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首页> 外文期刊>Developmental and Comparative Immunology: Ontogeny, Phylogeny, Aging: The Official Journal of the International Society of Developmental and Comparative Immunology >A comparative synthesis of transcriptomic analyses reveals major differences between WSSV-susceptible Litopenaeus vannamei and WSSV-refractory Macrobrachium rosenbergii
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A comparative synthesis of transcriptomic analyses reveals major differences between WSSV-susceptible Litopenaeus vannamei and WSSV-refractory Macrobrachium rosenbergii

机译:转录组分析的比较合成揭示了WSSV - 易感性Litopenaeus Vannamei和WSSV-REMROGRAGE Macrobrachium rosenbergii之间的主要差异

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摘要

Since the 1990s White Spot Syndrome Virus (WSSV) has severely affected shrimp aquaculture worldwide causing a global pandemic of White Spot Disease (WSD) in penaeid culture. However, not all decapod species that can be infected by WSSV show the same susceptibility to the virus, thus raising interesting questions regarding the potential genetic traits that might confer resistance to WSSV. In order to shed light into the genetic markers of WSSV resistance, we employed a dual approach: i) we initially analysed the transcriptomes derived from the hepatopancreas of two species, the susceptible white shrimp Litopenaeus vannamei and the refractory fresh water prawn Macrobrachiwn rosenbergii, both infected with WSSV. We found a large number of differentially expressed genes (DEGs) belonging to the immune system (mostly anti-microbial peptides and haemolymph clotting components) that were generally up-regulated in M. rosenbergii and down-regulated in L. vannamei. Further, in both species we identified many up-regulated DEGs that were related to metabolism (suggesting a metabolic shift during the infection) and, interestingly, in L. vannamei only, we found several DEGs that were related to moult and suggested an inhibition of the moult cycle in this species following WSSV infection. we then identified a limited number of genetic markers putatively linked with WSD tolerance by employing an ecological genomics approach in which we compared published reports with our own RNA-seq datasets for different decapod species infected with WSSV. Using this second comparative approach, we found nine candidate genes which are consistently down-regulated in susceptible species and up-regulated in refractory species and which have a role in immune response. Together our data offer novel insights into gene expression differences that can be found in susceptible and refractory decapod species infected with WSSV and provide a valuable resource towards our understanding of the potential genetic basis of tolerance to WSSV.
机译:自20世纪90年代白斑综合征病毒(WSSV)以来,在全球范围内严重影响了虾水产养殖,导致Penaeid培养的全球白斑病(WSD)大流行。然而,并非所有可以被WSSV感染的脱脂饼饼都显示出对病毒的易感性,从而提高有关可能赋予WSSV抵抗力的潜在遗传性状的有趣问题。为了使光进入WSSV抗性的遗传标记,我们采用了一种双方法:i)我们最初分析了来自两个物种的肝癌的转录om,敏感的白色虾Litopenaeus vannamei和难治淡水虾Macrobrachiwn rosenbergii用WSSV感染。我们发现,属于免疫系统(大多数抗微生物肽和毒性β凝血胶滴组分)的大量差异表达基因(DEGS),其在M.Rosenbergii和L.Vannamei中的下调和下调。此外,在这两种物种中,我们鉴定了许多与代谢相关的上调的次数(暗示感染期间的代谢移位),有趣的是,我们发现几次与换羽有关,并建议抑制抑制作用WSSV感染后这种物种中的换羽循环。然后,我们通过采用生态基因组学方法鉴定了与WSD耐受的有限数量的遗传标记,其中我们将公开的报告与我们自己的RNA-SEQ数据集进行了比较,用于不同的脱像型物种。使用该第二比较方法,我们发现九个候选基因在易感物种中始终如一地下调,并且在难治物种中占据上调,并且具有免疫应答的作用。我们的数据一起提供了进入基因表达差异的新颖见解,这些差异可以在感染的WSSV感染的易感和难治性脱像型物种中找到,并为我们对WSSV耐受性的潜在遗传基础提供有价值的资源。

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