Laboratory of Molecular Biotechnology, Faculty of Life Sciences, Andres Bello University, Republica 440, 8370186, Santiago, Chile.
Interdisciplinary Center for Aquaculture Research (INCAR), 4070386, Concepción, Chile.
Mar Biotechnol (NY). 2020 Feb;22(1):94-108. doi: 10.1007/s10126-019-09934-6. Epub 2019 Nov 20.
The red cusk-eel (Genypterus chilensis) is a native species with strong potential to support Chilean aquaculture diversification. Under commercial conditions, fish are exposed to several stressors. To date, little is known about the mechanism involved in the stress response of red cusk-eel, and there is no information related to the regulation mediated by long noncoding RNAs (lncRNAs). The objective of this work was to identify for the first time the lncRNAs in the transcriptome of G. chilensis and to evaluate the differential expression levels of lncRNAs in the liver, head kidney, and skeletal muscle in response to handling stress. We used previously published transcriptome data to identify the lncRNAs by applying a series of filters based on annotation information in several databases to discard coding sequences. We identified a total of 14,614 putative lncRNAs in the transcriptome of red cusk-eel, providing a useful lncRNA reference resource to be used in future studies. We evaluated their differential expression in response to handling stress in the liver, head kidney, and skeletal muscle, identifying 112, 323, and 108 differentially expressed lncRNAs, respectively. The results suggest that handling stress in red cusk-eel generate an altered metabolic status in liver, altered immune response in head kidney, and skeletal muscle atrophy through an important coding and noncoding gene network. This is the first study that identifies lncRNAs in Genypterus genus and that evaluates the relation between handling stress and lncRNAs in teleost fish, thereby providing valuable information regarding noncoding responses to stress in Genypterus species.
红狼牙鰕虎鱼(Genypterus chilensis)是一种具有强大潜力的本地物种,可以支持智利水产养殖的多样化。在商业条件下,鱼类会受到多种应激源的影响。迄今为止,人们对红狼牙鰕虎鱼应激反应的机制知之甚少,并且没有与长非编码 RNA(lncRNA)介导的调控相关的信息。这项工作的目的是首次鉴定 G. chilensis 转录组中的 lncRNA,并评估 lncRNA 在肝脏、头肾和骨骼肌中对处理应激的差异表达水平。我们使用先前发表的转录组数据,通过应用一系列基于注释信息的过滤器,从几个数据库中排除编码序列,从而鉴定出红狼牙鰕虎鱼转录组中的总共 14614 个假定 lncRNA,为未来的研究提供了一个有用的 lncRNA 参考资源。我们评估了它们在肝脏、头肾和骨骼肌中对处理应激的差异表达,分别鉴定出 112、323 和 108 个差异表达的 lncRNA。结果表明,红狼牙鰕虎鱼的处理应激会导致肝脏代谢状态改变、头肾免疫反应改变和骨骼肌萎缩,这是通过一个重要的编码和非编码基因网络实现的。这是首次在 Genypterus 属中鉴定出 lncRNA 的研究,也是评估硬骨鱼类处理应激与 lncRNA 之间关系的研究,为 Genypterus 物种对非编码应激反应提供了有价值的信息。