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Post-transcriptional regulation through alternative splicing after infection with Flavobacterium columnare in channel catfish (Ictalurus punctatus)

机译:通过在通道鲶鱼(IctalurusPunctatus)中感染替代剪接后转录后调节

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摘要

Columnaris disease has long been recognized as a serious problem worldwide which affects both wild and cultured freshwater fish including the commercially important channel catfish (Ictalurus punctatus). The fundamental molecular mechanisms of the host immune response to the causative agent Flavobacteriwn columnare remain unclear, though gene expression analysis after the bacterial infection has been conducted. Alternative splicing, a post-transcriptional regulation process to modulate gene expression and increase the proteomic diversity, has not yet been studied in channel catfish following infection with F. columnare. In this study, genomic information and RNA-Seq datasets of channel catfish were used to characterize the changes of alternative splicing after the infection. Alternative splicing was shown to be induced by F. columnare infection, with 8.0% increase in alternative splicing event at early infection stage. Intriguingly, genes involved in RNA binding and RNA splicing themselves were significantly enriched in differentially alternatively spliced (DAS) gene sets after infection. This finding was consistent with our previous study in channel catfish following infection with Edwardsiella ictaluri. It was suggested to be a universal mechanism that genes involved in RNA binding and splicing were regulated to undergo differential alternative splicing after stresses in channel catfish. Moreover, many immune genes were observed to be differentially alternatively spliced after infection. Further studies need to be performed to get a deeper view of molecular regulation on alternative splicing after stresses, setting a foundation for developing catfish broodstocks with enhanced disease resistance.
机译:柱状病疾病长期被认为是全球的严重问题,这影响包括商业上重要的通道鲶鱼(Ictalurus punctatus)的野生和养殖淡水鱼。宿主免疫应答对致病剂的基本分子机制仍不清楚,但在进行细菌感染后的基因表达分析。替代拼接,调节基因表达和增加蛋白质组学多样性的转录后调节过程,尚未在感染F. ClaseArt后感染通道鲶鱼。在本研究中,使用通道鲶鱼的基因组信息和RNA-SEQ数据集来表征感染后替代剪接的变化。显示替代剪接被F.柱状感染诱导,早期感染阶段的替代剪接事件增加了8.0%。有趣的是,参与RNA结合和RNA剪接本身的基因在感染后显着富集差异替换(DAS)基因集。这一发现与我们之前的峡湾鲶鱼在感染后对Edwardsiella Itaraluri进行的研究一致。建议是一种普遍的机制,调节参与RNA结合和剪接的基因以在通道鲶鱼中胁迫后进行差异替代剪接。此外,观察到许多免疫基因被观察到感染后差异地剪切。需要进行进一步的研究以在胁迫后替代剪接进行分子调控的更深图,为患有增强的抗病性抗性的鲶鱼洗碗奠定了基础。

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