Cargando…
The sea cucumber genome provides insights into morphological evolution and visceral regeneration
Apart from sharing common ancestry with chordates, sea cucumbers exhibit a unique morphology and exceptional regenerative capacity. Here we present the complete genome sequence of an economically important sea cucumber, A. japonicus, generated using Illumina and PacBio platforms, to achieve an assem...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2017
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5638244/ https://www.ncbi.nlm.nih.gov/pubmed/29023486 http://dx.doi.org/10.1371/journal.pbio.2003790 |
_version_ | 1783270712314691584 |
---|---|
author | Zhang, Xiaojun Sun, Lina Yuan, Jianbo Sun, Yamin Gao, Yi Zhang, Libin Li, Shihao Dai, Hui Hamel, Jean-François Liu, Chengzhang Yu, Yang Liu, Shilin Lin, Wenchao Guo, Kaimin Jin, Songjun Xu, Peng Storey, Kenneth B. Huan, Pin Zhang, Tao Zhou, Yi Zhang, Jiquan Lin, Chenggang Li, Xiaoni Xing, Lili Huo, Da Sun, Mingzhe Wang, Lei Mercier, Annie Li, Fuhua Yang, Hongsheng Xiang, Jianhai |
author_facet | Zhang, Xiaojun Sun, Lina Yuan, Jianbo Sun, Yamin Gao, Yi Zhang, Libin Li, Shihao Dai, Hui Hamel, Jean-François Liu, Chengzhang Yu, Yang Liu, Shilin Lin, Wenchao Guo, Kaimin Jin, Songjun Xu, Peng Storey, Kenneth B. Huan, Pin Zhang, Tao Zhou, Yi Zhang, Jiquan Lin, Chenggang Li, Xiaoni Xing, Lili Huo, Da Sun, Mingzhe Wang, Lei Mercier, Annie Li, Fuhua Yang, Hongsheng Xiang, Jianhai |
author_sort | Zhang, Xiaojun |
collection | PubMed |
description | Apart from sharing common ancestry with chordates, sea cucumbers exhibit a unique morphology and exceptional regenerative capacity. Here we present the complete genome sequence of an economically important sea cucumber, A. japonicus, generated using Illumina and PacBio platforms, to achieve an assembly of approximately 805 Mb (contig N50 of 190 Kb and scaffold N50 of 486 Kb), with 30,350 protein-coding genes and high continuity. We used this resource to explore key genetic mechanisms behind the unique biological characters of sea cucumbers. Phylogenetic and comparative genomic analyses revealed the presence of marker genes associated with notochord and gill slits, suggesting that these chordate features were present in ancestral echinoderms. The unique shape and weak mineralization of the sea cucumber adult body were also preliminarily explained by the contraction of biomineralization genes. Genome, transcriptome, and proteome analyses of organ regrowth after induced evisceration provided insight into the molecular underpinnings of visceral regeneration, including a specific tandem-duplicated prostatic secretory protein of 94 amino acids (PSP94)-like gene family and a significantly expanded fibrinogen-related protein (FREP) gene family. This high-quality genome resource will provide a useful framework for future research into biological processes and evolution in deuterostomes, including remarkable regenerative abilities that could have medical applications. Moreover, the multiomics data will be of prime value for commercial sea cucumber breeding programs. |
format | Online Article Text |
id | pubmed-5638244 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-56382442017-10-20 The sea cucumber genome provides insights into morphological evolution and visceral regeneration Zhang, Xiaojun Sun, Lina Yuan, Jianbo Sun, Yamin Gao, Yi Zhang, Libin Li, Shihao Dai, Hui Hamel, Jean-François Liu, Chengzhang Yu, Yang Liu, Shilin Lin, Wenchao Guo, Kaimin Jin, Songjun Xu, Peng Storey, Kenneth B. Huan, Pin Zhang, Tao Zhou, Yi Zhang, Jiquan Lin, Chenggang Li, Xiaoni Xing, Lili Huo, Da Sun, Mingzhe Wang, Lei Mercier, Annie Li, Fuhua Yang, Hongsheng Xiang, Jianhai PLoS Biol Methods and Resources Apart from sharing common ancestry with chordates, sea cucumbers exhibit a unique morphology and exceptional regenerative capacity. Here we present the complete genome sequence of an economically important sea cucumber, A. japonicus, generated using Illumina and PacBio platforms, to achieve an assembly of approximately 805 Mb (contig N50 of 190 Kb and scaffold N50 of 486 Kb), with 30,350 protein-coding genes and high continuity. We used this resource to explore key genetic mechanisms behind the unique biological characters of sea cucumbers. Phylogenetic and comparative genomic analyses revealed the presence of marker genes associated with notochord and gill slits, suggesting that these chordate features were present in ancestral echinoderms. The unique shape and weak mineralization of the sea cucumber adult body were also preliminarily explained by the contraction of biomineralization genes. Genome, transcriptome, and proteome analyses of organ regrowth after induced evisceration provided insight into the molecular underpinnings of visceral regeneration, including a specific tandem-duplicated prostatic secretory protein of 94 amino acids (PSP94)-like gene family and a significantly expanded fibrinogen-related protein (FREP) gene family. This high-quality genome resource will provide a useful framework for future research into biological processes and evolution in deuterostomes, including remarkable regenerative abilities that could have medical applications. Moreover, the multiomics data will be of prime value for commercial sea cucumber breeding programs. Public Library of Science 2017-10-12 /pmc/articles/PMC5638244/ /pubmed/29023486 http://dx.doi.org/10.1371/journal.pbio.2003790 Text en © 2017 Zhang et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Methods and Resources Zhang, Xiaojun Sun, Lina Yuan, Jianbo Sun, Yamin Gao, Yi Zhang, Libin Li, Shihao Dai, Hui Hamel, Jean-François Liu, Chengzhang Yu, Yang Liu, Shilin Lin, Wenchao Guo, Kaimin Jin, Songjun Xu, Peng Storey, Kenneth B. Huan, Pin Zhang, Tao Zhou, Yi Zhang, Jiquan Lin, Chenggang Li, Xiaoni Xing, Lili Huo, Da Sun, Mingzhe Wang, Lei Mercier, Annie Li, Fuhua Yang, Hongsheng Xiang, Jianhai The sea cucumber genome provides insights into morphological evolution and visceral regeneration |
title | The sea cucumber genome provides insights into morphological evolution and visceral regeneration |
title_full | The sea cucumber genome provides insights into morphological evolution and visceral regeneration |
title_fullStr | The sea cucumber genome provides insights into morphological evolution and visceral regeneration |
title_full_unstemmed | The sea cucumber genome provides insights into morphological evolution and visceral regeneration |
title_short | The sea cucumber genome provides insights into morphological evolution and visceral regeneration |
title_sort | sea cucumber genome provides insights into morphological evolution and visceral regeneration |
topic | Methods and Resources |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5638244/ https://www.ncbi.nlm.nih.gov/pubmed/29023486 http://dx.doi.org/10.1371/journal.pbio.2003790 |
work_keys_str_mv | AT zhangxiaojun theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT sunlina theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT yuanjianbo theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT sunyamin theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT gaoyi theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT zhanglibin theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT lishihao theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT daihui theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT hameljeanfrancois theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT liuchengzhang theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT yuyang theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT liushilin theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT linwenchao theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT guokaimin theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT jinsongjun theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT xupeng theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT storeykennethb theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT huanpin theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT zhangtao theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT zhouyi theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT zhangjiquan theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT linchenggang theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT lixiaoni theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT xinglili theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT huoda theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT sunmingzhe theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT wanglei theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT mercierannie theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT lifuhua theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT yanghongsheng theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT xiangjianhai theseacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT zhangxiaojun seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT sunlina seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT yuanjianbo seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT sunyamin seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT gaoyi seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT zhanglibin seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT lishihao seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT daihui seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT hameljeanfrancois seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT liuchengzhang seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT yuyang seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT liushilin seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT linwenchao seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT guokaimin seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT jinsongjun seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT xupeng seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT storeykennethb seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT huanpin seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT zhangtao seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT zhouyi seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT zhangjiquan seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT linchenggang seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT lixiaoni seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT xinglili seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT huoda seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT sunmingzhe seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT wanglei seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT mercierannie seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT lifuhua seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT yanghongsheng seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration AT xiangjianhai seacucumbergenomeprovidesinsightsintomorphologicalevolutionandvisceralregeneration |