Literature DB >> 32383147

Comparative transcriptomic analysis reveals mechanisms of divergence in osmotic regulation of the turbot Scophthalmus maximus.

Wenxiao Cui1,2,3, Aijun Ma4,5, Zhihui Huang2,3, Xinan Wang2,3, Zhifeng Liu2,3, Dandan Xia2,3, Shuangshuang Yang2,3, Tingting Zhao2,3.   

Abstract

The turbot Scophthalmus maximus has evolved extensive physiological ability to adapt to multiple environmental salinities. The morphological changes of the kidney indicated the adaptability difference and similarity of turbot to salinity stress. Identify transcriptome-wide differences between low-salinity seawater (LSW, salinity 5)- and high-salinity seawater (HSW, salinity 50)-acclimated kidneys of turbot to decipher the osmotic regulation mechanism. We identified 688 differentially expressed genes (DEGs) in the LSW-acclimated kidneys and 2441 DEGs in the HSW-acclimated kidneys of turbot compared with seawater-acclimated kidneys, respectively. We investigated three patterns of gene regulation to salinity stress that involved in ion channels and transporters, functions of calcium regulation, organic osmolytes, energy demand, cell cycle regulation, and cell protection. Additionally, protein-protein interaction (PPI) analysis of DEGs suggested the presence of a frequent functional interaction pattern and that crucial genes in the PPI network are involved in hyper-osmotic regulation. Based on the analysis of comparative transcriptome data and related literature reports, we conclude that the mechanisms responsible for osmotic regulation and its divergence in turbot are related to various genes that are involved in canonical physiological functions. These findings provide insight into the divergence in osmoregulation of turbot and valuable information about osmoregulation mechanisms that will benefit other studies in this field.

Entities:  

Keywords:  Kidneys; Osmoregulation mechanisms; Protein-protein interaction analysis; Scophthalmus maximus; Transcriptomic analysis

Mesh:

Substances:

Year:  2020        PMID: 32383147     DOI: 10.1007/s10695-020-00808-6

Source DB:  PubMed          Journal:  Fish Physiol Biochem        ISSN: 0920-1742            Impact factor:   2.794


  28 in total

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Authors:  Ken M Jeffries; Richard E Connon; Christine E Verhille; Theresa F Dabruzzi; Monica T Britton; Blythe P Durbin-Johnson; Nann A Fangue
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  2 in total

1.  The time course of molecular acclimation to seawater in a euryhaline fish.

Authors:  Lucrezia C Bonzi; Alison A Monroe; Robert Lehmann; Michael L Berumen; Timothy Ravasi; Celia Schunter
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2.  Genome-Wide Analysis of Alternative Splicing (AS) Mechanism Provides Insights into Salinity Adaptation in the Livers of Three Euryhaline Teleosts, including Scophthalmus maximus, Cynoglossus semilaevis and Oncorhynchus mykiss.

Authors:  Yuan Tian; Qinfeng Gao; Shuanglin Dong; Yangen Zhou; Han Yu; Dazhi Liu; Wenzhao Yang
Journal:  Biology (Basel)       Date:  2022-01-30
  2 in total

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