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Whipworm genome and dual-species transcriptome analyses provide molecular insights into an intimate host-parasite interaction

机译:鞭虫基因组和双物种转录组分析可提供分子信息了解紧密的宿主-寄生虫相互作用

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摘要

Whipworms are common soil-transmitted helminths that cause debilitating chronic infections in man. These nematodes are only distantly related to Caenorhabditis elegans and have evolved to occupy an unusual niche, tunneling through epithelial cells of the large intestine. Here we present the genome sequences of the human-infective Trichuris trichiura and the murine laboratory model T. muris. Based on whole transcriptome analyses we identify many genes that are expressed in a gender- or life stage-specific manner and characterise the transcriptional landscape of a morphological region with unique biological adaptations, namely bacillary band and stichosome, found only in whipworms and related parasites. Using RNAseq data from whipworm-infected mice we describe the regulated Th1-like immune response of the chronically infected cecum in unprecedented detail. In silico screening identifies numerous potential new drug targets against trichuriasis. Together, these genomes and associated functional data elucidate key aspects of the molecular host-parasite interactions that define chronic whipworm infection.
机译:鞭虫是常见的土壤传播蠕虫,可导致人体慢性衰弱感染。这些线虫仅与秀丽隐杆线虫(Caenorhabditis elegans)息息相关,并且已进化成占据不寻常的生态位,并通过大肠的上皮细胞隧穿。在这里,我们介绍人类传染性Trichuris trichiura和小鼠实验室模型鼠毛T. muris的基因组序列。基于整个转录组分析,我们确定了许多以性别或生命阶段特异性方式表达的基因,并通过仅在鞭虫和相关寄生虫中发现的具有独特生物学适应性的细菌区域(即细菌带和线粒体)来表征形态区域的转录景观。使用来自鞭虫感染小鼠的RNAseq数据,我们以前所未有的详细描述了慢性感染盲肠的调节Th1样免疫应答。在计算机筛查中发现了许多潜在的针对滴虫病的新药靶标。这些基因组和相关的功能数据共同阐明了定义慢性鞭虫感染的分子宿主与寄生虫相互作用的关键方面。

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