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De novo transcriptome sequencing and analysis of the juvenile and adult stages of Fasciola gigantica

机译:巨型Fasciola gigantica幼年和成年阶段的从头转录组测序和分析

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摘要

Fasciola gigantica is regarded as the major liver fluke causing fasciolosis in livestock in tropical countries. Despite the significant economic and public health impacts of F. gigantica there are few studies on the pathogenesis of this parasite and our understanding is further limited by the lack of genome and transcriptome information. In this study, de novo Illumina RNA sequencing (RNA-seq) was performed to obtain a comprehensive transcriptome profile of the juvenile (42 days post infection) and adult stages of F. gigantica. A total of 49,720 unigenes were produced from juvenile and adult stages of F. gigantica, with an average length of 1286 nucleotides (nt) and N50 of 2076 nt. A total of 27,862 (56.03%) unigenes were annotated by BLAST similarity searches against the NCBI non-redundant protein database. Because the F. gigantica needs to feed and/or digest host tissues, some proteases (including cysteine proteases and aspartic proteases), which play a role in the degradation of host tissues (protein), have been paid more attention in the present study. A total of 6511 distinct genes were found differentially expressed between juveniles and adults, of which 3993 genes were up-regulated and 2518 genes were down-regulated in adults versus juveniles, respectively. Moreover, stage-specific differentially expressed genes were identified in juvenile (17,009) and adult (6517) F. gigantica. The significantly divergent pathways of differentially expressed genes included cAMP signaling pathway (226; 4.12%), proteoglycans in cancer (256; 4.67%) and focal adhesion (199; 3.63%). The transcription pattern also revealed two egg-laying-associated pathways: cGMP-PKG signaling pathway and TGF-β signaling pathway. This study provides the first comparative transcriptomic data concerning juvenile and adult stages of F. gigantica that will be of great value for future research efforts into understanding parasite pathogenesis and developing vaccines against this important parasite.
机译:巨大的Fasciola gigantica被认为是导致热带国家牲畜的fasciolosis的主要肝吸虫。尽管巨大花球藻对经济和公共健康产生重大影响,但关于这种寄生虫的发病机理的研究很少,而且由于缺乏基因组和转录组信息,我们的理解受到了进一步的限制。在这项研究中,从头开始进行Illumina RNA测序(RNA-seq),以获得F. gigantica幼虫(感染后42天)和成年阶段的综合转录组图谱。从巨无花果的幼年和成年阶段共产生了49,720个单基因,平均长度为1286个核苷酸(nt),N50为2076 nt。通过针对NCBI非冗余蛋白数据库的BLAST相似性搜索,注释了总共27,862(56.03%)个单基因。由于巨大的镰刀菌需要进食和/或消化宿主组织,因此一些蛋白酶(包括半胱氨酸蛋白酶和天冬氨酸蛋白酶)在宿主组织(蛋白质)的降解中起着重要的作用。总共发现了6511个不同的基因在青少年和成年人之间差异表达,其中成人与少年分别有3993个基因上调和2518个基因下调。此外,在少年(17,009)和成年(6517)巨球藻中鉴定了阶段特异性差异表达基因。差异表达基因的显着差异途径包括cAMP信号通路(226; 4.12%),癌症中的蛋白聚糖(256; 4.67%)和粘着斑(199; 3.63%)。转录模式还揭示了两个与卵生有关的途径:cGMP-PKG信号通路和TGF-β信号通路。这项研究提供了有关巨巨F幼虫和成年阶段的第一个比较转录组学数据,这对于了解寄生虫的发病机理和开发针对这种重要寄生虫的疫苗的未来研究工作将具有重要的价值。

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