs) across genomes, their impact on cis-regulatory divergence of closely related species, especially fish, remains to be explored. Recently identified broad H3K4me3 domains are essential for the regulation of genes involved in sev...

Descripción completa

Detalles Bibliográficos
Autores principales: Tu, Guang-Xian, Zhang, Xin-Shuang, Jiang, Rui-Run, Zhang, Long, Lai, Cheng-Jun, Yan, Zhu-Yue, Lv, Yan-Rong, Weng, Shao-Ping, Zhang, Li, He, Jian-Guo, Wang, Muhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Science Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10083227/
https://www.ncbi.nlm.nih.gov/pubmed/36785896
http://dx.doi.org/10.24272/j.issn.2095-8137.2022.462
_version_ 1785021460772814848
author Tu, Guang-Xian
Zhang, Xin-Shuang
Jiang, Rui-Run
Zhang, Long
Lai, Cheng-Jun
Yan, Zhu-Yue
Lv, Yan-Rong
Weng, Shao-Ping
Zhang, Li
He, Jian-Guo
Wang, Muhua
author_facet Tu, Guang-Xian
Zhang, Xin-Shuang
Jiang, Rui-Run
Zhang, Long
Lai, Cheng-Jun
Yan, Zhu-Yue
Lv, Yan-Rong
Weng, Shao-Ping
Zhang, Li
He, Jian-Guo
Wang, Muhua
author_sort Tu, Guang-Xian
collection PubMed
description Due to the difficulty in accurately identifying structural variants (SVs) across genomes, their impact on cis-regulatory divergence of closely related species, especially fish, remains to be explored. Recently identified broad H3K4me3 domains are essential for the regulation of genes involved in several biological processes. However, the role of broad H3K4me3 domains in phenotypic divergence remains poorly understood. Siniperca chuatsi and S. scherzeri are closely related but divergent in several phenotypic traits, making them an ideal model to study cis-regulatory evolution in sister species. Here, we generated chromosome-level genomes of S. chuatsi and S. scherzeri, with assembled genome sizes of 716.35 and 740.54 Mb, respectively. The evolutionary histories of S. chuatsi and S. scherzeri were studied by inferring dynamic changes in ancestral population sizes. To explore the genetic basis of adaptation in S. chuatsi and S. scherzeri, we performed gene family expansion and contraction analysis and identified positively selected genes (PSGs). To investigate the role of SVs in cis-regulatory divergence of closely related fish species, we identified high-quality SVs as well as divergent H3K27ac and H3K4me3 domains in the genomes of S. chuatsi and S. scherzeri. Integrated analysis revealed that cis-regulatory divergence caused by SVs played an essential role in phenotypic divergence between S. chuatsi and S. scherzeri. Additionally, divergent broad H3K4me3 domains were mostly associated with cancer-related genes in S. chuatsi and S. scherzeri and contributed to their phenotypic divergence.
format Online
Article
Text
id pubmed-10083227
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Science Press
record_format MEDLINE/PubMed
spelling pubmed-100832272023-04-11 Long-read genome assemblies reveal a cis-regulatory landscape associated with phenotypic divergence in two sister Siniperca fish species Tu, Guang-Xian Zhang, Xin-Shuang Jiang, Rui-Run Zhang, Long Lai, Cheng-Jun Yan, Zhu-Yue Lv, Yan-Rong Weng, Shao-Ping Zhang, Li He, Jian-Guo Wang, Muhua Zool Res Article Due to the difficulty in accurately identifying structural variants (SVs) across genomes, their impact on cis-regulatory divergence of closely related species, especially fish, remains to be explored. Recently identified broad H3K4me3 domains are essential for the regulation of genes involved in several biological processes. However, the role of broad H3K4me3 domains in phenotypic divergence remains poorly understood. Siniperca chuatsi and S. scherzeri are closely related but divergent in several phenotypic traits, making them an ideal model to study cis-regulatory evolution in sister species. Here, we generated chromosome-level genomes of S. chuatsi and S. scherzeri, with assembled genome sizes of 716.35 and 740.54 Mb, respectively. The evolutionary histories of S. chuatsi and S. scherzeri were studied by inferring dynamic changes in ancestral population sizes. To explore the genetic basis of adaptation in S. chuatsi and S. scherzeri, we performed gene family expansion and contraction analysis and identified positively selected genes (PSGs). To investigate the role of SVs in cis-regulatory divergence of closely related fish species, we identified high-quality SVs as well as divergent H3K27ac and H3K4me3 domains in the genomes of S. chuatsi and S. scherzeri. Integrated analysis revealed that cis-regulatory divergence caused by SVs played an essential role in phenotypic divergence between S. chuatsi and S. scherzeri. Additionally, divergent broad H3K4me3 domains were mostly associated with cancer-related genes in S. chuatsi and S. scherzeri and contributed to their phenotypic divergence. Science Press 2023-03-18 /pmc/articles/PMC10083227/ /pubmed/36785896 http://dx.doi.org/10.24272/j.issn.2095-8137.2022.462 Text en https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Tu, Guang-Xian
Zhang, Xin-Shuang
Jiang, Rui-Run
Zhang, Long
Lai, Cheng-Jun
Yan, Zhu-Yue
Lv, Yan-Rong
Weng, Shao-Ping
Zhang, Li
He, Jian-Guo
Wang, Muhua
Long-read genome assemblies reveal a cis-regulatory landscape associated with phenotypic divergence in two sister Siniperca fish species
title Long-read genome assemblies reveal a cis-regulatory landscape associated with phenotypic divergence in two sister Siniperca fish species
title_full Long-read genome assemblies reveal a cis-regulatory landscape associated with phenotypic divergence in two sister Siniperca fish species
title_fullStr Long-read genome assemblies reveal a cis-regulatory landscape associated with phenotypic divergence in two sister Siniperca fish species
title_full_unstemmed Long-read genome assemblies reveal a cis-regulatory landscape associated with phenotypic divergence in two sister Siniperca fish species
title_short Long-read genome assemblies reveal a cis-regulatory landscape associated with phenotypic divergence in two sister Siniperca fish species
title_sort long-read genome assemblies reveal a cis-regulatory landscape associated with phenotypic divergence in two sister siniperca fish species
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10083227/
https://www.ncbi.nlm.nih.gov/pubmed/36785896
http://dx.doi.org/10.24272/j.issn.2095-8137.2022.462
work_keys_str_mv AT tuguangxian longreadgenomeassembliesrevealacisregulatorylandscapeassociatedwithphenotypicdivergenceintwosistersinipercafishspecies
AT zhangxinshuang longreadgenomeassembliesrevealacisregulatorylandscapeassociatedwithphenotypicdivergenceintwosistersinipercafishspecies
AT jiangruirun longreadgenomeassembliesrevealacisregulatorylandscapeassociatedwithphenotypicdivergenceintwosistersinipercafishspecies
AT zhanglong longreadgenomeassembliesrevealacisregulatorylandscapeassociatedwithphenotypicdivergenceintwosistersinipercafishspecies
AT laichengjun longreadgenomeassembliesrevealacisregulatorylandscapeassociatedwithphenotypicdivergenceintwosistersinipercafishspecies
AT yanzhuyue longreadgenomeassembliesrevealacisregulatorylandscapeassociatedwithphenotypicdivergenceintwosistersinipercafishspecies
AT lvyanrong longreadgenomeassembliesrevealacisregulatorylandscapeassociatedwithphenotypicdivergenceintwosistersinipercafishspecies
AT wengshaoping longreadgenomeassembliesrevealacisregulatorylandscapeassociatedwithphenotypicdivergenceintwosistersinipercafishspecies
AT zhangli longreadgenomeassembliesrevealacisregulatorylandscapeassociatedwithphenotypicdivergenceintwosistersinipercafishspecies
AT hejianguo longreadgenomeassembliesrevealacisregulatorylandscapeassociatedwithphenotypicdivergenceintwosistersinipercafishspecies
AT wangmuhua longreadgenomeassembliesrevealacisregulatorylandscapeassociatedwithphenotypicdivergenceintwosistersinipercafishspecies