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Transcriptional Response to Acute Thermal Exposure in Juvenile Chinook Salmon Determined by RNAseq

机译:RNAseq确定的青少年奇努克鲑鱼对急性热暴露的转录响应。

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摘要

Thermal exposure is a serious and growing challenge facing fish species worldwide. Chinook salmon (Oncorhynchus tshawytscha) living in the southern portion of their native range are particularly likely to encounter warmer water due to a confluence of factors. River alterations have increased the likelihood that juveniles will be exposed to warm water temperatures during their freshwater life stage, which can negatively impact survival, growth, and development and pose a threat to dwindling salmon populations. To better understand how acute thermal exposure affects the biology of salmon, we performed a transcriptional analysis of gill tissue from Chinook salmon juveniles reared at 12° and exposed acutely to water temperatures ranging from ideal to potentially lethal (12° to 25°). Reverse-transcribed RNA libraries were sequenced on the Illumina HiSeq2000 platform and a de novo reference transcriptome was created. Differentially expressed transcripts were annotated using Blast2GO and relevant gene clusters were identified. In addition to a high degree of downregulation of a wide range of genes, we found upregulation of genes involved in protein folding/rescue, protein degradation, cell death, oxidative stress, metabolism, inflammation/immunity, transcription/translation, ion transport, cell cycle/growth, cell signaling, cellular trafficking, and structure/cytoskeleton. These results demonstrate the complex multi-modal cellular response to thermal stress in juvenile salmon.
机译:热暴露是全世界鱼类面临的严峻且日益严峻的挑战。由于各种因素的汇合,生活在其本国范围南部的奇努克鲑鱼(Oncorhynchus tshawytscha)特别容易遇到温水。河流变化增加了未成年人在淡水生活阶段暴露于温水温度的可能性,这可能对生存,生长和发育产生负面影响,并对鲑鱼种群减少构成威胁。为了更好地了解急性热暴露如何影响鲑鱼的生物学特性,我们对以12°饲养的奇努克鲑鱼幼鱼的ill组织进行了转录分析,并将其急性暴露于理想温度至可能致命的水温(12°至25°)。在Illumina HiSeq2000平台上对逆转录的RNA文库进行测序,并创建了一个从头参考转录组。使用Blast2GO注释差异表达的转录本,并鉴定相关的基因簇。除了高度下调多种基因外,我们还发现与蛋白质折叠/拯救,蛋白质降解,细胞死亡,氧化应激,代谢,炎症/免疫,转录/翻译,离子转运,细胞相关的基因上调周期/生长,细胞信号传导,细胞运输和结构/细胞骨架。这些结果证明了少年鲑鱼对热应激的复杂的多模态细胞反应。

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