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核糖体图谱分析和 RNA 测序揭示了急性热应激下虹鳟鱼(Oncorhynchus mykiss)肝脏中的翻译和转录调控。

Ribosome Profiling and RNA Sequencing Reveal Translation and Transcription Regulation under Acute Heat Stress in Rainbow Trout (, , ) Liver.

机构信息

Department of College of Animal Science and Technology, Gansu Agricultural University, Lanzhou 730070, China.

出版信息

Int J Mol Sci. 2024 Aug 14;25(16):8848. doi: 10.3390/ijms25168848.

Abstract

Rainbow trout (, , ) is an important economic cold-water fish that is susceptible to heat stress. To date, the heat stress response in rainbow trout is more widely understood at the transcriptional level, while little research has been conducted at the translational level. To reveal the translational regulation of heat stress in rainbow trout, in this study, we performed a ribosome profiling assay of rainbow trout liver under normal and heat stress conditions. Comparative analysis of the RNA-seq data with the ribosome profiling data showed that the folding changes in gene expression at the transcriptional level are moderately correlated with those at the translational level. In total, 1213 genes were significantly altered at the translational level. However, only 32.8% of the genes were common between both levels, demonstrating that heat stress is coordinated across both transcriptional and translational levels. Moreover, 809 genes exhibited significant differences in translational efficiency (TE), with the TE of these genes being considerably affected by factors such as the GC content, coding sequence length, and upstream open reading frame (uORF) presence. In addition, 3468 potential uORFs in 2676 genes were identified, which can potentially affect the TE of the main open reading frames. In this study, Ribo-seq and RNA-seq were used for the first time to elucidate the coordinated regulation of transcription and translation in rainbow trout under heat stress. These findings are expected to contribute novel data and theoretical insights to the international literature on the thermal stress response in fish.

摘要

虹鳟(Oncorhynchus mykiss)是一种重要的经济冷水性鱼类,易受热应激的影响。迄今为止,虹鳟的热应激反应在转录水平上得到了更广泛的了解,而在翻译水平上的研究则较少。为了揭示虹鳟热应激的翻译调控机制,本研究在正常和热应激条件下对虹鳟肝脏进行了核糖体图谱分析。RNA-seq 数据与核糖体图谱数据的比较分析表明,基因表达在转录水平上的折叠变化与翻译水平上的变化中度相关。总共 1213 个基因在翻译水平上发生了显著改变。然而,只有 32.8%的基因在这两个水平上是共同的,这表明热应激在转录和翻译水平上是协调的。此外,809 个基因在翻译效率(TE)上表现出显著差异,这些基因的 TE 受到 GC 含量、编码序列长度和上游开放阅读框(uORF)存在等因素的显著影响。此外,在 2676 个基因中鉴定出了 3468 个潜在的 uORF,这些 uORF 可能会影响主要开放阅读框的 TE。在这项研究中,首次使用 Ribo-seq 和 RNA-seq 来阐明虹鳟在热应激下转录和翻译的协调调控。这些发现有望为鱼类热应激反应的国际文献提供新的数据和理论见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b789/11354268/8a461f5d7817/ijms-25-08848-g001.jpg

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