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Identification and comparative analysis of the Eriocheir sinensis microRNA transcriptome response to Spiroplasma eriocheiris infection using a deep sequencing approach.

机译:使用深度测序方法鉴定和分析中华绒螯蟹感染中华绒螯蟹的微小RNA转录组。

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The Chinese mitten crab Eriocheir sinensis is one of the most important freshwater aquaculture crustacean species in China. MicroRNAs (miRNAs) are small non-coding RNAs that are important effectors in the intricate host-pathogen interaction network. To increase the repertoire of miRNAs characterized in crustaceans and to examine the relationship between host miRNA expression and pathogen infection, we used the Illumina/Solexa deep sequencing technology to sequence two small RNA libraries prepared from haemocytes of E. sinensis under normal conditions and during infection with Spiroplasma eriocheiris. The high-throughput sequencing resulted in approximately 30,975,151 and 30,826,277 raw reads corresponding to 12,077,088 and 16,271,545 high-quality mappable reads for the normal and infected haemocyte samples, respectively. Bioinformatic analyses identified 735 unique miRNAs, including 36 that are conserved in crustaceans, 134 that are novel to crabs but are present in other arthropods (PN-type), and 565 that are completely new (PC-type). Two hundred twenty-eight unique miRNAs displayed significant differential expression between the normal and infected haemocyte samples (p<0.0001). Of these, 133 (58%) were significantly up-regulated and 95 (42%) were significantly down-regulated upon challenge with S. eriocheiris. Real-time quantitative PCR (RT-qPCR) experiments were preformed for 10 miRNAs of the two samples, and agreement was found between the sequencing and RT-qPCR data. To our knowledge, this is the first report of comprehensive identification of E. sinensis miRNAs and of expression analysis of E. sinensis miRNAs after exposure to S. eriocheiris. Many miRNAs were differentially regulated when exposed to the pathogen, and these findings support the hypothesis that certain miRNAs might be essential in host-pathogen interactions. Our results suggest that elucidation of the molecular mechanisms responsible for miRNA regulation of the host's innate immune system should help with the development of new control strategies to prevent or treat S. eriocheiris infections in crustaceans.
机译:中华绒螯蟹是中国最重要的淡水养殖甲壳类之一。微小RNA(miRNA)是小的非编码RNA,在复杂的宿主-病原体相互作用网络中是重要的效应子。为了增加以甲壳类动物为特征的miRNA的库,并检查宿主miRNA表达与病原体感染之间的关系,我们使用了Illumina / Solexa深度测序技术对两个由 E血细胞制备的小RNA库进行测序。在正常条件下以及感染艾美螺旋体的过程中。高通量测序导致大约30,975,151和30,826,277的原始读数,分别对应于正常和感染的血细胞样本的12,077,088和16,271,545高质量的可映射读数。生物信息学分析鉴定出735种独特的miRNA,包括在甲壳类动物中保守的36种,在螃蟹中新颖但在其他节肢动物中存在的134种(PN型),以及在565种全新的(PC型)miRNA。 228个独特的miRNA在正常和感染的血细胞样本之间显示出明显的差异表达( p <0.0001)。其中,经iS攻击后有133个(58%)明显上调,有95个(42%)显着下调。 eriocheiris 。对两个样品的10个miRNA进行了实时定量PCR(RT-qPCR)实验,并且在测序和RT-qPCR数据之间发现了一致性。据我们所知,这是全面鉴定 E的第一份报告。中华miRNA和 E表达分析。暴露于 S后的中华绒螯蟹miRNA。 eriocheiris 。当暴露于病原体时,许多miRNA受到不同的调节,这些发现支持以下假设:某些miRNA在宿主与病原体的相互作用中可能是必不可少的。我们的结果表明阐明负责宿主先天免疫系统的miRNA调控的分子机制应有助于开发预防或治疗S的新控制策略。甲壳动物的埃里奥基里斯感染。

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