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Genome-wide gene expression analysis in the amphioxus Branchiostoma belcheri after poly (I: C) challenge using strand-specific RNA-seq

机译:使用链特异性RNA-seq进行poly(I:C)攻击后在双歧杆菌Belcheriostoma belcheri中的全基因组全基因表达分析

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摘要

The gene expression associated with immune response to bacteria/bacterial mimic has been extensively analyzed in amphioxus, but remains largely unknown about how gene are involved in the immune response to viral invasion at expression level. Here, we analyze the rRNA-depleted transcriptomes of Branchiostoma belcheri using strand-specific RNA-seq in response to the viral mimic, poly (I:C) (pIC). A total of 5,317 differentially expressed genes were detected at treatment group by comparing with control. The gene with the most significant expression changes (top 15) after pIC challenge and 7 immune-related categories involving 58 differently expressed genes were scrutinized. By functional enrichment analysis of differently expressed genes, gene ontology terms involving response to stress and stimulus, apoptosis, catabolic and metabolic processes and enzyme activity were overrepresented, and several pathways related to immune signaling, immune response, cancer, apoptosis, viral disease, metabolism were activated after pIC injection. A positive correlation between the qRT-PCR and strand-specific RNA-seq data confirmed the accuracy of the RNA-seq results. Additionally, the expression of genes encoding NLRC5, CASP1, CASP6, CYP450, CAT, and MDA5 were induced in B. belcheri under pIC challenge. Our experiments provide insight into the immune response of amphioxus to pIC and valuable gene expression information for studying the evolution of antiviral immunity in vertebrates.
机译:在双歧杆菌中已广泛分析了与对细菌/细菌模拟物的免疫反应相关的基因表达,但在表达水平上基因如何参与对病毒侵袭的免疫反应方面仍知之甚少。在这里,我们响应于病毒模拟,poly(I:C)(pIC),使用链特异性RNA-seq分析了Belcheriostoma belcheri的rRNA缺失的转录组。通过与对照比较,在治疗组中共检测到5,317个差异表达基因。对pIC攻击后表达变化最明显的基因(前15位)和涉及58个不同表达基因的7个免疫相关类别进行了检查。通过对不同表达基因的功能富集分析,涉及压力和刺激,细胞凋亡,分解代谢和代谢过程以及酶活性的基因本体术语被过度代表,并且涉及与免疫信号传导,免疫反应,癌症,细胞凋亡,病毒性疾病,新陈代谢相关的几种途径pIC注射后被激活。 qRT-PCR与链特异性RNA-seq数据之间呈正相关,证实了RNA-seq结果的准确性。另外,在pIC激发下,在B.belcheri中诱导了编码NLRC5,CASP1,CASP6,CYP450,CAT和MDA5的基因的表达。我们的实验提供了对两栖动物对pIC的免疫反应的洞察力,以及用于研究脊椎动物抗病毒免疫进化的有价值的基因表达信息。

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