分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

Expression and Transcriptional Response of sirt1 in Yellow Catfish (Pelteobagrus fulvidraco) Under Acute Hypoxia Stress

Tinglan Ku, Xinyuan Shan, Kai Zhang

Journal:Animals

IF:3.2

DOI:10.3390/ani16111679

PMID:42278112

Published:2026-05-30

research field:分子生物学环境生理学基因表达鱼类遗传学水产养殖

Abstract

Simple SummaryYellow catfish (Pelteobagrus fulvidraco) is an economically important freshwater fish in Chinese aquaculture that is highly susceptible to hypoxia in culture water, which can lead to mass mortality. We first examined the expression levels of thesirt1gene across multiple tissues of yellow catfish and found that it was most abundantly expressed in the brain and intestine, then investigated its transcriptional response in the intestine during hypoxia. We found thatsirt1responds rapidly to hypoxic conditions and shows a dynamic transcriptional response associated with metabolic- and stress-related genes in fish. Whensirt1expression was experimentally suppressed, intestinal tissue damage was markedly aggravated. Conversely, treatment with resveratrol partially restored downstream gene expression and alleviated tissue injury. These findings advance our understanding of how fish respond to hypoxic stress at the transcriptional level and may provide a basis for further investigation into hypoxia adaptation in aquaculture.Hypoxia is a common stressor in aquaculture and severely compromises the physiological health of fish. The present study investigated the expression pattern and transcriptional response of thesirt1gene (sirtuin1) in yellow catfish (Pelteobagrus fulvidraco) under acute hypoxia stress. Sequence analysis of the yellow catfishsirt1gene indicated that the Sirt1 protein exhibits a high degree of sequence conservation among vertebrates. Tissue distribution analysis under normoxic conditions revealed thatsirt1mRNA was most abundantly expressed in the brain and intestine of yellow catfish. Results from the hypoxia stress trial (dissolved oxygen 1.1 ± 0.2 mg/L) demonstrated thatsirt1was the most hypoxia-responsive member of thesirtfamily, being significantly upregulated approximately 4.5-fold at 12 h. Subsequent functional validation experiments showed thatsirt1expression was significantly decreased at 6 h of acute hypoxia; together with the marked upr

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