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In-depth comparative transcriptome analysis of intestines of red swamp crayfish Procambarus clarkii infected with WSSV

机译:感染WSSV的红色沼泽小龙虾Procambarus clarkii肠道的深入比较转录组分析

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摘要

Crayfish has become one of the most important farmed aquatic species in China due to its excellent disease resistance against bacteria and viruses. However, the antiviral mechanism of crayfish is still not very clear. In the present study, many high-quality sequence reads from crayfish intestine were obtained using Illumina-based transcriptome sequencing. For the normal group (GN), 44,600,142 high-quality clean reads were randomly assembled to produce 125,394 contigs. For the WSSV-challenged group (GW), 47,790,746 high-quality clean reads were randomly assembled to produce 148,983 contigs. After GO annotation, 39,482 unigenes were annotated into three ontologies: biological processes, cellular components, and molecular functions. In addition, 15,959 unigenes were mapped to 25 different COG categories. Moreover, 7,000 DEGs were screened out after a comparative analysis between the GN and GW samples, which were mapped into 250 KEGG pathways. Among these pathways, 36 were obviously changed (P-values < 0.05) and 28 pathways were extremely significantly changed (P-values < 0.01). Finally, five key DEGs involved in the JAK-STAT signaling pathway were chosen for qRT-PCR. The results showed that these five DEGs were obviously up-regulated at 36 h post WSSV infection in crayfish intestine. These results provide new insight into crayfish antiviral immunity mechanisms.
机译:小龙虾由于对细菌和病毒的优异抗病性,已成为中国最重要的养殖水生物种之一。但是,小龙虾的抗病毒机制仍然不是很清楚。在本研究中,使用基于Illumina的转录组测序获得了许多从小龙虾肠中读取的高质量序列。对于正常组(GN),随机组装了44,600,142个高质量的纯净读段,以产生125,394个重叠群。对于WSSV挑战组(GW),随机组装了47,790,746个高质量的纯净读段,以产生148,983个重叠群。 GO注释后,将39482个单基因注释为三种本体:生物过程,细胞成分和分子功能。此外,将15959个单基因定位到25个不同的COG类别。此外,在对GN和GW样本进行比较分析后,筛选出7,000个DEG,并将它们映射到250条KEGG途径中。在这些途径中,有36条途径显着改变(P值<0.05),有28条途径显着改变(P值<0.01)。最后,选择了参与JAK-STAT信号通路的五个关键DEG用于qRT-PCR。结果表明,这五个DEG在小龙虾肠感染WSSV后36 h明显上调。这些结果提供了对小龙虾抗病毒免疫机制的新见解。

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