首页> 外文期刊>Marine biotechnology >Transcriptome analysis reveals a rich gene set related to innate immunity in the eastern oyster (Crassostrea virginica).
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Transcriptome analysis reveals a rich gene set related to innate immunity in the eastern oyster (Crassostrea virginica).

机译:转录组分析揭示了与东部牡蛎(Crassostrea virginica)的先天免疫有关的丰富基因集。

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As a benthic filter-feeder of estuaries, the eastern oyster, Crassostrea virginica, faces tremendous exposure to microbial pathogens. How eastern oysters without adaptive immunity survive in pathogen-rich environments is of fundamental interest, but studies on its immune system are hindered by the lack of genomic resources. We sequenced the transcriptome of an adult oyster with short Illumina reads and assembled 66,229 contigs with a N50 length of 1,503 bp. The assembly covered 89.4% of published ESTs and 97.9% of mitochondrial genes demonstrating its quality. A set of 39,978 contigs and unigenes (>300 bp) were identified and annotated by searching public databases. Analysis of the gene set yielded a diverse set of 657 genes related to innate immunity, including many pertaining to pattern recognition, effectors, signal transduction, cytokines, and apoptosis. Gene families encoding C1q domain containing proteins, CTLD, IAPs, Ig_I-set, and TRAFs expanded in C. virginica and Crassostrea gigas. Many key genes of the apoptosis system including IAP, BAX, BAC-2, caspase, FADD, and TNFR were identified, suggesting C. virginica posses advanced apoptosis and apoptosis-regulating systems. Our results show that short Illumina reads can produce transcriptomes of highly polymorphic genomes with coverage and integrity comparable to that from longer 454 reads. The expansion and high diversity in gene families related to innate immunity, point to a complex defense system in the lophotrochozoan C. virginica, probably in adaptation to a pathogen-rich environment.
机译:作为河口的底栖滤食者,东部牡蛎Crassostrea virginica面临着大量微生物病原体的威胁。没有适应性免疫的东部牡蛎如何在病原体丰富的环境中生存是最基本的兴趣,但是缺乏基因组资源阻碍了其免疫系统的研究。我们对成年牡蛎的转录组进行了测序,Illumina读数较短,并组装了66229个重叠群,N50长度为1503 bp。该程序集涵盖了89.4%的已发布EST和97.9%的线粒体基因,证明了其质量。通过搜索公共数据库,鉴定并注释了一组39,978个重叠群和单基因(> 300 bp)。对基因集的分析产生了与先天免疫有关的657个基因的多样化集合,包括许多与模式识别,效应子,信号转导,细胞因子和细胞凋亡有关的基因。编码含有蛋白质,CTLD,IAP,Ig_I-set和TRAF的C1q域的基因家族在维吉尼亚衣原体和Crassostrea gigas中扩展。鉴定了许多凋亡系统的关键基因,包括IAP,BAX,BAC-2,caspase,FADD和TNFR,这表明维尔吉衣原体具有先进的凋亡和凋亡调节系统。我们的结果表明,较短的Illumina读取可产生高度多态性基因组的转录组,其覆盖度和完整性与更长的454读取可比。与先天性免疫有关的基因家族的扩展和高度多样性,表明了风灰风菌C. virginica中的复杂防御系统,可能是在适应病原体丰富的环境中。

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