| Literature DB >> 33610026 |
Quanquan Cao1, Hongyu Wang1, Chengxu Fan2, Yiru Sun1, Jie Li1, Jinghao Cheng1, Peng Chu1, Shaowu Yin3.
Abstract
Environmental salinity not only affects the physiological processes such as osmoregulation and hormonal control, but also changes the immune system in fishes. Studies are limited in fish on the roles of the T cell receptor (TCR)-related genes in relation to changes in environmental salinity. A large group of salinity-challenged transcripts was obtained in gills of marbled eel (Anguilla marmorata). Moreover, bioinformatic ways were used to identify the enriched TCR pathway related genes which were significantly different expressed in fresh water (FW), brackish water (BW) and seawater (SW). Meanwhile, the RT-qPCR results were validated and consistent with the RNA-seq results. TCR a, TCR b, CD45, CD28, PI3K, LCK and LAT were up-regulated when the salinity increases in BW and SW, which connected with the related signaling pathways (Ras-MAPK and PKC pathway). CD4 and Zap70 were down-regulated when the salinity increases in BW and SW, which connected with the PLC pathway. The research offers a novel viewpoint to explore the immune pathways including the TCR pathway in fish based on transcriptome.Entities:
Keywords: Fish; Immunity; Salinity; T cell receptor; Transcriptome
Year: 2021 PMID: 33610026 DOI: 10.1016/j.cbd.2021.100815
Source DB: PubMed Journal: Comp Biochem Physiol Part D Genomics Proteomics ISSN: 1744-117X Impact factor: 2.674