Cargando…
The genome of the golden apple snail Pomacea canaliculata provides insight into stress tolerance and invasive adaptation
BACKGROUND: The golden apple snail (Pomacea canaliculata) is a freshwater snail listed among the top 100 worst invasive species worldwide and a noted agricultural and quarantine pest that causes great economic losses. It is characterized by fast growth, strong stress tolerance, a high reproduction r...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6129957/ https://www.ncbi.nlm.nih.gov/pubmed/30107526 http://dx.doi.org/10.1093/gigascience/giy101 |
_version_ | 1783353856742129664 |
---|---|
author | Liu, Conghui Zhang, Yan Ren, Yuwei Wang, Hengchao Li, Shuqu Jiang, Fan Yin, Lijuan Qiao, Xi Zhang, Guojie Qian, Wanqiang Liu, Bo Fan, Wei |
author_facet | Liu, Conghui Zhang, Yan Ren, Yuwei Wang, Hengchao Li, Shuqu Jiang, Fan Yin, Lijuan Qiao, Xi Zhang, Guojie Qian, Wanqiang Liu, Bo Fan, Wei |
author_sort | Liu, Conghui |
collection | PubMed |
description | BACKGROUND: The golden apple snail (Pomacea canaliculata) is a freshwater snail listed among the top 100 worst invasive species worldwide and a noted agricultural and quarantine pest that causes great economic losses. It is characterized by fast growth, strong stress tolerance, a high reproduction rate, and adaptation to a broad range of environments. RESULTS: Here, we used long-read sequencing to produce a 440-Mb high-quality, chromosome-level assembly of the P. canaliculata genome. In total, 50 Mb (11.4%) repeat sequences and 21,533 gene models were identified in the genome. The major findings of this study include the recent explosion of DNA/hAT-Charlie transposable elements, the expansion of the P450 gene family, and the constitution of the cellular homeostasis system, which contributes to ecological plasticity in stress adaptation. In addition, the high transcriptional levels of perivitelline genes in the ovary and albumen gland promote the function of nutrient supply and defense ability in eggs. Furthermore, the gut metagenome also contains diverse genes for food digestion and xenobiotic degradation. CONCLUSIONS: These findings collectively provide novel insights into the molecular mechanisms of the ecological plasticity and high invasiveness. |
format | Online Article Text |
id | pubmed-6129957 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-61299572018-09-13 The genome of the golden apple snail Pomacea canaliculata provides insight into stress tolerance and invasive adaptation Liu, Conghui Zhang, Yan Ren, Yuwei Wang, Hengchao Li, Shuqu Jiang, Fan Yin, Lijuan Qiao, Xi Zhang, Guojie Qian, Wanqiang Liu, Bo Fan, Wei Gigascience Research BACKGROUND: The golden apple snail (Pomacea canaliculata) is a freshwater snail listed among the top 100 worst invasive species worldwide and a noted agricultural and quarantine pest that causes great economic losses. It is characterized by fast growth, strong stress tolerance, a high reproduction rate, and adaptation to a broad range of environments. RESULTS: Here, we used long-read sequencing to produce a 440-Mb high-quality, chromosome-level assembly of the P. canaliculata genome. In total, 50 Mb (11.4%) repeat sequences and 21,533 gene models were identified in the genome. The major findings of this study include the recent explosion of DNA/hAT-Charlie transposable elements, the expansion of the P450 gene family, and the constitution of the cellular homeostasis system, which contributes to ecological plasticity in stress adaptation. In addition, the high transcriptional levels of perivitelline genes in the ovary and albumen gland promote the function of nutrient supply and defense ability in eggs. Furthermore, the gut metagenome also contains diverse genes for food digestion and xenobiotic degradation. CONCLUSIONS: These findings collectively provide novel insights into the molecular mechanisms of the ecological plasticity and high invasiveness. Oxford University Press 2018-08-09 /pmc/articles/PMC6129957/ /pubmed/30107526 http://dx.doi.org/10.1093/gigascience/giy101 Text en © The Author(s) 2018. Published by Oxford University Press. 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Liu, Conghui Zhang, Yan Ren, Yuwei Wang, Hengchao Li, Shuqu Jiang, Fan Yin, Lijuan Qiao, Xi Zhang, Guojie Qian, Wanqiang Liu, Bo Fan, Wei The genome of the golden apple snail Pomacea canaliculata provides insight into stress tolerance and invasive adaptation |
title | The genome of the golden apple snail Pomacea canaliculata provides insight into stress tolerance and invasive adaptation |
title_full | The genome of the golden apple snail Pomacea canaliculata provides insight into stress tolerance and invasive adaptation |
title_fullStr | The genome of the golden apple snail Pomacea canaliculata provides insight into stress tolerance and invasive adaptation |
title_full_unstemmed | The genome of the golden apple snail Pomacea canaliculata provides insight into stress tolerance and invasive adaptation |
title_short | The genome of the golden apple snail Pomacea canaliculata provides insight into stress tolerance and invasive adaptation |
title_sort | genome of the golden apple snail pomacea canaliculata provides insight into stress tolerance and invasive adaptation |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6129957/ https://www.ncbi.nlm.nih.gov/pubmed/30107526 http://dx.doi.org/10.1093/gigascience/giy101 |
work_keys_str_mv | AT liuconghui thegenomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT zhangyan thegenomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT renyuwei thegenomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT wanghengchao thegenomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT lishuqu thegenomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT jiangfan thegenomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT yinlijuan thegenomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT qiaoxi thegenomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT zhangguojie thegenomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT qianwanqiang thegenomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT liubo thegenomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT fanwei thegenomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT liuconghui genomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT zhangyan genomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT renyuwei genomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT wanghengchao genomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT lishuqu genomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT jiangfan genomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT yinlijuan genomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT qiaoxi genomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT zhangguojie genomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT qianwanqiang genomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT liubo genomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation AT fanwei genomeofthegoldenapplesnailpomaceacanaliculataprovidesinsightintostresstoleranceandinvasiveadaptation |