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Main Authors: Choi, Hyeongwoo, An, Yun Keun, Lee, Chan-Jun, Song, Chi-Une, Kim, Eun-Jeong, Lee, Carol Eunmi, Cho, Sung-Jin, Eyun, Seong-Il
Format: Artículo científico
Language:en
Published: Journal of hazardous materials 2025
Subjects:
Online Access:https://pubmed.ncbi.nlm.nih.gov/39616841/
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author Choi, Hyeongwoo
An, Yun Keun
Lee, Chan-Jun
Song, Chi-Une
Kim, Eun-Jeong
Lee, Carol Eunmi
Cho, Sung-Jin
Eyun, Seong-Il
author_facet Choi, Hyeongwoo
An, Yun Keun
Lee, Chan-Jun
Song, Chi-Une
Kim, Eun-Jeong
Lee, Carol Eunmi
Cho, Sung-Jin
Eyun, Seong-Il
Choi, Hyeongwoo
An, Yun Keun
Lee, Chan-Jun
Song, Chi-Une
Kim, Eun-Jeong
Lee, Carol Eunmi
Cho, Sung-Jin
Eyun, Seong-Il
collection PubMed - marine biology
contents Genome assembly, gene content, and plastic gene expression responses to salinity changes in the Brackishwater Clam (Corbicula japonica) from a dynamic estuarine environment. Choi, Hyeongwoo An, Yun Keun Lee, Chan-Jun Song, Chi-Une Kim, Eun-Jeong Lee, Carol Eunmi Cho, Sung-Jin Eyun, Seong-Il Animals Salinity Genome Estuaries Bivalvia Transcriptome Estuaries are dynamic transition zones between marine and freshwater environments, where salinity varies greatly on spatial and temporal scales. The temporal salinity fluctuations of these habitats require organisms to rapidly regulate ionic concentrations and osmotic pressure to survive in these dynamic conditions. Understanding the extent of plasticity of euryhaline animals is vital for predicting their responses and resilience to salinity change. We generated the first high-resolution genome and transcriptome sequences of C. japonica. In comparison with 11 other molluscan genomes, the C. japonica genome displayed striking expansions of putative neuron-related genes and gene families. The involvement of these genes in the glutamate/GABA-glutamine and glycine cycle suggests a possible contribution to the excitation of neuronal networks, particularly under high salinity conditions. This study contributes to our understanding of mechanisms underlying the rapid responses of estuarine species to changing conditions and raises many intriguing hypotheses and questions for future investigation.
format Artículo científico
id pubmed_39616841
institution PubMed
language en
publishDate 2025
publisher Journal of hazardous materials
record_format pubmed
spellingShingle Genome assembly, gene content, and plastic gene expression responses to salinity changes in the Brackishwater Clam (Corbicula japonica) from a dynamic estuarine environment.
Choi, Hyeongwoo
An, Yun Keun
Lee, Chan-Jun
Song, Chi-Une
Kim, Eun-Jeong
Lee, Carol Eunmi
Cho, Sung-Jin
Eyun, Seong-Il
Animals
Salinity
Genome
Estuaries
Bivalvia
Transcriptome
Genome assembly, gene content, and plastic gene expression responses to salinity changes in the Brackishwater Clam (Corbicula japonica) from a dynamic estuarine environment. Choi, Hyeongwoo An, Yun Keun Lee, Chan-Jun Song, Chi-Une Kim, Eun-Jeong Lee, Carol Eunmi Cho, Sung-Jin Eyun, Seong-Il Animals Salinity Genome Estuaries Bivalvia Transcriptome Estuaries are dynamic transition zones between marine and freshwater environments, where salinity varies greatly on spatial and temporal scales. The temporal salinity fluctuations of these habitats require organisms to rapidly regulate ionic concentrations and osmotic pressure to survive in these dynamic conditions. Understanding the extent of plasticity of euryhaline animals is vital for predicting their responses and resilience to salinity change. We generated the first high-resolution genome and transcriptome sequences of C. japonica. In comparison with 11 other molluscan genomes, the C. japonica genome displayed striking expansions of putative neuron-related genes and gene families. The involvement of these genes in the glutamate/GABA-glutamine and glycine cycle suggests a possible contribution to the excitation of neuronal networks, particularly under high salinity conditions. This study contributes to our understanding of mechanisms underlying the rapid responses of estuarine species to changing conditions and raises many intriguing hypotheses and questions for future investigation.
title Genome assembly, gene content, and plastic gene expression responses to salinity changes in the Brackishwater Clam (Corbicula japonica) from a dynamic estuarine environment.
topic Animals
Salinity
Genome
Estuaries
Bivalvia
Transcriptome
url https://pubmed.ncbi.nlm.nih.gov/39616841/