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首页> 外文期刊>Fish & Shellfish Immunology >Identification of microRNAs with heat stress responsive and immune properties in Marsupenaeus japonicus based on next-generation sequencing and bioinformatics analysis: Essential regulators in the heat stress-host interactions
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Identification of microRNAs with heat stress responsive and immune properties in Marsupenaeus japonicus based on next-generation sequencing and bioinformatics analysis: Essential regulators in the heat stress-host interactions

机译:基于下一代测序和生物信息学分析的Marsupenaeus japonicus的热应激响应性和免疫特性的鉴定:热应激宿主相互作用的必需调节因子

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Summer mortality syndrome is one of the most serious issue for Marsupenaeus japonicas aquaculture in China. Since it causes massive economic loss and threatens sustainability of M. japonicas aquaculture industry, thus, there is an urgent desire to reveal the heat stress-host interactions mechanisms that lead to mass mortalities of M. japonicas in hot summer months. MicroRNAs (miRNAs) are small noncoding RNAs that involved in regulation of diverse biological processes, including stress and immune response, and might serve as potential regulators in the heat stress-host interactions. In the present study, miRNAs with heat stress responsive and immune properties were identified and characterized in M. japonicas by small RNA sequencing and bioinformatics analysis. In total, 79 host miRNAs were identified, among which 15 miRNAs were differentially expressed in response to heat stress. Target genes prediction and function annotation revealed that a variety of host cellular processes, such as signal transduction, transcription, anti-stress response, ribosomal biogenesis, lipid metabolism, cytoskeleton, etc, were potentially subject to miRNA-mediated regulation in response to heat stress. Furthermore, a total of 30 host miRNAs that potentially involved in interaction with white spot syndrome virus (WSSV) were obtained via predicting and analyzing the target genes from WSSV. The results showed that a batch of WSSV genes that code for structural proteins and enzymes that are essential for WSSV infection and proliferation, such as envelope proteins, capsid proteins, immediate-early proteins, collagen-like protein, protein kinase, thymidylate synthetase, TATA-box bind protein, etc, were predicted to be targeted by host miRNAs. Several of the host miRNAs with predicted antiviral capacity were down-regulated under heat stress, indicating a repression of host miRNA-mediated antiviral immune response. This study highlighted the essential roles of host miRNAs in the heat stress-host interactions and provided valuable information for further investigation on the mechanism of miRNA-mediated heat stress and immune response of shrimp.
机译:夏季死亡率综合征是中国Marsupenaeus japonicas水产养殖中最严重的问题之一。由于它导致巨大的经济损失和威胁粳稻水产养殖行业的可持续性,因此揭示了揭示了导致炎热夏季粳稻粳稻大规模体重的热应激宿主相互作用机制。 MicroRNAS(miRNA)是涉及各种生物过程的调节的小型非编码RNA,包括应力和免疫应答,并且可以作为热应激宿主相互作用中的潜在调节剂。在本研究中,通过小RNA测序和生物信息学分析,鉴定出具有热应激响应性和免疫特性的MiRNA,并表征了M. japonicas。总共鉴定了79个宿主miRNA,其中响应于热应激差异表达了15merNA。靶基因预测和函数注释显示,各种宿主细胞方法,例如信号转导,转录,抗应力响应,核糖体生物生物发生,脂质代谢,细胞骨架等潜在地受到miRNA介导的调节,以应对热应激。此外,通过预测和分析来自WSSV的靶基因,得到总共30个宿主miRNA,其可能涉及与白斑综合征病毒(WSSV)的相互作用。结果表明,一批WSSV基因代码是用于WSSV感染和增殖必不可少的结构蛋白质和酶,例如包膜蛋白,衣壳蛋白,立即早期蛋白质,胶原样蛋白,蛋白激酶,胸苷合成酶,塔塔 - 预计箱结合蛋白等被宿主miRNA靶向。具有预测抗病毒容量的几个宿主miRNA在热应激下进行下调,表明宿主miRNA介导的抗病毒免疫反应的抑制。该研究突出了宿主MiRNA在热应激宿主相互作用中的基本作用,并提供了有价值的信息,以进一步调查MiRNA介导的热应激和免疫应答的机制。

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