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尼罗罗非鱼鳃中急性低氧应答的差异基因表达谱和可变剪接调控。

Differential Gene Expression Profiles and Alternative Isoform Regulations in Gill of Nile Tilapia in Response to Acute Hypoxia.

机构信息

State Key Laboratory of Biocontrol, Institute of Aquatic Economic Animals and Guangdong Provincial Key Laboratory for Aquatic Economic Animals, College of Life Sciences, Sun Yat-Sen University, Guangzhou, 510275, People's Republic of China.

出版信息

Mar Biotechnol (NY). 2017 Dec;19(6):551-562. doi: 10.1007/s10126-017-9774-4. Epub 2017 Sep 18.

Abstract

Fish often encounters exposures to acute environmental hypoxia either spatially or temporally. Gill organ plays important roles in response to hypoxic stress in fish. Few studies focus on the molecular regulation mechanisms of gills under hypoxic stress. In this study, we investigated the transcriptomic response to 12-h acute hypoxia in gill of a hypoxia tolerant fish, Nile tilapia Oreochromis niloticus through RNA sequencing (RNA-Seq). We sequenced messenger RNA from three control samples and three hypoxia-treated samples. Bioinformatics analysis identified 239 differentially expressed genes (DEG) and 34 genes (DUES) that had significant differential alternative isoform regulation events in at least one exonic region in gill in response to acute hypoxia. The spatiotemporal expression analysis in five tissues (heart, liver, brain, gill, and spleen) sampled at three time points (6, 12, and 24 h) under hypoxia treatment confirmed the significant association of differential exon usages in two DUES genes (TLDC2 and SSX2IPA) with hypoxia conditions. Further functional analysis suggested several energy and immune response-related pathways, e.g., metabolic pathway and antigen processing and presentation, contained the most abundant DEG genes. We found that some GO biological processes for DEG genes were significantly enriched under hypoxic stress, such as glycolysis, metabolic process, generation of precursor metabolites and energy, and cholesterol metabolic process. Our findings suggest abundant differential gene expression changes and alternative isoform regulation events in genes involved in the hypoxia response in gill. Our results provide a basis for exploring the gene regulation mechanism under hypoxic stress in fish.

摘要

鱼类经常会在空间或时间上遇到急性环境缺氧的情况。鱼类的鳃器官在应对缺氧应激方面起着重要作用。很少有研究关注缺氧应激下鳃的分子调控机制。在这项研究中,我们通过 RNA 测序(RNA-Seq)研究了一种耐缺氧鱼类尼罗罗非鱼鳃对 12 小时急性缺氧的转录组反应。我们从三个对照样本和三个缺氧处理样本中测序了信使 RNA。生物信息学分析鉴定了 239 个差异表达基因(DEG)和 34 个基因(DUES),它们在鳃中至少一个外显子区域中具有显著的差异替代异构体调控事件,以响应急性缺氧。在缺氧处理下,在五个组织(心脏、肝脏、大脑、鳃和脾脏)中在三个时间点(6、12 和 24 小时)采样的时空表达分析证实了两个 DUES 基因(TLDC2 和 SSX2IPA)的差异外显子使用与缺氧条件的显著关联。进一步的功能分析表明,一些与能量和免疫反应相关的途径,如代谢途径和抗原处理和呈递,包含了最丰富的 DEG 基因。我们发现,一些 DEG 基因的 GO 生物过程在缺氧应激下显著富集,如糖酵解、代谢过程、前体代谢物和能量的产生以及胆固醇代谢过程。我们的研究结果表明,在参与缺氧反应的基因中存在丰富的差异基因表达变化和替代异构体调控事件。我们的研究结果为探索鱼类缺氧应激下的基因调控机制提供了基础。

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