Murphy Taylor E, Rees Bernard B
Department of Biological Sciences, University of New Orleans, New Orleans, LA, United States.
Front Physiol. 2024 Oct 4;15:1496226. doi: 10.3389/fphys.2024.1496226. eCollection 2024.
Low dissolved oxygen (hypoxia) poses significant challenges to aquatic ecosystems, affecting the behavior, reproduction, and survival of aquatic organisms. Some fishes respond to hypoxia by changes in gene expression, which may be regulated by the hypoxia inducible factor (HIF) family of transcription factors. HIF abundance and activity depends upon the post-translational modification of the alpha protein subunit, although several studies indicate that mRNA abundance increases in tissues of fishes exposed to hypoxia. This study reviewed reports of laboratory exposures of adult ray-finned fishes to hypoxia and used generalized linear mixed effects models to examine the influence of gene, tissue sampled, and exposure conditions in explaining the diversity of responses seen in mRNA abundance. The frequency of hypoxia-induced increases in mRNA was poorly explained by gene, tissue, or the severity of the hypoxic exposure. Rather, the frequency of reported increases was strongly related to the extent to which studies adhered to guidelines for documenting quantitative real-time PCR methods: the frequency of hypoxia-induced increases in mRNA decreased sharply in studies with more thorough description of experimental design. Future research should (a) adhere to stringent reporting of experimental design, (b) address the relative paucity of data on and , and (c) determine levels of HIF alpha protein subunits. By following these recommendations, it is hoped that a more complete understanding will be gained of the role of the HIF family of transcription factors in the response of fish to hypoxia.
低溶解氧(缺氧)给水生生态系统带来了重大挑战,影响着水生生物的行为、繁殖和生存。一些鱼类通过基因表达的变化对缺氧做出反应,这可能受转录因子缺氧诱导因子(HIF)家族调控。HIF的丰度和活性取决于α蛋白亚基的翻译后修饰,尽管多项研究表明,暴露于缺氧环境中的鱼类组织中mRNA丰度会增加。本研究回顾了成年硬骨鱼在实验室中暴露于缺氧环境的报告,并使用广义线性混合效应模型来检验基因、采样组织和暴露条件对解释mRNA丰度中观察到的反应多样性的影响。缺氧诱导的mRNA增加频率很难用基因、组织或缺氧暴露的严重程度来解释。相反,报告的增加频率与研究遵循定量实时PCR方法记录指南的程度密切相关:在对实验设计描述更全面的研究中,缺氧诱导的mRNA增加频率急剧下降。未来的研究应该(a)严格报告实验设计,(b)解决关于[此处原文缺失相关内容]数据相对较少的问题,以及(c)确定HIFα蛋白亚基的水平。通过遵循这些建议,希望能更全面地了解转录因子HIF家族在鱼类对缺氧反应中的作用。