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首页> 外文期刊>Frontiers in Microbiology >Genome-Wide Transcriptome Analysis Reveals Extensive Alternative Splicing Events in the Protoscoleces of Echinococcus granulosus and Echinococcus multilocularis
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Genome-Wide Transcriptome Analysis Reveals Extensive Alternative Splicing Events in the Protoscoleces of Echinococcus granulosus and Echinococcus multilocularis

机译:基因组转录组分析揭示了<斜体> echInococccus颗粒的原始剪接事件(Echinococccus颗粒)和<斜体> echinococccus multilecularis

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Alternative splicing (AS), as one of the most important topics in the post-genomic era, has been extensively studied in numerous organisms. However, little is known about the prevalence and characteristics of AS in Echinococcus species, which can cause significant health problems to humans and domestic animals. Based on high-throughput RNA-sequencing data, we performed a genome-wide survey of AS in two major pathogens of echinococcosis -Echinococcus granulosus and Echinococcus multilocularis . Our study revealed that the prevalence and characteristics of AS in protoscoleces of the two parasites were generally consistent with each other. A total of 6,826 AS events from 3,774 E. granulosus genes and 6,644 AS events from 3,611 E. multilocularis genes were identified in protoscolex transcriptomes, indicating that 33–36% of genes were subject to AS in the two parasites. Strikingly, intron retention instead of exon skipping was the predominant type of AS in Echinococcus species. Moreover, analysis of the Kyoto Encyclopedia of Genes and Genomes pathway indicated that genes that underwent AS events were significantly enriched in multiple pathways mainly related to metabolism (e.g., purine, fatty acid, galactose, and glycerolipid metabolism), signal transduction (e.g., Jak-STAT, VEGF, Notch, and GnRH signaling pathways), and genetic information processing (e.g., RNA transport and mRNA surveillance pathways). The landscape of AS obtained in this study will not only facilitate future investigations on transcriptome complexity and AS regulation during the life cycle of Echinococcus species, but also provide an invaluable resource for future functional and evolutionary studies of AS in platyhelminth parasites.
机译:作为后基因组时代中最重要的主题之一,替代拼接(AS)已在许多生物中进行广泛研究。然而,对于如echInococcus种类的患病率和特征知之甚少,这可能对人类和家畜产生重大的健康问题。基于高通量RNA测序数据,我们进行了一种基因组的调查,与echInoccociss的两个主要病原体 - 粒细胞和棘突多联性的echInocccus颗粒组织和echinococcus多包。我们的研究表明,如两种寄生虫的原子染色中的患病率和特征通常彼此一致。总共6,826例,作为3,774e.颗粒组织基因的事件和6,644例,如3,611 e.的事件在Protoscolex转录om中鉴定了多层基因,表明33-36%的基因受到两种寄生虫。引人注目地,内含子保留而不是外显子跳跃是如echinococcus种类的主要类型。此外,基因和基因组途径的京都百科全书分析表明,作为事件的良好富集的基因主要富集,主要与代谢(例如嘌呤,脂肪酸,半乳糖和甘油脂代谢),信号转导(例如,jak -Stat,VEGF,凹口和GNRH信号传导途径),以及遗传信息处理(例如,RNA传输和mRNA监测途径)。本研究中获得的景观不仅促进了对转录组复杂性的未来调查,并且在棘突种类的生命周期中的调节,而且还提供了对Platyhelminth寄生虫的未来功能和进化研究的宝贵资源。

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