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基于组学驱动对寄生线虫肠道的理解。

Omics Driven Understanding of the Intestines of Parasitic Nematodes.

作者信息

Jasmer Douglas P, Rosa Bruce A, Tyagi Rahul, Mitreva Makedonka

机构信息

Department of Veterinary Microbiology and Pathology, Washington State University, Pullman, WA, United States.

McDonnell Genome Institute, Washington University, St. Louis, St. Louis, MI, United States.

出版信息

Front Genet. 2019 Jul 25;10:652. doi: 10.3389/fgene.2019.00652. eCollection 2019.

Abstract

The biological and molecular complexity of nematodes has impeded research on development of new therapies for treatment and control. We have focused on the versatility of the nematode intestine as a target for new therapies. To that end, it is desirable to establish a broad and deep understanding of the molecular architecture underlying intestinal cell functions at the pan-Nematoda level. Multiomics data were generated to uncover the evolutionary principles underlying both conserved and adaptable features of the nematode intestine. Whole genomes were used to reveal the functional potential of the nematodes, tissue-specific transcriptomes provided a deep assessment of genes that are expressed in the adult nematode intestine, and comparison of selected core species was used to determine a first approximation of the pan-Nematoda intestinal transcriptome. Differentially expressed transcripts were also identified among intestinal regions, with the largest number expressed at significantly higher levels in the anterior region, identifying this region as the most functionally unique compared to middle and posterior regions. Profiling intestinal miRNAs targeting these genes identified the conserved intestinal miRNAs. Proteomics of intestinal cell compartments assigned proteins to several different intestinal cell compartments (intestinal tissue, the integral and peripheral intestinal membranes, and the intestinal lumen). Finally, advanced bioinformatic approaches were used to predict intestinal cell functional categories of seminal importance to parasite survival, which can now be experimentally tested and validated. The data provide the most comprehensive compilation of constitutively and differentially expressed genes, predicted gene regulators, and proteins of the nematode intestine. The information provides knowledge that is essential to understand molecular features of nematode intestinal cells and functions of fundamental importance to the intestine of many, if not all, parasitic nematodes.

摘要

线虫的生物学和分子复杂性阻碍了开发新的治疗和控制方法的研究。我们专注于将线虫肠道作为新疗法的靶点的多功能性。为此,需要在全线虫水平上广泛而深入地了解肠道细胞功能背后的分子结构。生成了多组学数据,以揭示线虫肠道保守和适应性特征背后的进化原理。全基因组被用于揭示线虫的功能潜力,组织特异性转录组提供了对成年线虫肠道中表达基因的深入评估,对选定核心物种的比较被用于确定全线虫肠道转录组的初步近似值。在肠道区域之间也鉴定出了差异表达的转录本,其中在前部区域表达的数量最多且显著高于其他区域,这表明与中部和后部区域相比,该区域在功能上最为独特。对靶向这些基因的肠道微小RNA进行分析,确定了保守的肠道微小RNA。肠道细胞区室的蛋白质组学将蛋白质分配到几个不同的肠道细胞区室(肠道组织、完整和外周肠道膜以及肠腔)。最后,使用先进的生物信息学方法预测对寄生虫存活至关重要的肠道细胞功能类别,现在可以通过实验进行测试和验证。这些数据提供了线虫肠道组成性和差异表达基因、预测的基因调节因子和蛋白质的最全面汇编。这些信息对于理解线虫肠道细胞的分子特征以及对许多(如果不是所有)寄生线虫肠道至关重要的功能必不可少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd46/6669237/352d9f8c8914/fgene-10-00652-g001.jpg

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