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Gene Expression Profile and Co-Expression Network of Pearl Gentian Grouper under Cold Stress by Integrating Illumina and PacBio Sequences. | LitMetric

AI Article Synopsis

  • The study investigates how pearl gentian grouper, a commercially important hybrid fish in Asia, responds to cold stress at various temperatures, as its cold tolerance is limited.
  • Researchers utilized advanced sequencing technologies to analyze the fish's liver transcriptome, identifying over 3,000 differentially expressed genes and several key gene modules associated with cold stress.
  • The findings highlight important biological pathways related to metabolism and stress response that can help enhance the fish's resilience to low temperatures, offering insights for aquaculture practices.

Article Abstract

Pearl gentian grouper ( ♀ × ♂) is a fish of high commercial value in the aquaculture industry in Asia. However, this hybrid fish is not cold-tolerant, and its molecular regulation mechanism underlying cold stress remains largely elusive. This study thus investigated the liver transcriptomic responses of pearl gentian grouper by comparing the gene expression of cold stress groups (20, 15, 12, and 12 °C for 6 h) with that of control group (25 °C) using PacBio SMRT-Seq and Illumina RNA-Seq technologies. In SMRT-Seq analysis, a total of 11,033 full-length transcripts were generated and used as reference sequences for further RNA-Seq analysis. In RNA-Seq analysis, 3271 differentially expressed genes (DEGs), two low-temperature specific modules (tan and blue modules), and two significantly expressed gene sets (profiles 0 and 19) were screened by differential expression analysis, weighted gene co-expression networks analysis (WGCNA), and short time-series expression miner (STEM), respectively. The intersection of the above analyses further revealed some key genes, such as PCK, ALDOB, FBP, G6pC, CPT1A, PPARα, SOCS3, PPP1CC, CYP2J, HMGCR, CDKN1B, and GADD45Bc. These genes were significantly enriched in carbohydrate metabolism, lipid metabolism, signal transduction, and endocrine system pathways. All these pathways were linked to biological functions relevant to cold adaptation, such as energy metabolism, stress-induced cell membrane changes, and transduction of stress signals. Taken together, our study explores an overall and complex regulation network of the functional genes in the liver of pearl gentian grouper, which could benefit the species in preventing damage caused by cold stress.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8230743PMC
http://dx.doi.org/10.3390/ani11061745DOI Listing

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