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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Comparative transcriptome and potential antiviral signaling pathways analysis of the gills in the red swamp crayfish, Procambarus clarkii infected with White Spot Syndrome Virus (WSSV)
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Comparative transcriptome and potential antiviral signaling pathways analysis of the gills in the red swamp crayfish, Procambarus clarkii infected with White Spot Syndrome Virus (WSSV)

机译:感染白斑综合症病毒(WSSV)的红色沼泽小龙虾克氏原螯虾the的比较转录组和潜在抗病毒信号通路分析

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Abstract Red swamp crayfish is an important model organism for research of the invertebrate innate immunity mechanism. Its excellent disease resistance against bacteria, fungi, and viruses is well-known. However, the antiviral mechanisms of crayfish remain unclear. In this study, we obtained high-quality sequence reads from normal and white spot syndrome virus (WSSV)-challenged crayfish gills. For group normal (GN), 39,390,280 high-quality clean reads were randomly assembled to produce 172,591 contigs; whereas, 34,011,488 high-quality clean reads were randomly assembled to produce 182,176 contigs for group WSSV-challenged (GW). After GO annotations analysis, a total of 35,539 (90.01%), 14,931 (37.82%), 28,221 (71.48%), 25,290 (64.05%), 15,595 (39.50%), and 13,848 (35.07%) unigenes had significant matches with sequences in the Nr, Nt, Swiss-Prot, KEGG, COG and GO databases, respectively. Through the comparative analysis between GN and GW, 12,868 genes were identified as differentially up-regulated DEGs, and 9,194 genes were identified as differentially down-regulated DEGs. Ultimately, these DEGs were mapped into different signaling pathways, including three important signaling pathways related to innate immunity responses. These results could provide new insights into crayfish antiviral immunity mechanism.
机译:摘要红沼泽小龙虾是研究无脊椎动物先天免疫机制的重要模式生物。众所周知,它对细菌,真菌和病毒具有出色的抗病能力。但是,小龙虾的抗病毒机制仍不清楚。在这项研究中,我们从正常和白斑综合症病毒(WSSV)攻击的小龙虾g中获得了高质量的序列读数。对于正常组(GN),随机组装39,390,280个高质量的纯净读段,以产生172,591个重叠群。而针对WSSV挑战(GW)组,则随机组装了34,011,488个高质量的纯读序列,以产生182,176个重叠群。经过GO注释分析后,总共35,539(90.01%),14,931(37.82%),28,221(71.48%),25,290(64.05%),15,595(39.50%)和13,848(35.07%)的单基因与序列具有显着匹配分别在Nr,Nt,Swiss-Prot,KEGG,COG和GO数据库中。通过GN和GW的比较分析,鉴定出12,868个基因为差异上调的DEG,鉴定了9,194个基因为差异下调的DEG。最终,这些DEG被映射到不同的信号传导途径中,包括与先天免疫应答有关的三个重要的信号传导途径。这些结果可以为小龙虾的抗病毒免疫机制提供新的见解。

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