首页> 美国卫生研究院文献>DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes >Analysis of Stress-Responsive Transcriptome in the Intestine of Asian Seabass (Lates calcarifer) using RNA-Seq
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Analysis of Stress-Responsive Transcriptome in the Intestine of Asian Seabass (Lates calcarifer) using RNA-Seq

机译:利用RNA-Seq分析亚洲鲈鱼(鳞片鳞鱼)肠内的应激反应转录组。

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摘要

Identification of differentially expressed genes (DEGs) and regulated pathways in response to stressors using a whole-genome approach is critical to understanding the mechanisms underlying stress responses. We challenged Asian seabass with lipopolysaccharide (LPS), Vibrio harveyi, high salinity and fasting, and sequenced six cDNA libraries of intestine samples using Roche 454 RNA-seq. Over 1 million reads (average size: 516 bp) were obtained. The de novo assembly obtained 83 911 unisequences with an average length of 747 bp. In total, 62.3% of the unisequences were annotated. We observed overall similar expression profiles among different challenges, while a number of DEGs and regulated pathways were identified under specific challenges. More than 1000 DEGs and over 200 regulated pathways for each stressor were identified. Thirty-seven genes were differentially expressed in response to all challenges. Our data suggest that there is a global coordination and fine-tuning of gene regulation during different challenges. In addition, we detected dramatic immune responses in intestines under different stressors. This study is the first step towards the comprehensive understanding of the mechanisms underlying stress responses and supplies significant transcriptome resources for studying biological questions in non-model fish species.
机译:使用全基因组方法识别差异表达基因(DEG)和响应应激源的调控途径对于理解应激反应的机制至关重要。我们用脂多糖(LPS),哈维弧菌,高盐度和禁食挑战了亚洲鲈鱼,并使用Roche 454 RNA-seq对六个肠道样品的cDNA文库进行了测序。获得了超过一百万次读取(平均大小:516 bp)。从头大会获得了83 911个不等位基因,平均长度为747 bp。总共有62.3%的未序列化被注释。我们观察到不同挑战之间总体上相似的表达谱,而在特定挑战下确定了许多DEG和调控途径。鉴定出每个应激源超过1000个DEGs和200多个调控途径。应对所有挑战,有37个基因差异表达。我们的数据表明,在不同的挑战中,基因调控存在全球协调和微调。此外,我们在不同压力下在肠道中检测到剧烈的免疫反应。这项研究是全面了解应激反应机制的第一步,并为研究非模式鱼类的生物学问题提供了重要的转录组资源。

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